WO2018176627A1 - 导风装置、导风控制方法和空调器 - Google Patents

导风装置、导风控制方法和空调器 Download PDF

Info

Publication number
WO2018176627A1
WO2018176627A1 PCT/CN2017/086403 CN2017086403W WO2018176627A1 WO 2018176627 A1 WO2018176627 A1 WO 2018176627A1 CN 2017086403 W CN2017086403 W CN 2017086403W WO 2018176627 A1 WO2018176627 A1 WO 2018176627A1
Authority
WO
WIPO (PCT)
Prior art keywords
air
air outlet
wind
outlets
windless
Prior art date
Application number
PCT/CN2017/086403
Other languages
English (en)
French (fr)
Inventor
闫长林
陈良锐
Original Assignee
广东美的制冷设备有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201710204678.5A external-priority patent/CN106949541A/zh
Priority claimed from CN201710200672.0A external-priority patent/CN106979555A/zh
Application filed by 广东美的制冷设备有限公司 filed Critical 广东美的制冷设备有限公司
Publication of WO2018176627A1 publication Critical patent/WO2018176627A1/zh

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F13/00Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
    • F24F13/08Air-flow control members, e.g. louvres, grilles, flaps or guide plates

Definitions

  • the present invention relates to the field of air conditioner technology, and in particular to an air guiding device, a wind guiding control method, an air conditioner, a computer device, and a computer readable storage medium.
  • the air conditioner in the related art usually realizes cooling or heating through the air outlet, but since the wind blows directly to the human body through the air outlet, the hard cold wind in the cooling mode directly blows the user to make the user feel too cold in an instant, In the heating mode, the dry hot air directly blows to the user to make the user feel overheated quickly, affecting the user's comfort, making the user's experience poor, and not conducive to the user's health.
  • an embodiment of the first aspect of the present invention proposes an air guiding device.
  • an air guiding device is also proposed.
  • a wind guiding control method is also proposed.
  • an air conditioner is also proposed.
  • an air conditioner is also proposed.
  • a computer device is also proposed.
  • a computer readable storage medium is also proposed.
  • the present invention provides an air guiding device for an air conditioner, the air conditioner including a housing and two wind wheels, and the outer peripheral wall of the housing is provided with The middle intermediate air outlet and the two side air outlets on both sides of the middle air outlet, the two wind wheels rotate in opposite directions to realize two air outlet areas, and the air guiding device comprises: a duct assembly disposed inside the housing Two wind wheels are installed inside the air duct assembly; the damper assembly is mounted on the housing, and includes at least one windless air outlet panel and at least one sliding door covering the middle air outlet and the two side air outlets; wherein, at least A windless air outlet panel is provided with a plurality of through holes, and at least one sliding door sliding along the circumferential direction of the housing to different positions can close or open the intermediate air outlet and/or each side air outlet.
  • the air guiding device provided by the invention is used for an air conditioner, and the air conditioner comprises a casing provided with an intermediate air outlet and two side air outlets and two wind wheels, and the two wind wheels rotate in opposite directions during operation to realize two out In the wind zone, the air guiding device comprises a duct assembly and a damper assembly, the duct assembly is disposed inside the casing, two wind wheels are installed inside the air duct assembly, and the damper assembly is mounted on the casing, including covering the middle air outlet and two At least one windless air outlet panel and at least one sliding door of the side air outlet, the plurality of through holes are provided through the at least one windless air outlet panel, so that the air generated by the two wind turbines when the air conditioner is in an air outlet state
  • the plurality of through holes of the airless ventilating panel are evacuated into a plurality of low-speed, uniform air filaments which are spread to the outside of the casing and blow to the user, and the wind is soft and stable, achieving a windless sensation and avoiding two winds.
  • the wind generated by the wheel work directly blows to the user because the cold wind is hard and the hot air is dry, which affects the user's comfort, which effectively improves the user's experience; sliding through at least one sliding door along the circumference of the casing to different The intermediate air outlet and/or each side air outlet is closed or opened, so that the wind generated by the wind wheel work is blown to the user by the windless wind when the sliding door closes the middle air outlet and/or each side air outlet. Achieve windless sensation and improve the comfort of the user.
  • the air conditioner can realize the integrated air, that is, the wind is released through the windless air outlet.
  • the wind is soft, and the air is directly discharged through the air outlet to quickly exchange heat with the air in the external environment to achieve heating or cooling comfort, further improving the user experience and improving user satisfaction.
  • the housing is a cylindrical housing
  • the outer peripheral wall of the housing is provided with an intermediate air outlet and two side air outlets
  • the damper assembly comprises at least one windless wind that covers the intermediate air outlet and the two side air outlets.
  • the plate and the at least one sliding door, the plurality of air outlets cooperate with the plurality of sliding doors to satisfy the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, and at least one windless air outlet panel and at least one sliding door cooperate to achieve no
  • the wind-sensing, wind-free wind and the conventional air-integrated air outlet method further enhance the user's comfort and enhance the user's experience, and the integrated air way can ensure the gentle breeze.
  • the wind blows to the user while ensuring that the indoor temperature is uniform, avoiding the problem that the hard cold wind or the dry hot air directly blows to the user and easily causes the user to catch a cold or cough, thereby ensuring the health of the user and improving the comfort of the user. It is more suitable for children and the elderly to use, expand the scope of use of products, improve the market competitiveness of products, and enhance the selling point of products.
  • different numbers of windless air outlet panels and different numbers of sliding doors can be set according to the needs of the user, and different numbers of windless air outlet panels and different numbers of sliding doors are disposed in the middle air outlet and each At the side air outlet, to meet the user's demand for various air outlets and various air outlet functions of the air conditioner, the function of the air conditioner is expanded, and the satisfaction of the user is improved.
  • the two air outlet regions are realized to increase the air outlet range, which can meet the requirement of an intermediate air outlet and two side air outlets to ensure sufficient air volume and speed.
  • the effect of the air so that the air conditioner can quickly achieve the heating or cooling comfort, improve the user experience, and improve user satisfaction.
  • the air guiding device in the above embodiment provided by the present invention may further have the following additional technical features:
  • the shape of the at least one windless air outlet plate is adapted to the intermediate air outlet or each side air outlet, and is located at the intermediate air outlet or each side air outlet.
  • the shape of the at least one windless air deflector is matched with the intermediate air outlet or each side air outlet, and the at least one windless air outlet panel is mounted on the casing and located at the middle air outlet. Or each side air outlet, so that the windless air outlet panel covers the middle air outlet and/or each side air outlet with a small area, thereby ensuring that the air conditioner can achieve windless wind and improve user use. Comfort, while saving manufacturing costs and avoiding waste. Further, since the windless air outlet plate is located at the middle air outlet or each side air outlet, the plurality of through holes of the windless air outlet panel can be set to different shapes and different sizes, so that no wind is felt. The side of the wind panel facing the outside of the housing is beautiful. In addition, the appearance of the air conditioner is ensured and the satisfaction of the user is improved.
  • the at least one windless air outlet panel is located outside the intermediate air outlet or each side air outlet, and communicates with the upper end and the lower end of the housing.
  • the windless air outlet plate covers the middle air outlet or the at least one windless air outlet plate is located at the outer side of the middle air outlet or each side air outlet, and communicates with the upper end and the lower end of the housing.
  • Each side air outlet communicates with the upper end and the lower end of the housing to ensure that the air conditioner can achieve windless air to ensure the user's comfort, and at the same time ensure the upper air outlet or the housing above each side air outlet and The lower part is covered by the windless windshield, which ensures the consistency of the upper air outlet or the upper and lower sides of the shell where each side air outlet is located, so as to avoid the windlessness at the middle air outlet or each side air outlet.
  • the air outlet plate and the upper air outlet or the air outlet of each side are still the casing and affect the appearance of the air conditioner, effectively ensuring the appearance of the air conditioner and improving the satisfaction of the user.
  • one side of the casing where the intermediate air outlet or the side air outlet is located may be arranged as a windless air outlet panel, which effectively ensures the consistency of the appearance of the side of the casing where the intermediate air outlet or the side air outlet is located. It further improves the appearance of the air conditioner and improves the satisfaction of the user.
  • the air outlet plate is connected to the upper and lower air outlets or the upper and lower ends of the side air outlets, or one side of the casing where the intermediate air outlet or the side air outlet is located is set as a windless air outlet panel, and the true windless feeling is obtained.
  • the air outlet range is adapted to the intermediate air outlet or the side air outlet.
  • At least one windless air outlet panel is one, and one windless air outlet panel covers the middle air outlet; at least one sliding door is two, and two sliding doors are along the housing. Slide the circumferential direction to a different position to close or open the two side air outlets.
  • At least one windless air outlet panel is one, and a windless air outlet panel covers the middle air outlet, which can realize the windless air outlet of the middle air outlet, ensuring soft air and improving user comfort.
  • At least one sliding door is two, and the two sliding doors slide along the circumferential direction of the casing to different positions to close or open the two side air outlets, so that the side air outlet can stop the air outlet or the conventional air outlet, ensuring rapid cooling.
  • the windless air outlet of the air conditioner can be realized
  • the comprehensive air outlet satisfies the user's pursuit of various air outlets and various air outlet functions of the air conditioner, improves the comfort of the user, and enhances the user experience.
  • the windless air outlet plate is located in the middle of the two sliding doors, which ensures that the two sliding doors are symmetrically disposed on both sides of a windless air outlet panel, thereby ensuring the appearance of the air conditioner and improving the user's use. Satisfaction.
  • the two sliding doors are located outside the two side air outlets, and the two sliding doors slide along the circumferential direction of the housing to connect the closed intermediate air outlet and the two side air outlets.
  • two sliding doors are located outside the two side air outlets, and sliding through the two sliding doors along the circumferential direction of the housing to close the intermediate air outlet and the two side air outlets, so that the air conditioner stops When the wind is blown, the two sliding doors slide to close to close all the air outlets, so as to prevent the air conditioner from covering the air outlets in the air outlet state, and the windless air outlet plate is exposed outside the casing to affect the appearance of the air conditioner.
  • the two sliding doors simultaneously close the middle air outlet and the two side air outlets to effectively ensure the appearance of the air conditioner, and avoid the dust falling into the casing through the windless air outlet, thereby effectively saving the cost and ensuring the cost.
  • the interior of the housing is cleaned to improve product quality and increase user satisfaction.
  • the sliding door is provided with a rack
  • a driving device with a gear is disposed inside the housing, and the gear extends out of the housing through a mounting groove provided on the side of the side air outlet side, through the gear and the rack
  • the sliding connection is slidably connected to the housing, and the gear rotates to drive the rack movement under the driving of the driving device, thereby driving the sliding door to move along the circumferential direction of the housing to different positions to close or open the side air outlet, and the connection mode is simple.
  • Accurate gear and rack drive effectively improve the accuracy and flexibility of air conditioner control, improve the quality of air conditioners, and improve user satisfaction.
  • the sliding door can be slidably coupled to the housing in other manners that meet the requirements to close or open the side air outlet.
  • the method further includes: two louver assemblies disposed inside the casing, respectively disposed opposite to the side air outlets.
  • the direction of the air outlet of each side air outlet can be controlled by rotating each louver assembly to different positions.
  • the same side air outlet can blow out the wind in different directions to realize different air outlet modes, satisfying the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, and improving the satisfaction of the user.
  • the air guiding assembly is rotatably disposed inside the air duct assembly, and the air guiding assembly includes two air guiding members respectively located between the intermediate air outlet and each of the side air outlets.
  • Each of the air guiding members respectively abuts against one side of the air duct assembly to connect the two air outlet portions with the intermediate air outlet, and the two air guiding members rotate to abut the middle portion of the air duct assembly to enable two The outlet area is connected to the two side air outlets.
  • the air guiding device further comprises a wind guiding assembly disposed inside the air duct assembly, the air guiding assembly comprising two air guiding members respectively located between the intermediate air outlet and each side air outlet, through two The air guiding members rotate respectively to abut the two sides or the middle portion of the air duct assembly to connect the two air outlet regions with the intermediate air outlet or the two side air outlets. Further, the two air guiding members are located at the air duct assembly. The two air outlets are connected to the three air outlets between one side and the middle portion, and then the two air guiding members are rotated and the two sliding doors are opened or closed to open or close the two side air outlets, so that the middle of the air conditioner can be realized.
  • the air outlet of the air outlet, the conventional air outlet of the two side air outlets, and the integrated air outlet of the three air outlets simultaneously satisfy the user's pursuit of multi-dimensional air outlet mode and various air outlet functions of the air conditioner.
  • the satisfaction of the user's use while ensuring that the wind generated by the wind wheel work is blown out to the outside of the casing through the air outlet that is performing the wind action, which reduces the loss of air volume inside the casing during the air blowing process, and improves the air volume. Round efficiency, reduce the cost, while ensuring sufficient air volume can quickly reach the air conditioner and heating or cooling comfort, enhance the user experience.
  • the two air outlets are connected to the middle air outlet by the rotation of each air guiding member and the one side of the air duct assembly, and the two air outlet areas and the two side air outlets are blocked at the same time.
  • the winds of the two outlet regions generated by the two wind turbines are all blown out to the external environment through the windless air outlet plate of the intermediate air outlet. It ensures that the wind blown out to the user is soft and slow, and improves the comfort of the user.
  • the wind generated by the working of the wind wheel is all blown out to the external environment through the intermediate air outlet that is performing the wind action, reducing the air conditioner.
  • the loss of air volume inside the casing during the wind process improves the working efficiency of the wind wheel and reduces the use cost.
  • the two air outlet regions are respectively connected to the two side air outlets by the rotation of the two air guiding members and the middle portion of the air duct assembly, and the two air outlet regions and the intermediate air outlet are blocked at the same time.
  • the tuyere is conventionally ventilated, and at the same time, the wind loss caused by the wind generated by the wind wheel working is reduced, the working efficiency of the wind wheel is improved, and the air volume blown from the two side air outlets to the external environment is sufficient, so that sufficient air is sufficient.
  • the heat exchange between the wind and the external environment can quickly achieve the heating or cooling comfort, and maintain the indoor temperature unchanged, improve the user experience and improve the user satisfaction.
  • the two air guiding members are respectively located between one side and the middle portion of the air duct assembly, so that the two air outlet regions generated by the two wind wheel working are simultaneously connected with the intermediate air outlet and the two side air outlets respectively.
  • the wind generated by the two wind turbines is blown out to the external environment through the intermediate air outlet and the two side air outlets, thereby realizing the air conditioner.
  • the comprehensive air output makes the soft wind blown out by the air outlet through the middle air outlet to the user, improving the comfort of the user, and simultaneously cooling or heating the wind blown by the two side air outlets to maintain The indoor temperature is the same, which enhances the user's experience.
  • the two air outlets can be divided by two air guiding members to ensure the two side air outlets and the middle air outlet.
  • the air outlet of the tuyere is sufficient, avoiding the problem that the wind generated by the wind wheel work is not shunted and is blown out through the side air outlet and the middle air outlet to the external environment, and the air outlet is insufficient. To ensure a good wind effect, enhance the user experience.
  • the wind splitting generated by the wind turbine working by the two air guiding members makes the wind blow out to the outside through the two side air outlets after ensuring that the air volume blown by the windless air outlet panel through the intermediate air outlet is sufficient.
  • the environment is fully exchanged with the air of the external environment to achieve rapid cooling or heating of the side air outlets, to meet the user's need for heating or cooling comfort of the air conditioner, and the soft air blowing from the middle air outlet can improve the user.
  • the comfort of the user enhances the user experience and increases the satisfaction of the user.
  • the middle portion of the air duct assembly is provided with a guiding slope on a side close to the two wind wheels, and the two air guiding members rotate with the middle portion of the air duct assembly to guide the inclined surface connection.
  • the middle portion of the air duct assembly is provided with a guiding inclined surface on one side of the two wind wheels, and is connected with the guiding inclined surface when the two air guiding members rotate against the middle portion of the air duct assembly, which is beneficial to
  • the wind generated by the working of the wind wheel is smoothly and quickly blown out to the outside of the casing along the guiding inclined surface and the air guiding member in the air outlet area, thereby ensuring sufficient air output and good air blowing effect, thereby satisfying the user's right.
  • Air conditioners quickly meet the needs of cooling or heating comfort, and improve user use Satisfaction.
  • the present invention provides an air guiding device for an air conditioner, the air conditioner comprising a housing and two wind wheels, and the housing is provided with two intermediate air outlets in the middle And two side air outlets on two sides of the two intermediate air outlets, the two wind wheels rotate in opposite directions to realize two air outlet areas
  • the air guiding device comprises: a duct assembly, disposed inside the casing, two The wind wheel is installed inside the air duct assembly; the damper assembly is mounted on the housing, and includes at least one windless air outlet panel covering at least two intermediate air outlets and two side air outlets, and at least one cylindrical revolving door; wherein, at least A windless air outlet panel is provided with a plurality of through holes, at least one of the cylindrical revolving doors is provided with a ventilation passage, and the cylindrical revolving door is rotated such that the ventilation passage is located inside the casing or inside and outside the communication casing, and each of the intermediate air outlets can be / or each side air outlet is closed or open.
  • the air guiding device provided by the invention is used for an air conditioner, the air conditioner comprises a casing, two wind wheels and an air guiding device, and the casing is provided with two intermediate air outlets and two side air outlets, and when the two wind wheels are working Rotating in opposite directions to realize two outlet areas, the air guiding device comprises a duct assembly and a damper assembly, the duct assembly is disposed inside the casing, two wind wheels are installed inside the duct assembly, and the damper assembly is mounted on the casing,
  • the utility model comprises at least one windless air outlet panel covering at least two middle air outlets and two side air outlets, and at least one cylindrical revolving door, wherein the windless air outlet panel is provided with a plurality of through holes, so that the air conditioner is in an air outlet state When the winds generated by the two wind wheels work, the plurality of through holes covering the middle air outlets and/or the windless air outlets of each side air outlet are evacuated into a plurality of low speed, uniform air filaments spreading to the housing.
  • the outside is blown to the user, the wind is soft and stable, and the wind-free air is realized.
  • the wind generated by the two wind turbines is prevented from being directly blown to the user through the air outlet.
  • the cold wind is hard and the hot air is dry, which affects the user's comfort.
  • Degree, effectively improved User experience opening or opening of each intermediate air outlet and/or each side air outlet by means of at least one cylindrical revolving door rotation such that the ventilation passage is located inside the housing or inside and outside the communication housing, so that the rotation of the cylindrical revolving door
  • the air outlet of each of the middle air outlets and/or each side air outlet is closed, the wind generated by the wind wheel works through the windless air outlet to blow the wind to the user to achieve the windless wind and improve the comfort of the user.
  • the air conditioner can realize the integrated air outlet, that is, the wind is ensured by the windless air outlet air outlet, and the air volume blown through the ventilation passage of the cylindrical revolving door Ample, wide-ranging winds quickly exchange heat with the air in the external environment to quickly achieve heating or cooling comfort and enhance the user experience.
  • the cylindrical revolving door is rotated to communicate the interior of the housing with different positions of the ventilation passage and
  • the external direction can change the direction of the air outlet of the air outlet, satisfying the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, and avoiding the wind guiding through the louver assembly to limit the air outlet range, effectively expanding the air outlet range and ensuring sufficient air supply.
  • the amount of air output and the wide range of air outlets enable rapid heating or cooling to enhance the user experience.
  • the housing is a cylindrical housing, and the outer peripheral wall of the housing is provided with two intermediate air outlets in the middle and two side air outlets on both sides of the two intermediate air outlets, and the damper assembly includes two middle portions.
  • At least one windless air outlet panel and at least one cylindrical revolving door of the air outlet and the two side air outlets, and the plurality of air outlets cooperate with the plurality of cylindrical revolving doors to satisfy the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, and simultaneously
  • At least one windless air deflector and at least one cylindrical revolving door cooperate to realize a comprehensive air outlet mode combining windless wind, windless wind and conventional air blowing, thereby further improving user comfort and improving
  • the user's experience, combined with the way of wind can ensure that the gentle wind like the willow breeze blows to the user, while ensuring that the indoor temperature is even, avoiding the hard cold wind or the dry hot air directly blowing to the user, easily causing the user to catch a cold.
  • the problem of coughing which in turn ensures the health of the user, improves the comfort of the user, is more suitable for children, the elderly, and expands the product.
  • Range improve the market competitiveness of products to enhance the selling point of the product.
  • different numbers of windless air outlet panels and different numbers of cylindrical revolving doors can be set according to the needs of the user, and different numbers of windless air outlet panels and different numbers of cylindrical revolving doors are arranged in each middle.
  • the function of the air conditioner is expanded, and the satisfaction of the user is improved.
  • the shape of the at least one windless air outlet panel is adapted to each of the intermediate air outlets or each of the side air outlets, and is located at each of the intermediate air outlets or each of the side air outlets.
  • the shape of at least one windless air outlet panel is matched with each of the intermediate air outlets or each of the side air outlets, by installing at least one windless air outlet panel on the casing and located at each The middle air outlet or each side air outlet makes the windless air outlet cover each intermediate air outlet or each side air outlet with a small area, which ensures that the air conditioner can achieve windless wind. Improve user comfort, while saving manufacturing costs and avoiding waste.
  • the windless air outlet plate is located at each of the intermediate air outlets or each of the side air outlets, the plurality of through holes of the windless air outlet panel can be set to different shapes and different sizes to make the windless Feel the windshield facing the outside of the shell
  • the side of the department is beautiful, which ensures the appearance of the air conditioner and improves the satisfaction of the user.
  • At least one windless air outlet panel is located outside each of the intermediate air outlets or each of the side air outlets and communicates with the upper end and the lower end of the housing.
  • the windless air outlet covers each of the at least one windless air outlet panel on the outer side of each of the intermediate air outlets or each side air outlet, and communicates with the upper end and the lower end of the housing.
  • the middle air outlet or each side air outlet communicates with the upper and lower ends of the housing to ensure that the air conditioner can achieve windless air to ensure the comfort of the user, and at the same time ensure that each intermediate air outlet or each side air outlet is located.
  • the upper and lower sides of the casing are covered by the windless air outlet plate, thereby ensuring the consistency of the upper and lower sides of the casing where each intermediate air outlet or each side air outlet is located, avoiding each intermediate air outlet or each There are no wind-sensing air outlets at the side air outlets, and the upper and lower air outlets of each of the intermediate air outlets or each side air outlets are still shells, which affects the appearance of the air conditioner, effectively ensuring the appearance of the air conditioner. Beautiful, improve user satisfaction.
  • one side of the casing where the intermediate air outlet or the side air outlet is located may be arranged as a windless air outlet panel, which effectively ensures the consistency of the appearance of the side of the casing where the intermediate air outlet or the side air outlet is located. It further improves the appearance of the air conditioner and improves the satisfaction of the user.
  • the air outlet plate is connected to the upper and lower air outlets or the upper and lower ends of the side air outlets, or one side of the casing where the intermediate air outlet or the side air outlet is located is set as a windless air outlet panel, and the true windless feeling is obtained.
  • the air outlet range is adapted to the intermediate air outlet or the side air outlet.
  • the ventilation passage is an arc structure.
  • the ventilation passage is an arc structure
  • the rotation of the cylindrical revolving door causes the arc structure to be concave or convex to different sides of the air outlet where the cylindrical revolving door is located, so that the air outlet direction of the air outlet can be changed, and the user is satisfied.
  • the requirement of multi-dimensional air outlet mode of the air conditioner improves the user experience, and the air passage of the curved structure communicates with the inner air outlet or the side air outlet of the inner and outer parts of the housing, which is beneficial to control the wind along the curved shape generated by the wind wheel work.
  • the ventilation passage of the structure is blown out to the external environment from the two sides of the middle air outlet or the side air outlet, further expanding the air outlet range, which is beneficial to the rapid and uniform heating or cooling of the air conditioner, maintaining the indoor temperature unchanged, and satisfying the user's air conditioner. Quickly meet the needs of heating or cooling comfort and increase user satisfaction.
  • At least one windless air outlet panel is two, and two windless air outlet panels cover two side air outlets; at least one cylindrical revolving door has two, two cylinders. The revolving door is located at the two intermediate air outlets.
  • At least one windless air outlet panel is two, and two windless air outlet panels cover the two side air outlets, so that the air outlets of the air conditioner can be airless and windproof.
  • the soft air enhances the comfort of the user, and expands the range of the windless wind and improves the satisfaction of the user.
  • At least one cylindrical revolving door is two, and two cylindrical revolving doors are located at the two intermediate air outlets. By rotating the two cylindrical revolving doors, the ventilation passages are located inside the casing or inside and outside the casing, so that the two intermediate air outlets can stop the air or the conventional air blowing, so that the wind is concentrated when the conventional air is discharged, which is beneficial to the air conditioner.
  • the air conditioner can be realized No wind and wind, and comprehensive wind, to meet the user's pursuit of a variety of air outlets and a variety of air outlets, improve user comfort, enhance user experience
  • the two side air outlets cover two windless air outlet panels, which expands the range of the windless wind, so that the windless wind is scattered, which is beneficial to the user to enjoy the windless wind. Comfortable, avoiding only the middle air outlet to achieve a windless sensation.
  • the two windless wind panels are symmetrically arranged on both sides of the two cylindrical revolving doors in the middle, which effectively ensures the appearance of the air conditioner and improves the satisfaction of the user.
  • the two arc-shaped structures of the two cylindrical revolving doors are disposed away from each other.
  • the two arc-shaped structures of the two cylindrical revolving doors are disposed away from each other, so that the winds blown from the two intermediate air outlets merge into one air outlet.
  • the curved structure is disposed in a back direction to reduce the intersection of the wind blown from the two arcuate structures to the outside of the casing, increasing the range of wind blown from the two arcuate structures to the outside of the casing, thereby
  • the air blown from the inside of the casing exchanges heat with the outside air in a large range, so that the air conditioner can It can reach the heating or cooling comfort quickly, evenly and in a wide range, maintain the indoor temperature unchanged, enhance the user experience and improve the user's satisfaction.
  • the wind generated by the working of the wind wheel can be blown out to the external environment through the air passages of the two arc structures, and the air outlet range of the two intermediate air outlets is further increased. Improve the efficiency of the air conditioner to achieve heating or cooling comfort, and improve user satisfaction.
  • the air guiding assembly is rotatably disposed inside the air duct assembly, and the air guiding assembly includes two guides respectively located between each of the intermediate air outlets and each of the side air outlets.
  • the wind member, each of the air guiding members respectively abutting against one side of the air duct assembly, and the two air outlet portions are respectively connected with the two intermediate air outlets, and the two air guiding members rotate to offset the middle portion of the air duct assembly
  • the two outlet areas can be connected to the two side air outlets respectively.
  • the air guiding device further includes a wind guiding assembly that is disposed inside the air duct assembly, and the air guiding assembly includes two air guiding members respectively located between each of the intermediate air outlets and each of the side air outlets.
  • the two air guiding members rotate respectively to abut the two sides or the middle portion of the air duct assembly to connect the two air outlet regions with the two intermediate air outlets or the two side air outlets.
  • the two air guiding members are located The two air outlets are connected to the four air outlets between one side and the middle portion of the air duct assembly, and then the two air guiding members are rotated and the two cylindrical rotating doors are used to open or close the two side air outlets.
  • the utility model realizes the air outlet of the two side air outlets of the air conditioner, the conventional air outlet of the two intermediate air outlets, and the comprehensive air outlet of the four air outlets simultaneously, which satisfies the user's multi-dimensional air outlet mode and various types of air conditioners.
  • the pursuit of wind function to improve the satisfaction of the user's use, while ensuring that the wind generated by the wind wheel work is blown out to the outside of the casing through the air outlet that is performing the wind action, reducing the wind inside the casing during the wind blowing process. Loss and improve the efficiency of the rotor, reducing the cost, while ensuring sufficient air volume can quickly reach the comfort of air conditioning and heating or cooling, improve the user experience.
  • the two air outlet regions are respectively connected to the two side air outlets by the rotation of the two air guiding members and the middle portion of the air duct assembly, and the two air outlet regions and the two intermediate air outlets are blocked at the same time.
  • the winds of the two outlets generated by the work of the two wind wheels are all blown out to the external environment through the two side air outlets, so that the wind output of the two side air outlets is realized, and the wind blowing to the user is ensured.
  • the two side air outlets of the air outlet blow out to the external environment which reduces the air volume loss inside the air conditioner during the air outlet, improves the working efficiency of the wind wheel, and reduces the use cost.
  • the two cylindrical revolving doors can be rotated at the same time so that the ventilation passages are located inside the casing to close the two intermediate air outlets, further ensuring that the wind generated by the wind turbine operation is blown out to the external environment by the windless air outlet panel, thereby improving the air outlet.
  • the efficiency and the middle air outlet are avoided, and the rotation of the cylindrical revolving door prevents the ventilation passage from communicating with the inside and outside of the casing to affect the appearance of the air conditioner, thereby effectively improving the satisfaction of the user.
  • the two air outlets are connected to the two intermediate air outlets by the rotation of each air guiding member and the one side of the air duct assembly, and the two air outlets and the two side air outlets are blocked at the same time.
  • the two intermediate air outlets are conventionally ventilated, and the wind loss caused by the wind turbine working inside the casing is reduced, the working efficiency of the wind wheel is improved, and the air volume from the two intermediate air outlets to the external environment is ensured. It expands the scope of conventional airflow and ensures the concentration of conventional airflow, so that sufficient and concentrated wind exchanges heat with the external environment to quickly achieve the heating or cooling comfort, and maintain the indoor temperature unchanged, improving the user experience. To improve user satisfaction.
  • the two air guiding members are respectively located between one side and the middle portion of the air duct assembly, so that the two air outlet regions generated by the two wind turbines respectively have two intermediate air outlets and two side air outlets.
  • the wind generated by the two wind turbines is simultaneously blown out through the two intermediate air outlets and the two side air outlets.
  • the external environment realizes the integrated air outlet of the air conditioner, so that the soft wind blown out by the wind panel through the two side air outlets blows the user to the user, improves the comfort of the user, and is blown out through the two intermediate air outlets.
  • the wind quickly realizes cooling or heating, maintains the indoor temperature unchanged, and enhances the user's experience. Since the two air guiding members are located inside the two air outlets, the two air guiding regions can be divided by two air guiding members. Ensure that the air output of the two side air outlets and the two intermediate air outlets is sufficient, and the wind generated by the wind turbine operation is prevented from being blown out to the external environment through the side air outlets and the intermediate air outlets without splitting. Part of the outlet air flow shortage problem, effectively ensure a good wind effect, enhance the user experience.
  • the wind splitting generated by the wind turbine working by the two air guiding members makes the majority of the wind pass through the two intermediate air outlets after ensuring that the air volume blown by the windless air outlet panels passing through the two side air outlets is sufficient.
  • the ventilation passage of the cylindrical revolving door at the mouth is blown out to the external environment to exchange heat with the air of the external environment, so that the wind blown by the two intermediate air outlets can be quickly cooled or heated to achieve the user's heating or cooling comfort for the air conditioner.
  • the demand, while the soft air of the two side air outlets blows the user to improve the user's comfort, thereby improving the user experience and improving the user's satisfaction.
  • the middle portion of the air duct assembly is provided with a guiding inclined surface near one side of each of the wind wheels, and each of the air guiding members rotates to abut the middle portion of the air duct assembly with the guiding inclined surface connection.
  • the middle portion of the air duct assembly is provided with a guiding inclined surface on one side of the two wind wheels, and is connected with the guiding inclined surface when the two air guiding members rotate against the middle portion of the air duct assembly, which is beneficial to
  • the wind generated by the working of the wind wheel is smoothly and quickly blown out to the outside of the casing along the guiding inclined surface and the air guiding member in the air outlet area, thereby ensuring sufficient air output and good air blowing effect, thereby satisfying the user's right.
  • the air conditioner has no wind and wind comfort requirements, and improves user satisfaction.
  • An embodiment of the third aspect of the present invention provides a wind guide control method for an air conditioner, the air conditioner including a housing, two wind wheels, and the wind guide according to any one of the above first embodiment.
  • the device has an intermediate air outlet at the middle and two side air outlets on both sides of the middle air outlet.
  • the two wind wheels rotate in opposite directions to realize two air outlet areas, and the air guiding control
  • the method includes: detecting a wind mode command; and controlling at least one sliding door of the air guiding device to slide along a circumferential direction of the casing to different positions according to an air outlet mode command, the intermediate air outlet and/or each side air outlet is closed or opened, The working state of the two wind wheels is controlled; wherein the housing is provided with at least one windless air outlet panel and at least one sliding door covering the middle air outlet and the two side air outlets.
  • an air guiding control method for an air conditioner provided by an embodiment of a third aspect of the present invention, the air conditioner comprising a housing, two wind wheels, and the air guiding device according to any one of the first aspect embodiments, a shell
  • the outer peripheral wall of the body is provided with an air outlet at the middle and two side air outlets at the two sides of the middle air outlet. When the two wind wheels are working, the two air outlets are rotated in the opposite direction to realize the two air outlet areas.
  • Detecting the wind mode command controlling at least one sliding door of the air guiding device to slide along the circumferential direction of the housing to different positions to close or open the intermediate air outlet and/or each side air outlet, and control two
  • the working state of the wind wheel is such that at least one windless air outlet panel and at least one sliding door covering the middle air outlet and the two side air outlets are installed on the casing, so that the wind generated by the two wind turbines is windless
  • the plurality of through holes of the air outlet plate are evacuated into a plurality of low-speed, uniform air wires that are spread to the shell
  • the outside of the body blows to the user the wind is soft and stable, and the wind-free wind is realized, which avoids the wind generated by the work of the two wind wheels directly blowing to the user through the air outlet, which is harder than the cold air and the hot air is dry, which affects the user's use.
  • the intermediate air outlet and / or each side air outlet is closed or opened by sliding the at least one sliding door along the circumferential direction of the housing to different positions, so that the sliding door is closed in the middle
  • the wind generated by the wind wheel works through the windless air outlet to blow the wind to the user to achieve the windless wind, improve the comfort of the user, and open the middle air outlet and/or the sliding door.
  • the air conditioner can realize the integrated air output, that is, the wind generated by the wind wheel work is ensured that the wind is soft through the windless air outlet, and the air outlet is directly discharged through the air outlet to make the air conditioner fast and the external environment.
  • the housing is a cylindrical housing
  • the outer peripheral wall of the housing is provided with an intermediate air outlet and two side air outlets
  • the damper assembly comprises at least one windless wind that covers the intermediate air outlet and the two side air outlets.
  • the plate and the at least one sliding door, the plurality of air outlets cooperate with the plurality of sliding doors to satisfy the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, and at least one windless air outlet panel and at least one sliding door cooperate to achieve no
  • the wind-sensing, wind-free wind and the conventional air-integrated air outlet method further enhance the user's comfort and enhance the user's experience, and the integrated air way can ensure the gentle breeze.
  • the wind blows to the user while ensuring that the indoor temperature is uniform, avoiding the problem that the hard cold wind or the dry hot air directly blows to the user and easily causes the user to catch a cold or cough, thereby ensuring the health of the user and improving the comfort of the user. It is more suitable for children and the elderly to use, expand the scope of use of products, improve the market competitiveness of products, and enhance the selling point of products.
  • different numbers of windless air outlet panels and different numbers of sliding doors can be set according to the needs of the user, and different numbers of windless air outlet panels and different numbers of sliding doors can be disposed in the middle air outlet and each A side air outlet to meet the user's demand for a variety of air outlets and a variety of air outlet functions, expand the function of the air conditioner, and improve user satisfaction.
  • At least one windless air outlet panel is one, and one windless air outlet panel covers the middle air outlet; at least one sliding door is two, and two sliding doors are along the housing. Slide the circumferential direction to a different position to close or open the two side air outlets.
  • At least one windless air outlet panel is one, and a windless air outlet panel covers the middle air outlet, which can realize the windless air outlet in the middle air outlet, ensuring gentle air blowing and improving the user.
  • at least one sliding door is two, and the two sliding doors slide along the circumferential direction of the casing to different positions to close or open the two side air outlets, so that the side air outlet can stop the wind or the conventional air outlet.
  • the windless air outlet plate covering the middle air outlet and the two sliding doors at the two side air outlets can cooperate with each other to realize the airless air conditioner Sense of the wind and comprehensive wind, to meet the user's pursuit of a variety of air outlets and a variety of air outlet functions, improve user comfort and enhance the user experience.
  • the windless air outlet plate is located in the middle of the two sliding doors, which ensures that the sliding door is symmetrically disposed on both sides of a windless air outlet panel, thereby ensuring the appearance of the air conditioner and improving the satisfaction of the user. degree.
  • the method further comprises: controlling the two air guiding members of the air guiding device to rotate to different positions according to the air blowing mode command.
  • the two air guiding members of the air guiding device are controlled to rotate to different positions according to the air blowing mode command, so that the two air guiding members rotate respectively to abut against the two sides or the middle portion of the air duct assembly,
  • the air outlet area is connected with the middle air outlet or the two side air outlets, and the two air guiding members are respectively located between one side and the middle portion of the air duct assembly, and the two air outlet areas are connected with the three air outlets, thereby further
  • the air outlet has a comprehensive air outlet, which satisfies the user's pursuit of the multi-dimensional air outlet mode and various air outlet functions of the air conditioner, improves the satisfaction of the user's use, and ensures that the wind generated by the wind turbine work passes through the ongoing wind action.
  • the air outlet is blown out to the outside of the casing, which reduces the loss of air volume inside the casing during the air blowing process, improves the working efficiency of the wind wheel, reduces the use cost, and ensures sufficient air volume.
  • Speed air conditioner reach comfort cooling or heating, to enhance the user experience.
  • the air outlet mode command is a windless air outlet command
  • at least one sliding door of the air guiding device is controlled to slide along a circumferential direction of the housing to a different position.
  • the air outlet and/or each side air outlet is closed or opened, and the specific steps of controlling the working states of the two wind wheels include: controlling each sliding door to slide along the circumferential direction of the casing to close according to the windless air blowing command
  • One side air outlet controls the two wind wheels to start working.
  • the air outlet mode command is a windless air outlet command
  • each sliding door is controlled to slide along the circumferential direction of the casing to close each side air outlet
  • two The wind turbines start to work, so that the wind generated by the two wind turbines is blown out to the external environment through the windless wind deflector covering the middle air outlet, and the wind generated by the wind turbine works through the windless wind.
  • the hole is evacuated into a number of low-speed, uniform air filaments that spread to the outside of the casing and blow to the user.
  • the wind is soft and stable, and the wind generated by the two wind turbines is prevented from being directly blown to the user through the middle air outlet, because the cold wind is hard and hot.
  • the dryness affects the user's satisfaction, and the softer wind blows the user to effectively improve the user's comfort and enhance the user's experience.
  • the method further comprises: controlling, according to the windless wind output command, controlling each of the air guiding members of the air guiding device to respectively abut against one side of the air duct assembly to connect the two air outlet regions with The middle air outlet is connected.
  • each of the air guiding members of the air guiding device is controlled to abut against one side of the air duct assembly, and the two air outlet regions are connected with the intermediate air outlet.
  • the two air outlets and the two side air outlets are blocked, so that when the air conditioner performs the windless air blowing command, the winds of the two air outlets generated by the two wind turbines all pass through the middle air outlet without the wind. It feels that the wind plate is blown out to the external environment, ensuring that the wind blown out to the user is soft and slow, improving the comfort of the user, and ensuring that the wind generated by the wind wheel work is all blown out to the outside through the intermediate air outlet that is performing the wind action.
  • the environment reduces the loss of air volume inside the casing during the air outlet of the air conditioner, improves the working efficiency of the wind wheel, and reduces the use cost.
  • the air outlet mode command is a conventional air blowing command
  • at least one sliding door of the air guiding device is controlled to slide along a circumferential direction of the housing to a different position to the intermediate air outlet.
  • each side air outlet is closed or opened to control the working state of the two wind wheels.
  • the specific steps of controlling the two air guiding members of the air guiding device to rotate to different positions include: according to the conventional air outlet Commanding, controlling each sliding door to slide along the circumferential direction of the casing to open each side air outlet, controlling the rotation of the two air guiding members to abut against the middle portion of the air duct assembly, and respectively separating the two air outlet regions and the two side air outlets Connected to control the two wind wheels to start working.
  • the air outlet mode command is a conventional air blowing command
  • each sliding door is controlled to slide along the circumferential direction of the casing to open each side air outlet
  • the two air guiding members are controlled to rotate and
  • the middle part of the air duct component abuts to connect the two air outlet areas to the two side air outlets respectively, and at the same time blocks the two air outlet areas and the middle air outlet to control the two wind wheels to start working, so that the two winds
  • the wind generated by the wheel work is blown out to the external environment through the two side air outlets, realizing the air conditioner
  • the two side air outlets are conventionally ventilated, and the winds of the two air outlets generated by the two wind turbines are all blown out to the external environment through the two side air outlets, thereby reducing the interior of the air conditioner during the air outlet process.
  • the loss of air volume improves the working efficiency of the wind wheel, reduces the cost of use, and ensures sufficient air volume at the side air outlet, which can quickly achieve the comfort of heating or cooling of
  • the air blowing mode command is an integrated air blowing command
  • the at least one sliding door of the air guiding device is controlled to slide along the circumferential direction of the casing according to the air blowing mode command to
  • the intermediate air outlet and/or each side air outlet are closed or opened at different positions
  • the specific steps of controlling the working states of the two wind wheels include: controlling each sliding door to slide along the circumferential direction of the housing according to the integrated air blowing instruction
  • Each side air outlet controls two wind wheels to start working.
  • the air outlet mode command is an integrated air blowing command
  • each sliding door is controlled to slide along the circumferential direction of the casing to open each side air outlet, and the two wind wheels are controlled to start working.
  • the wind generated by the wind wheel works through the windless sensation of the middle air outlet to blow the windless sensation of the air conditioner to the user, and the air is blown out to the external environment and the external environment through the two side air outlets.
  • the method further comprises: controlling, according to the integrated air blowing instruction, each air guiding member of the air guiding device to rotate between one side and the middle portion of the air duct assembly, and the two air outlet regions It is connected with the middle air outlet and the two side air outlets.
  • each air guiding member of the air guiding device by controlling each air guiding member of the air guiding device to rotate between one side and the middle portion of the air duct assembly according to the integrated air blowing instruction, the two air outlet regions and the middle air outlet, two The side air outlets are connected to each other. Since the two air guiding members are located inside the two air outlet regions, the two air guiding regions are divided by the two air guiding members to ensure sufficient airflow of the two side air outlets and the middle air outlet. The problem that the wind generated by the working of the wind wheel is not shunted out through the side air outlet and the middle air outlet to the external environment, and the air outlet of the air outlet is insufficient, effectively ensuring a good air blowing effect and improving the user experience.
  • the wind splitting generated by the working of the wind wheel is made by two air guiding members After ensuring that the air volume blown by the windless air outlet through the middle air outlet is sufficient, most of the wind is blown out through the two side air outlets to the external environment to exchange heat with the air of the external environment to achieve a quick side air outlet.
  • the soft air blowing in the middle air outlet can improve the user's comfort, thereby improving the user experience and improving user satisfaction. .
  • the air outlet mode command is to stop the air blowing command, and according to the air outlet mode command, at least one sliding door of the air guiding device is controlled to slide along a circumferential direction of the casing to a different position to the intermediate air outlet. And/or each side air outlet is closed or opened to control the working state of the two wind wheels.
  • the specific steps of controlling the two air guiding members of the air guiding device to rotate to different positions include: stopping the air according to the stop The command controls the two wind wheels to stop working, controls the two air guiding members to stop rotating, and controls the two sliding doors to slide along the circumferential direction of the housing to close the two side air outlets.
  • the air outlet mode command is to stop the air blowing command, and according to the stop air blowing command, the two wind wheels are controlled to stop working to stop generating wind, and the two air guiding members are controlled to stop rotating, thereby preventing the air guiding member from stopping.
  • the energy is wasted and the noise is generated, which affects the user's use, and the satisfaction of the user is improved.
  • the two sliding doors are controlled to slide along the circumferential direction of the casing to close the two side air outlets, thereby avoiding the air conditioner being
  • the two side air outlets are exposed to the outside to affect the appearance of the air conditioner, and the inside of the casing is easily dropped into dust, thereby effectively ensuring the appearance of the air conditioner and ensuring the interior of the casing to be clean, thereby improving the satisfaction of the user. Degree, improve the quality of the product.
  • the two air guiding members of the air guiding device can be rotated to any position and then stopped. Specifically, the two air guiding members can be rotated to offset the two sides of the wind wheel assembly.
  • the two air outlets of the two wind wheels are connected to the middle air outlet and blocked by the two side air outlets, so that the air conditioner can directly control the wind wheel operation when executing the windless air blowing command, thereby achieving no The wind feels out of the wind, and there is no need to control the rotation of the air guiding member, which improves the control speed of the air conditioner and improves the satisfaction of the user.
  • An embodiment of the fourth aspect of the present invention provides an air guiding control method for an air conditioner, the air conditioner comprising a housing, two wind wheels, and the air guiding device according to any one of the second aspect embodiments.
  • the outer peripheral wall of the casing is provided with two intermediate air outlets in the middle and two side air outlets on both sides of the two intermediate air outlets, and the two wind wheels rotate in opposite directions during operation to realize two air outlet zones.
  • the air guiding control method includes: detecting a wind mode command; controlling at least one cylindrical revolving door of the air guiding device to rotate according to the air blowing mode command, so that the ventilation passage is located inside the casing or inside and outside the connecting casing, each intermediate air outlet and / or each side air outlet is closed or opened to control the working state of the two wind wheels; wherein the housing is provided with at least one windless air outlet panel covering at least two intermediate air outlets and two side air outlets and at least A cylindrical revolving door.
  • An air guiding control method for an air conditioner provided by an embodiment of the fourth aspect of the present invention, the air conditioner comprising a housing, two wind wheels, and the air guiding device according to any one of the second aspect embodiments, the shell
  • the outer peripheral wall of the body is provided with two intermediate air outlets in the middle and two side air outlets on both sides of the two intermediate air outlets, and the two wind wheels rotate in opposite directions during operation to realize two air outlet areas, and the wind guide
  • the control method is: controlling the wind mode command to control the rotation of the at least one cylindrical revolving door of the air guiding device according to the air outlet mode command, so that the ventilation passage is located inside the casing or inside and outside the connecting casing, and each intermediate air outlet and/or Or each side air outlet is closed or opened to control the working state of the two wind wheels, since at least one windless air outlet panel and at least one cylinder covering the two middle air outlets and the two side air outlets are installed on the housing
  • the revolving door is such that the wind generated by the work of the two wind wheels
  • the wind is soft and stable, and the windless wind is achieved.
  • the wind generated by the two wind turbines is prevented from being directly blown to the user through the air outlet.
  • the cold wind is hard and the hot air is dry. And affecting the comfort of the user, effectively improving the user's experience; rotating the ventilation passage through the at least one cylindrical revolving door to the inside of the casing or connecting the inside and outside of the casing to each of the intermediate air outlets and/or each side
  • the air outlet is closed or opened, so that when the cylindrical revolving door rotates to close each of the intermediate air outlets and/or each side air outlet, the wind generated by the wind wheel is blown by the windless air blower to the user to realize the windless wind.
  • the air conditioner can realize the integrated air when the cylindrical door revolving door rotates to open each of the middle air outlets and/or each side air outlet, that is, the wind is ensured by the windless air outlet.
  • the air volume blown by the ventilation passage of the cylindrical revolving door and the wide range of winds can quickly exchange heat with the air of the external environment to quickly achieve the heating or cooling comfort. Increase the user experience.
  • the rotation of the cylindrical revolving door to connect the inside and the outside of the casing with different positions of the ventilation passage can change the air outlet direction of the air outlet, satisfying the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, and avoiding the wind guide through the louver assembly.
  • Limiting the range of the wind effectively expanding the range of the wind, It ensures sufficient airflow and a wide range of airflow, which can achieve rapid heating or cooling and enhance the user experience.
  • the housing is a cylindrical housing, and the outer peripheral wall of the housing is provided with two intermediate air outlets in the middle and two side air outlets on both sides of the two intermediate air outlets, and the damper assembly includes two middle portions.
  • At least one windless air outlet panel and at least one cylindrical revolving door of the air outlet and the two side air outlets, and the plurality of air outlets cooperate with the plurality of cylindrical revolving doors to satisfy the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, and simultaneously
  • At least one windless air deflector and at least one cylindrical revolving door cooperate to realize a comprehensive air outlet mode combining windless wind, windless wind and conventional air blowing, thereby further improving user comfort and improving
  • the user's experience, combined with the way of wind can ensure that the gentle wind like the willow breeze blows to the user, while ensuring that the indoor temperature is even, avoiding the hard cold wind or the dry hot air directly blowing to the user, easily causing the user to catch a cold.
  • the problem of coughing which in turn ensures the health of the user, improves the comfort of the user, is more suitable for children, the elderly, and expands the product.
  • Range improve the market competitiveness of products to enhance the selling point of the product.
  • different numbers of windless air outlet panels and different numbers of cylindrical revolving doors can be set according to the needs of the user, and different numbers of windless air outlet panels and different numbers of cylindrical revolving doors are arranged in each middle.
  • the function of the air conditioner is expanded, and the satisfaction of the user is improved.
  • At least one windless air outlet panel is two, and two windless air outlet panels cover two side air outlets; at least one cylindrical revolving door has two, two cylinders. The revolving door is located at the two intermediate air outlets.
  • At least one windless air outlet panel is two, and two windless air outlet panels cover the two side air outlets, so that the air outlets of the air conditioner can be airless and windproof.
  • the soft air enhances the comfort of the user, and expands the range of the windless wind and improves the satisfaction of the user.
  • At least one cylindrical revolving door is two, and two cylindrical revolving doors are located at the two intermediate air outlets. By rotating the two cylindrical revolving doors, the ventilation passages are located inside the casing or inside and outside the casing, so that the two intermediate air outlets can stop the air or the conventional air blowing, so that the wind is concentrated when the conventional air is discharged, which is beneficial to the air conditioner.
  • the air conditioner can be realized No wind and wind, and comprehensive air, to meet the user's air conditioning
  • the pursuit of multiple air outlets and a variety of air outlet functions enhances user comfort and enhances the user experience.
  • the two side air outlets cover two windless air outlet panels, which expands the range of the windless wind, so that the windless wind is scattered, which is beneficial to the user to enjoy the windless wind. Comfortable, avoiding only the middle air outlet to achieve a windless sensation.
  • the two windless wind panels are symmetrically arranged on both sides of the two cylindrical revolving doors in the middle, which effectively ensures the appearance of the air conditioner and improves the satisfaction of the user.
  • the method further comprises: controlling the two air guiding members of the air guiding device to rotate to different positions according to the air blowing mode command.
  • the two air guiding members of the air guiding device are controlled to rotate to different positions according to the air blowing mode command, so that the two air guiding members rotate respectively to abut against the two sides or the middle portion of the air duct assembly,
  • the air outlet area is connected with two intermediate air outlets or two side air outlets, and each air guiding member is located between one side and the middle portion of the air duct assembly to connect the two air outlet areas with the four air outlets.
  • the ventilation passages are located inside the casing or open or close the two intermediate air outlets inside and outside the casing, and the two side air outlets of the air conditioner can be realized.
  • the wind-free wind, the two intermediate air outlets and the four air outlets simultaneously produce the air, which satisfies the user's pursuit of multi-dimensional air outlets and various air outlet functions, and improves the satisfaction of users.
  • reduce the cost while ensuring sufficient air volume can quickly reach the air conditioner and heating or cooling comfort, enhance the user experience.
  • the air outlet mode command is a windless air outlet command
  • the at least one cylindrical revolving door of the air guiding device is controlled to rotate so that the ventilation passage is located inside the casing or the connecting shell Inside and outside the body, each intermediate air outlet and / or each side air outlet is closed Or open
  • the specific steps of controlling the working state of the two wind wheels include: controlling the rotation of each cylindrical revolving door according to the windless air blowing command, so that the ventilation passage is located inside the casing to close each of the intermediate air outlets, and control two wind wheels start working.
  • the air outlet mode command is a windless air outlet command
  • the rotation of each cylindrical revolving door is controlled according to the windless air outlet command, so that the ventilation passage is located inside the casing to close each of the intermediate air outlets, and two The wind turbines start to work, so that the wind generated by the work of the two wind turbines is blown out to the external environment by the windless windshield covering the two side air outlets, and the wind generated by the wind wheel work has no wind and wind.
  • the through holes are evacuated into a plurality of low-speed, uniform air filaments that are spread to the outside of the casing and blow to the user.
  • the wind is soft and stable, and the wind generated by the two wind turbines is prevented from being directly blown to the user through the side air outlets due to the cold wind.
  • the hot air is more dry and affects the satisfaction of the user.
  • the softer wind blows the user to effectively improve the user's comfort and enhance the user's experience, and the two side air outlets simultaneously achieve the windless wind and expand.
  • the range of windless winds increases the satisfaction of users.
  • the method further comprises: controlling the rotation of the two air guiding members of the air guiding device to abut against the middle portion of the air duct assembly according to the windless air blowing command, respectively The two side air outlets are connected.
  • the two air guiding members of the air guiding device are controlled to be in contact with the middle portion of the air duct assembly according to the windless air blowing command, and the two air outlet regions are respectively connected to the two side air outlets.
  • the two air outlets and the middle air outlet are blocked, so that when the air conditioner performs the windless air blowing command, the winds of the two air outlets generated by the two wind turbines all pass through the two side air outlets.
  • the wind-free wind plate blows out to the external environment, ensuring the softness of the wind blown out to the user, improving the comfort of the user, and ensuring that the wind generated by the wind wheel work is blown through the two side air outlets that are performing the wind action.
  • the air volume loss inside the casing during the air outlet of the air conditioner is reduced, the working efficiency of the wind wheel is improved, and the use cost is reduced.
  • the air outlet mode command is a conventional air blowing command
  • the at least one cylindrical revolving door of the air guiding device is controlled to rotate, so that the ventilation passage is located inside the housing or communicates with the inside of the housing.
  • the specific steps include: controlling the rotation of each cylindrical revolving door according to the conventional air blowing instruction, so that the ventilation passage communicates with the inside and outside of the casing to open each of the intermediate air outlets, and controls each The air guiding members rotate respectively to abut one side of the air duct assembly, and the two air outlet regions are respectively communicated with the two intermediate air outlets to control the two wind wheels to start working.
  • the air outlet mode command is a conventional air blowing command
  • each of the intermediate air outlets is opened by controlling the rotation of each of the cylindrical revolving doors according to the conventional air blowing command, and each of the intermediate air outlets is opened through the air passage and the outside of the casing, and each guide is controlled.
  • the rotation of the wind member abuts against one side of the air duct assembly, and the two air outlet regions are respectively connected with the two intermediate air outlets, and at the same time, the two air outlet regions and the two side air outlets are blocked, and the two wind wheels are controlled to start.
  • the wind generated by the two wind turbines is blown out to the external environment through the two intermediate air outlets, and the two intermediate air outlets of the air conditioner are conventionally discharged, and the wind generated by the wind turbine working is reduced inside the casing.
  • the loss of air volume improves the working efficiency of the wind wheel and ensures that the air volume from the two intermediate air outlets to the external environment is sufficient, expanding the range of conventional air outlets, ensuring the concentration of conventional winds, and making the winds and externals adequate and concentrated.
  • the environment exchanges heat to quickly achieve the heating or cooling comfort, and maintains the indoor temperature unchanged, improving the user experience and improving user satisfaction.
  • each of the intermediate air outlets can be opened by connecting the ventilation passages of the cylindrical revolving door to the inside and outside of the casing at different positions, so that the air outlet direction of each of the intermediate air outlets is different, and the user can satisfy the multi-dimensional air outlet mode of the air conditioner.
  • the ventilation passage of the cylindrical revolving door can be set as an arc structure, and the rotation of the cylindrical revolving door can be used to make the arc structure concave or convex toward the middle portion of the two intermediate air outlets so that the two intermediate air outlets are out.
  • the wind direction is different, which satisfies the user's demand for the multi-dimensional air outlet mode of the air conditioner and enhances the user experience.
  • the air outlet mode command is an integrated air blowing command
  • the at least one cylindrical revolving door of the air guiding device is controlled to rotate according to the air outlet mode command, so that the ventilation passage is located inside the casing or connected to the inside of the casing.
  • externally closing or opening each of the intermediate air outlets and/or each side air outlet, and the specific steps of controlling the working states of the two wind wheels include: controlling the rotation of each cylindrical rotating door to connect the ventilation passages according to the integrated air blowing instruction
  • Each of the intermediate air outlets is opened inside and outside the casing to control the two wind wheels to start working.
  • the air outlet mode command is an integrated air blowing command
  • the rotation of each cylindrical revolving door is controlled, so that the ventilation passage communicates with the inside and outside of the casing to open each of the intermediate air outlets, and the two winds are controlled.
  • the wheel starts to work, so that the wind generated by the working of the wind wheel passes through each windless air outlet plate covering each side air outlet to blow the user to realize the windless air outlet of the two side air outlets of the air conditioner.
  • the air is quickly exchanged between the external air outlet and the external environment through two intermediate air outlets to achieve cooling or heating, and the indoor temperature is maintained, thereby improving the user experience and avoiding harder
  • the cold wind or the dry hot air directly blows the user to cause the user to have a cold or cough, which ensures the user's health and improves the user's comfort. It is more suitable for children and the elderly, and expands the use of the product. Improve the market competitiveness of products and enhance the selling point of products.
  • the method further comprises: controlling, according to the integrated air blowing instruction, each air guiding member of the air guiding device to rotate between one side and the middle portion of the air duct assembly, and the two air outlet regions It is connected with two intermediate air outlets and two side air outlets respectively.
  • each air guiding member of the air guiding device by controlling each air guiding member of the air guiding device to rotate between one side and the middle portion of the air duct assembly according to the integrated air blowing instruction, the two air outlet regions and the middle air outlet, two The side air outlets are connected. Since the two air guiding members are located inside the two air outlets, the two air outlets are divided by the two air guiding members to ensure the air volume of the two side air outlets and the two intermediate air outlets. Sufficient, avoiding the problem that the wind generated by the wind wheel work is not shunted through the side air outlet and the middle air outlet to the external environment, and the air outlet is insufficient, effectively ensuring a good air output effect and improving the user experience. .
  • the wind splitting generated by the wind turbine working by the two air guiding members makes the majority of the wind pass through the two intermediate air outlets after ensuring that the air volume blown by the windless air outlets through the two side air outlets is sufficient.
  • the ventilation passage of the cylindrical revolving door is blown out to the external environment to exchange heat with the air of the external environment, so that the wind blown by the two intermediate air outlets can be rapidly cooled or heated to meet the user's demand for heating or cooling comfort of the air conditioner.
  • the soft wind of the two side air outlets can be used to improve the user's comfort, thereby improving the user experience and increasing the satisfaction of the user.
  • the air outlet mode command is to stop the air blowing command, and according to the air outlet mode command, the at least one cylindrical revolving door of the air guiding device is controlled to rotate to make the ventilation passage be located inside the casing or communicate with the inside of the casing.
  • the specific steps include: controlling the two wind wheels to stop according to the stop air blowing command, controlling the two air guiding members to stop rotating, controlling each cylindrical rotating door to rotate, so that the ventilation passages are located inside the casing to close each of the intermediate air outlets.
  • the air outlet mode command is to stop the air blowing command, and according to the stop air blowing command, the two wind wheels are controlled to stop working to stop generating wind, and the two air guiding members are controlled to stop rotating, thereby preventing the air guiding member from stopping.
  • the energy is wasted and noise is generated, which affects the user's use, and the satisfaction of the user is improved.
  • the rotation of the two cylindrical revolving doors is controlled so that the ventilation passage is located inside the casing to close the two intermediate air outlets to avoid air conditioning.
  • the two intermediate air outlets are exposed to the outside, which affects the appearance of the air conditioner and easily causes the interior of the air conditioner to fall into the dust, effectively ensuring the appearance of the air conditioner and ensuring the cleanness of the interior of the housing and improving the user's use. Satisfaction, improve the quality of the product.
  • the two air guiding members of the air guiding device can be rotated to any position and then stopped. Specifically, the two air guiding members can be rotated to abut the middle portion of the air duct assembly.
  • the two air outlets of the two wind wheels are connected to the two side air outlets and blocked by the two intermediate air outlets, so that the air conditioner can directly control the wind wheel when executing the windless air blowing command. Achieve no wind and wind, no need to control the rotation of the air guiding member, improve the control speed of the air conditioner, and improve the satisfaction of the user.
  • an air conditioner comprising: a casing, wherein an outer peripheral wall of the casing is provided with an intermediate air outlet at the middle and two side air outlets at two sides of the intermediate air outlet Two wind wheels, two wind wheels are rotated in opposite directions to realize two air outlet regions; and the air guiding device according to any one of the above first embodiments.
  • An air conditioner according to an embodiment of the present invention includes a housing, two wind wheels, and the air guiding device according to any one of the first aspect of the present invention, wherein an outer peripheral wall of the housing is disposed in the middle The middle air outlet and the two side air outlets on both sides of the middle air outlet, the two wind wheels rotate in reverse to realize two wind wheels in the two air outlet areas.
  • the air conditioner provided by the embodiment of the fifth aspect of the present invention includes all the advantageous technical effects of the air guiding device provided by the first aspect of the present invention, and is not described herein.
  • the method further includes: detecting means disposed on the casing for detecting the wind mode command; the controller being disposed on the casing, and the two wind wheels and the at least one sliding door
  • the two air guiding members of the air guiding device are connected, and the two wind wheels, the at least one sliding door and the two air guiding members are controlled according to the air blowing mode command; wherein the air blowing mode command comprises a windless wind output Command, regular air command, integrated air command, stop air command.
  • the air conditioner further includes a detecting device and a controller.
  • the detecting device is disposed on the casing to detect the wind mode command
  • the controller is disposed on the casing, and the two wind wheels, the at least one sliding door
  • the two air guiding members of the air guiding device are connected, and according to the windless air blowing command detected by the detecting device, the conventional air blowing command, the integrated air blowing command, and the stop air blowing command, the two wind wheels and the at least one sliding door
  • the two air guiding members are controlled so that the wind generated by the two wind wheels works through the windless sensation, and the plurality of through holes of the air outlet plate are evacuated into a plurality of low speed and uniform air wires which are spread to the outside of the casing and blow to the user.
  • the wind is soft and stable, and the wind-free air is realized. It avoids the wind generated by the two wind turbines and directly blows to the user.
  • the wind is hard and the hot air is dry, which affects the user's comfort.
  • the intermediate air outlet and/or each side air outlet is closed or opened by sliding the at least one sliding door along the circumferential direction of the housing to different positions, such that the sliding door closes the middle air outlet and/or each When the air outlet is turned out, the wind generated by the wind wheel works without the wind, and the wind plate blows to the user to realize the windless wind and improve the comfort of the user.
  • the air conditioner can realize the integrated air output, that is, the air is softened by the windless air outlet, and the air is directly discharged through the air outlet to make the air conditioner quickly exchange heat with the air of the external environment to achieve heating or cooling comfort. To further enhance the user experience and increase user satisfaction.
  • an air conditioner comprising: a casing, wherein the outer peripheral wall of the casing is provided with two intermediate air outlets in the middle and two sides on both sides of the two intermediate air outlets.
  • a wind deflecting device according to any one of the above aspects of the second aspect.
  • An air conditioner according to an embodiment of the sixth aspect of the present invention includes a housing, two wind wheels, and the air guiding device according to any one of the second aspect, wherein the outer peripheral wall of the housing is disposed in the middle
  • the two intermediate air outlets and the two side air outlets on both sides of the two intermediate air outlets are reversely rotated when the two wind wheels are operated to realize the two wind wheels of the two air outlet areas.
  • the air conditioner provided by the embodiment of the sixth aspect of the present invention includes the air guiding device provided by the embodiment of the second aspect, and thus has all the beneficial technical effects of the air guiding device provided by the embodiment of the second aspect, and details are not described herein again.
  • the method further includes: detecting means disposed on the casing for detecting the wind mode command; the controller being disposed on the casing and rotating with the two wind wheels and the at least one cylinder The two air guiding members of the door and the air guiding device are connected, and the two wind wheels are commanded according to the air outlet mode, At least one cylindrical revolving door and two air guiding members are controlled; wherein the air blowing mode command includes a windless air blowing command, a conventional air blowing command, a comprehensive air blowing command, and a stop air blowing command.
  • the air conditioner further includes a detecting device and a controller.
  • the detecting device is disposed on the casing to detect the wind mode command
  • the controller is disposed on the casing, and the two wind wheels and the at least one cylindrical revolving door
  • the two air guiding members of the air guiding device are connected, and according to the windless air blowing command detected by the detecting device, the conventional air blowing command, the integrated air blowing command, the stop air blowing command, the two wind wheels, at least one cylinder
  • the revolving door and the two air guiding members are controlled so that the wind generated by the two wind wheels works through the windless sensation, and the plurality of through holes of the air discharging plate are evacuated into a plurality of low speed and uniform air wires which are spread to the outside of the casing and blow to the user.
  • the air is soft and stable, and realizes the windless wind. It avoids the wind generated by the two wind turbines and directly blows to the user.
  • the wind is hard and the hot air is dry, which affects the user's comfort.
  • the user's experience is improved; the intermediate air outlet and/or each side air outlet is closed or opened by rotating the at least one cylindrical revolving door such that the ventilation passage is located inside the housing or inside and outside the communication housing.
  • the cylindrical revolving door rotates to close each of the intermediate air outlets and/or each side air outlet, the wind generated by the wind wheel works through the windless air outlet to blow the wind to the user, thereby improving the comfort of the user.
  • the air conditioner can realize the integrated air outlet, that is, the wind is ensured by the windless wind deflecting air outlet, and the wind is rotated through the cylinder.
  • the air passage of the ventilation passage is sufficient, and the wind with a wide range is quickly exchanged with the air of the external environment to quickly achieve the heating or cooling comfort and enhance the user experience.
  • a computer apparatus comprising a memory, a processor, and a computer program stored on the memory and operable on the processor, the processor for performing the third aspect embodiment Or the step of any one of the air guiding control methods of the fourth aspect.
  • the computer device provided by the embodiment of the seventh aspect of the present invention includes a memory, a processor, and a computer program stored on the memory and operable on the processor, where the processor is configured to execute the third aspect embodiment or the fourth aspect embodiment The steps of any of the methods of controlling the wind.
  • the processor of the computer device according to the embodiment of the seventh aspect of the present invention is capable of performing the steps of any one of the air conduction control methods of the third aspect embodiment or the fourth aspect embodiment, and therefore, the third aspect embodiment is provided Or all the beneficial techniques of the air guiding control method described in the fourth aspect The effect will not be described here.
  • a computer readable storage medium having stored thereon a computer program, wherein the third aspect embodiment or the fourth aspect embodiment is implemented when the computer program is executed by the processor The steps of any of the methods of controlling the wind.
  • the computer readable storage medium provided by the embodiment of the eighth aspect of the present invention has a computer program stored thereon, and when the computer program is executed by the processor, the air guiding control method of the third aspect embodiment or the fourth aspect embodiment is implemented. The steps of any method.
  • the computer program of the computer readable storage medium provided by the embodiment of the eighth aspect of the present invention is executed by the processor to perform the steps of any of the methods of the air guiding control method of the third aspect embodiment or the fourth aspect embodiment, All the beneficial technical effects of the air guiding control method described in the third embodiment or the fourth embodiment are not described herein.
  • FIG. 1 is a schematic structural view of an air conditioner in an embodiment of the present invention.
  • Figure 2 is a cross-sectional view of the air conditioner in one embodiment of the present invention shown in Figure 1;
  • Figure 3 is a front elevational view of the air conditioner of the embodiment of the present invention shown in Figure 1;
  • Figure 4 is a cross-sectional view showing the A-A of the air conditioner in an embodiment of the present invention shown in Figure 3;
  • Figure 5 is a front elevational view of the air conditioner in still another embodiment of the present invention shown in Figure 1;
  • Figure 6 is a schematic structural view of an air conditioner in a second embodiment of the present invention.
  • FIG. 7 is a schematic structural view of an air conditioner when the air conditioner is in a windless sense air blowing instruction according to an embodiment of the present invention
  • FIG. 8 is a schematic structural view of an air conditioner in a conventional air blowing instruction according to an embodiment of the present invention.
  • Figure 9 is a schematic structural view of the air conditioner when it is a conventional air blowing command according to still another embodiment of the present invention.
  • Figure 10 is a schematic view showing the structure of an air conditioner in accordance with an embodiment of the present invention.
  • Figure 11 is a schematic view showing the structure of the air conditioner when the air blowing command is stopped in an embodiment of the present invention
  • Figure 12 is a schematic structural view of an air conditioner in a third embodiment of the present invention.
  • Figure 13 is a cross-sectional view showing the air conditioner of the third embodiment of the present invention shown in Figure 12;
  • Figure 14 is a front elevational view of the air conditioner in the third embodiment of the present invention shown in Figure 12;
  • Figure 15 is a cross-sectional view showing the B-B of the air conditioner in the third embodiment of the present invention shown in Figure 14;
  • Figure 16 is a schematic structural view of an air conditioner in a fourth embodiment of the present invention.
  • Figure 17 is a schematic structural view of an air conditioner in a fifth embodiment of the present invention.
  • FIG. 18 is a schematic structural view of the air conditioner when the air conditioner is in a windless sense air blowing instruction according to still another embodiment of the present invention.
  • Figure 19 is a schematic view showing the structure of an air conditioner in a conventional air blowing instruction according to another embodiment of the present invention.
  • Figure 20 is a schematic structural view showing an air conditioner in accordance with still another embodiment of the present invention.
  • Figure 21 is a schematic view showing the structure of the air conditioner in the case of stopping the air blowing instruction in still another embodiment of the present invention.
  • Figure 22 is a flow chart showing the air guiding control method of the first embodiment of the present invention.
  • FIG. 23 is a schematic flow chart of a wind guiding control method according to a second embodiment of the present invention.
  • Figure 24 is a flow chart showing a wind guiding control method according to a third embodiment of the present invention.
  • Figure 25 is a flow chart showing a wind guiding control method according to a fourth embodiment of the present invention.
  • Figure 26 is a flow chart showing the air guiding control method of the fifth embodiment of the present invention.
  • Figure 27 is a flow chart showing a wind guiding control method according to a sixth embodiment of the present invention.
  • FIG. 28 is a schematic flow chart of a wind guiding control method according to a seventh embodiment of the present invention.
  • Figure 29 is a flow chart showing the air guiding control method of the eighth embodiment of the present invention.
  • Figure 30 is a flow chart showing the air guiding control method of the ninth embodiment of the present invention.
  • Figure 31 is a flow chart showing a wind guiding control method according to a tenth embodiment of the present invention.
  • Figure 32 is a schematic block diagram of a computer processing device of an embodiment of the present invention.
  • the air guiding device 10, the air guiding control method, and the air conditioner 100 will be described below with reference to FIGS. 1 through 32.
  • the present invention provides an air guiding device 10 for an air conditioner 100.
  • the air conditioner 100 includes a housing 20 and two wind wheels 30, and the outer peripheral wall of the housing 20 is disposed.
  • the intermediate air outlet 202 in the middle and the two side air outlets 204 on the two sides of the intermediate air outlet 202, the two wind wheels 30 rotate in opposite directions during operation to realize two air outlet areas, and the air guiding device 10 includes: the air duct assembly 12 Provided inside the housing 20, two wind wheels 30 are mounted inside the air duct assembly 12; the damper assembly 14 is mounted on the housing 20 and includes at least one windless cover covering the intermediate air outlet 202 and the two side air outlets 204.
  • the wind panel 142 and the at least one sliding door 1440 are sensed; wherein at least one windless air outlet panel 142 is provided with a plurality of through holes 1422, and at least one sliding door 1440 is slid along the circumferential direction of the housing 20 to different positions.
  • the air outlet 202 and/or each side air outlet 204 is closed or opened.
  • the air guiding device 10 provided by the present invention is used for the air conditioner 100.
  • the air conditioner 100 includes a casing 20 provided with an intermediate air outlet 202 and two side air outlets 204 and two wind wheels 30.
  • the air guiding device 10 includes a duct assembly 12 and a damper assembly 14, the duct assembly 12 is disposed inside the casing 20, and the two wind wheels 30 are installed inside the duct assembly 12, the damper
  • the assembly 12 is mounted on the housing 20 and includes at least one windless air outlet panel 142 and at least one sliding door 1440 covering the intermediate air outlet 202 and the two side air outlets 204, through at least A wind-free air outlet plate 142 is provided with a plurality of through holes 1422, so that the air generated by the two wind wheels 30 when the air conditioner 100 is in the air blowing state is evacuated through the plurality of through holes 1422 of the windless air outlet plate 142.
  • a plurality of low-speed, uniform air filaments are spread to the outside of the casing 20 to be blown to the user, and the air is soft and stable, and the wind-free air is realized, and the wind generated by the two wind turbines 30 is prevented from being directly blown to the user through the air outlet. Because the cold wind is hard and the hot air is dry, the user's comfort is affected, which effectively improves the user's experience; the intermediate air outlet 202 and/or the intermediate air outlet 202 and/or the sliding position of the housing 20 through the sliding direction of the housing 20 to the different positions.
  • Each side air outlet 204 is closed or opened, so that when the sliding door 1440 closes the middle air outlet 202 and/or each side air outlet 204, the wind generated by the wind wheel 30 is blown to the user by the windless air outlet 142. The air feels out of the wind and improves the comfort of the user.
  • the air conditioner 100 can realize the integrated air outlet, that is, the windless air outlet panel 142
  • the wind guarantees a gentle wind and passes through
  • the wind outlet 100 directly fast with the air conditioner external heat exchange with the environment to achieve heating or cooling comfort, to further enhance the user experience and increase the satisfaction of the user.
  • the housing 20 is a cylindrical housing 20, and the outer peripheral wall of the housing 20 is provided with an intermediate air outlet 202 and two side air outlets 204, and the damper assembly 14 includes a middle air outlet 202 and two side air outlets 204.
  • At least one windless air outlet panel 142 and at least one sliding door 1440, the plurality of air outlets cooperate with the plurality of sliding doors 1440 to satisfy the user's pursuit of the multi-dimensional air outlet mode of the air conditioner 100, and at least one windless feeling
  • the combination of the wind plate 142 and the at least one sliding door 1440 can realize a comprehensive air outlet mode combining the windless wind, the windless wind and the conventional wind, further improving the comfort of the user and improving the user experience.
  • the integrated air way can ensure that the gentle wind like the willow breeze blows to the user, while ensuring that the indoor temperature is uniform, avoiding the problem that the hard cold wind or the dry hot air directly blows to the user and easily causes the user to catch a cold or cough. In addition, it ensures the health of the user and improves the comfort of the user. It is more suitable for children and the elderly, expanding the scope of use of the product and improving the market for the product. Fight force, to enhance the selling point of the product. Further, different numbers of windless air outlet panels 142 and different numbers of sliding doors 1440 can be set according to the needs of the user, and different numbers of windless air outlet panels 142 and different numbers of sliding doors 1440 are disposed in the middle. The tuyere 202 and each side air outlet 204 meet the user's demand for various air outlet modes and various air outlet functions of the air conditioner 100, expand the function of the air conditioner 100, and improve the satisfaction of the user.
  • the two wind wheels 30 rotate in opposite directions during operation to realize two air outlet regions, and the air outlet range is increased, which can meet the requirement of one middle air outlet 202 and two side air outlets 204 to ensure sufficient output.
  • the air volume and the rapid air output effect enable the air conditioner 100 to quickly achieve the heating or cooling comfort, improve the user experience, and improve the user satisfaction.
  • the shape of the at least one windless air outlet panel 142 is adapted to the intermediate air outlet 202 or each side air outlet 204, and is located at the middle air outlet. 202 or each side air outlet 204.
  • the shape of the at least one windless air deflector 142 is adapted to the intermediate air outlet 202 or each side air outlet 204 by mounting at least one windless air outlet panel 142 on the housing 20. And located at the middle air outlet 202 or each side air outlet 204, so that the windless air outlet panel 142 covers the middle air outlet 202 and/or each side air outlet 204 with a small area, thereby ensuring that the air conditioner 100 can Achieve no wind and wind, improve user comfort, while saving manufacturing costs and avoiding waste. Further, since the windless air outlet plate 142 is located at the intermediate air outlet 202 or each of the side air outlets 204, the plurality of through holes 1422 of the windless air outlet panel 142 can be set to different shapes and different sizes. The side of the windless air outlet panel 142 facing the outside of the casing 20 is beautiful, thereby ensuring the appearance of the air conditioner 100 and improving the satisfaction of the user.
  • At least one windless air outlet panel 142 is located outside the intermediate air outlet 202 or each side air outlet 204, and communicates with the upper end of the housing 20 and Lower end.
  • the windless air outlet panel 142 is caused by the at least one windless air outlet panel 142 located outside the intermediate air outlet 202 or each side air outlet 204 and communicating with the upper and lower ends of the housing 20. Covering the intermediate air outlet 202 or each side air outlet 204 and communicating with the upper end and the lower end of the housing 20, ensuring that the air conditioner 100 can achieve wind-free airflow to ensure user comfort, while ensuring the intermediate air outlet 202 or each The upper and lower sides of the casing 20 where the side air outlets 204 are located are covered by the windless air outlet 142, thereby ensuring the uniformity of the upper and lower portions of the casing 20 where the intermediate air outlet 202 or each side air outlet 204 is located.
  • the air outlet 142 is not disposed at the intermediate air outlet 202 or each side air outlet 204, and the upper and lower air outlets 202 or each side air outlet 204 are still the housing 20 and affect the appearance of the air conditioner 100.
  • the appearance is beautiful, and the appearance of the air conditioner 100 is effectively ensured, and the satisfaction of the user is improved.
  • one side of the housing 20 where the intermediate air outlet 202 or the side air outlet 204 is located may be disposed as a windless air outlet panel 142, which effectively ensures the housing of the intermediate air outlet 202 or the side air outlet 204.
  • the consistency of the appearance on the 20 side further improves the appearance of the appearance of the air conditioner 100 and improves the satisfaction of the user.
  • the air outlet plate connects the upper and lower ends of the intermediate air outlet 202 or the side air outlet 204, or the side of the housing 20 where the intermediate air outlet 202 or the side air outlet 204 is located is disposed as a windless air outlet panel 142.
  • the true windless venting range is adapted to the intermediate air outlet 202 or the side air outlet 204.
  • At least one windless air outlet panel 142 is one, and one windless air outlet panel 142 covers the middle air outlet 202; at least one sliding The door 1440 is two, and the two sliding doors 1440 are slid in the circumferential direction of the housing 20 to different positions to close or open the two side air outlets 204.
  • At least one windless air outlet panel 142 is one, and one windless air outlet panel 142 covers the middle air outlet 202, so that the middle air outlet 202 can be realized without wind and wind, ensuring soft air blowing and improving users.
  • at least one sliding door 1440 is two, and the two sliding doors 1440 are slid in the circumferential direction of the housing 20 to different positions to close or open the two side air outlets 204, so that the side air outlets 204 can be stopped.
  • the windless air outlet panel 142 is located in the middle of the two sliding doors 1440, which ensures that the two sliding doors 1440 are symmetrically disposed on both sides of a windless air outlet panel 142, thereby ensuring the appearance of the air conditioner 100. Beautiful, improve user satisfaction.
  • two sliding doors 1440 are located outside the two side air outlets 204, and the two sliding doors 1440 are slid along the circumferential direction of the housing 20 to be connected to close the intermediate air outlet 202 and two One side air outlet 204.
  • two sliding doors 1440 are located outside the two side air outlets 204, and are slid along the circumferential direction of the housing 20 by the two sliding doors 1440 to the closed intermediate air outlet 202 and the two side air outlets 204. So that when the air conditioner 100 stops blowing, the two sliding doors 1440 slide to The air outlets are closed to close all the air outlets, and the airless air outlets 142 that cover the intermediate air outlets 202 are prevented from being exposed to the outside of the casing 20, thereby affecting the appearance of the air conditioner 100, through the two sliding doors 1440.
  • the sliding door 1440 is provided with a rack 1442.
  • the housing 20 is internally provided with a driving device with a gear 40.
  • the gear 40 passes through the housing 20 disposed on the side of the side air outlet 204.
  • the mounting groove extends out of the housing 20, and the sliding door 1440 is slidably coupled to the housing 20 through the gear 40 and the rack 1442.
  • the gear 40 is rotated by the driving device to drive the rack 1442 to move, thereby driving the sliding door 1440.
  • the connection mode Moving along the circumferential direction of the housing 20 to different positions to close or open the side air outlet 204, the connection mode is simple, the gear 40 and the rack 1442 are accurately driven, effectively improving the accuracy and flexibility of the air conditioner 100 control, and improving the air conditioner. 100 quality, improve user satisfaction.
  • the sliding door 1440 can be slidably coupled to the housing 20 in other manners as desired to close or open the side air outlet 204.
  • the two louver assemblies 18 are disposed inside the casing 20 and disposed opposite to each of the side air outlets 204 .
  • each of the side air outlets 204 can be controlled by rotating each louver assembly 18 to a different position.
  • the direction of the air outlet enables the same side air outlet 204 to blow out winds in different directions, realize different air outlet modes, satisfy the user's pursuit of the multi-dimensional air outlet mode of the air conditioner 100, and improve the satisfaction of the user.
  • the air guiding assembly 16 is rotatably disposed inside the air duct assembly 12, and the air guiding unit 16 is respectively disposed in the middle.
  • Two air guiding members 162 between the air outlet 202 and each of the side air outlets 204, each of the air guiding members 162 respectively abutting against one side of the air duct assembly 12, and the two air outlet portions and the intermediate air outlet 202 are respectively In parallel, the two air guiding members 162 are rotated to abut the intermediate portion of the air duct assembly 12 to connect the two air outlet regions to the two side air outlets 204, respectively.
  • the air guiding device 10 further includes a wind guide that is disposed inside the air duct assembly 12
  • the assembly 16 the air guiding assembly 16 includes two air guiding members 162 respectively located between the intermediate air outlet 202 and each of the side air outlets 204, and is rotated by the two air guiding members 162 to the two sides or the middle of the air duct assembly 12, respectively.
  • the partial abutment connects the two air outlets with the intermediate air outlet 202 or the two side air outlets 204.
  • the two air guiding members 162 are located between one side and the middle portion of the air duct assembly 12, and two The air outlet area is connected to the three air outlets, and then the two air guiding members 162 are rotated and the two sliding doors 1440 are opened or closed to open or close the two side air outlets 204, so that the air outlet 202 of the air conditioner 100 can be airless.
  • the wind, the conventional air outlet of the two side air outlets 204 and the integrated air outlet of the three air outlets simultaneously meet the user's pursuit of the multi-dimensional air outlet mode and various air outlet functions of the air conditioner 100, and improve the user's use.
  • each of the air guiding members 162 is rotated to abut one side of the air duct assembly 12 to connect the two air outlet regions with the intermediate air outlet 202, and two out The wind zone is blocked by the two side air outlets 204.
  • the two sliding doors 1440 slide along the circumferential direction of the casing 20 to close the two side air outlets 204, the two wind turbines 30 work out of the two air outlet zones.
  • the wind is blown out to the external environment through the windless air outlet 142 of the intermediate air outlet 202, ensuring that the wind blown to the user is soft and slow, improving the comfort of the user, and ensuring that the wind generated by the work of the wind wheel 30 passes through.
  • the intermediate air outlet 202 that is performing the air blowing operation is blown to the external environment, which reduces the air volume loss inside the casing 20 during the air outlet of the air conditioner 100, improves the working efficiency of the wind wheel 30, and reduces the use cost.
  • the two air guiding regions are respectively connected to the two side air outlets 204 by rotating the two air guiding members 162 to abut against the intermediate portion of the air duct assembly 12, and at the same time, two The air outlets are blocked from the middle air outlets 202.
  • the two sliding doors 1440 slide along the circumferential direction of the casing 20 to open the two side air outlets 204
  • the two wind turbines 30 work out of the two air outlets.
  • the wind is blown out to the external environment through the two side air outlets 204, and the wind output of the side air outlets 204 is realized, and the wind loss of the wind generated by the operation of the wind wheel 30 inside the casing 20 is reduced, and the work of the wind wheel 30 is improved.
  • Efficiency and ensure that the air volume from the two side air outlets 204 is blown out to the external environment, Allowing sufficient air to exchange heat with the external environment can quickly achieve the heating or cooling comfort, and maintain the indoor temperature unchanged, improve the user experience and improve user satisfaction.
  • the two air guiding members 162 are respectively rotated between one side and the middle portion of the air duct assembly 12, so that the two air outlet regions generated by the operation of the two wind wheels 30 are respectively separated from the middle.
  • the tuyere 202 and the two side air outlets 204 are simultaneously communicated.
  • the wind generated by the two wind wheels 30 works through the intermediate air outlet 202.
  • the two side air outlets 204 are simultaneously blown out to the external environment, and the integrated air outlet of the air conditioner 100 is realized, so that the soft wind blown out by the air outlet 142 through the middle air outlet 202 is blown to the user, thereby improving the comfort of the user.
  • the wind blown by the two side air outlets 204 quickly achieves cooling or heating, maintains the indoor temperature unchanged, and enhances the user experience, and since the two air guiding members 162 are located inside the two air outlets, through the two The air guiding members 162 divide the two air outlet regions to ensure that the air volume of the two side air outlets 204 and the intermediate air outlets 202 are sufficient, and the wind generated by the operation of the wind wheel 30 is prevented from being shunted through the side air outlets 204 and the middle.
  • Air outlet 202 blows out to the external environment, and there is a problem that the air outlet is insufficient in the air outlet, effectively ensuring a good air blowing effect and improving the user experience.
  • the wind splitting generated by the operation of the wind wheel 30 by the two air guiding members 162 causes most of the wind to pass through the two sides after ensuring that the air volume blown by the windless air outlet panel 142 of the intermediate air outlet 202 is sufficient.
  • the tuyere 204 is blown out to the external environment to exchange heat with the air of the external environment to achieve rapid cooling or heating of the side air outlet 204, to meet the user's need for heating or cooling comfort of the air conditioner 100, and the intermediate air outlet 202 is soft.
  • the wind blows to the user to improve the user's comfort, thereby improving the user experience and increasing the satisfaction of the user.
  • the middle portion of the air duct assembly 12 is disposed on one side of the two wind wheels 30 with a guiding slope 122, two wind guides.
  • the member 162 is coupled to the guide ramp 122 when it is rotated against the intermediate portion of the duct assembly 12.
  • the intermediate portion of the air duct assembly 12 is disposed on one side of the two wind wheels 30 with a guiding slope 122.
  • the guiding slope is The 122 phases are connected, and the wind generated by the operation of the wind wheel 30 is smoothly and quickly blown out to the outside of the casing 20 along the guiding inclined surface 122 and the air guiding member 162 through the side air outlet 204 in the air outlet region, thereby ensuring sufficient air volume and Good air blowing effect, which can satisfy the user's quick access to the air conditioner 100 To the demand for cooling or heating comfort, to increase user satisfaction.
  • the present invention provides an air guiding device 10 for an air conditioner 100.
  • the air conditioner 100 includes a housing 20 and two wind wheels 30.
  • the housing 20 is provided with two intermediate air outlets 202 in the middle and two side air outlets 204 on both sides of the two intermediate air outlets 202.
  • the two wind wheels 30 When the two wind wheels 30 are in operation, they rotate in opposite directions to realize two air outlet areas.
  • the air guiding device 10 includes: a duct assembly 12 disposed inside the housing 20, two wind wheels 30 mounted inside the air duct assembly 12; and a damper assembly 14 mounted on the housing 20, including two intermediate air outlets At least one windless air outlet panel 142 and at least one cylindrical revolving door 1444 of the two side air outlets 204; wherein at least one windless air outlet panel 142 is provided with a plurality of through holes 1422, at least one cylindrical revolving door 1444 is provided with a venting passage 1446 that is rotated such that the venting passage 1446 is located inside the housing 20 or interconnects the interior and exterior of the housing 20 to enable each intermediate vent 202 and/or each side vent 204 to be closed or opened.
  • the air guiding device 10 provided by the second aspect of the present invention is used for an air conditioner 100.
  • the air conditioner 100 includes a housing 20, two wind wheels 30 and an air guiding device 10.
  • the housing 20 is provided with two intermediate air outlets 202 and two.
  • the side air outlets 204, the two wind wheels 30 rotate in opposite directions during operation to realize two air outlet regions
  • the air guiding device 10 includes a duct assembly 12 and a damper assembly 14, and the air duct assembly 12 is disposed inside the housing 20,
  • the wind wheel 30 is mounted inside the air duct assembly 12, and the damper assembly 14 is mounted on the housing 20, including at least one windless air outlet panel 142 covering at least two intermediate air outlets 202 and two side air outlets 204, and at least one
  • the cylindrical revolving door 1444 is provided with a plurality of through holes 1422 through the windless air outlet plate 142, so that the wind generated by the operation of the two wind wheels 30 when the air conditioner 100 is in the air blowing state covers each of the intermediate air outlets 202 and/or
  • the ventilation passage 1446 is located inside the housing 20 or the communication housing 20 by rotating at least one cylindrical revolving door 1444.
  • Each of the intermediate air outlets 202 and/or each of the side air outlets 204 is closed or opened internally and externally such that the wind wheel 30 is rotated when the cylindrical revolving door 1444 is rotated to close each of the intermediate air outlets 202 and/or each of the side air outlets 204.
  • the wind generated by the work by the windless wind deflector 142 blows the wind to the user to improve the comfort of the user, and the rotating door of the cylindrical door rotates to open each middle.
  • the air conditioner 100 can realize the integrated air outlet when the air outlet 202 and/or each of the side air outlets 204, that is, the air is ventilated by the windless damper 142 to ensure that the wind is soft, and is blown out through the ventilation passage 1446 of the cylindrical revolving door 1444.
  • the rotation of the cylindrical revolving door 1444 to communicate the inside and outside of the casing 20 at different positions of the ventilation passage 1446 can change the air outlet direction of the air outlet, satisfying the user's pursuit of the multi-dimensional air outlet mode of the air conditioner 100, and avoiding the passage of the louver
  • the component conducts air to limit the airflow range, effectively expanding the airflow range, ensuring sufficient airflow and a wide range of airflow, thereby enabling rapid heating or cooling and improving the user experience.
  • the housing 20 is a cylindrical housing 20, and the outer peripheral wall of the housing 20 is provided with two intermediate air outlets 202 in the middle and two side air outlets 204 on both sides of the two intermediate air outlets 202, and the damper
  • the assembly 14 includes at least one windless air outlet panel 142 and at least one cylindrical revolving door 1444 covering the two intermediate air outlets 202 and the two side air outlets 204.
  • the plurality of air outlets cooperate with the plurality of cylindrical revolving doors 1444 to satisfy The user pursues the multi-dimensional air outlet mode of the air conditioner 100, and at least one windless air outlet panel 142 cooperates with at least one cylindrical revolving door 1444 to realize a combination of windless wind, windless wind and conventional air outlet.
  • the comprehensive air outlet method further enhances the user's comfort and enhances the user's experience, and the integrated air way can ensure that the gentle wind like the willow breeze blows to the user, while ensuring uniform indoor temperature and avoiding harder Cold air or drier hot air blows directly to the user, which may cause the user to have a cold or cough, thereby ensuring the health of the user and improving the comfort of the user.
  • the elderly use expanding the use of products, improve the market competitiveness of products to enhance the selling point of the product.
  • different numbers of windless air outlet panels 142 and different numbers of cylindrical revolving doors 1444 can be set according to the needs of the user, and different numbers of windless air outlet panels 142 and different numbers of cylindrical revolving doors 1444 are disposed at Each of the intermediate air outlets 202 and each of the side air outlets 204 meets the user's demand for various air outlet modes and various air outlet functions of the air conditioner 100, and expands the functions of the air conditioner 100 to improve user satisfaction.
  • the shape of the at least one windless air outlet panel 142 is adapted to each of the intermediate air outlets 202 or each of the side air outlets 204, and is located at each One intermediate air outlet 202 or each side air outlet 204.
  • the shape of the at least one windless air outlet panel 142 is adapted to each of the intermediate air outlets 202 or each of the side air outlets 204 by mounting at least one windless air outlet panel 142 to the housing. 20 is located at each of the intermediate air outlets 202 or each of the side air outlets 204, so that the windless air outlet panel 142 covers each of the intermediate air outlets 202 or each of the side air outlets 204 with a small area, which ensures The air conditioner 100 can achieve windless wind and improve the comfort of the user, while saving manufacturing costs and avoiding waste.
  • the windless air outlet panel 142 is located at each of the intermediate air outlets 202 or each of the side air outlets 204, the plurality of through holes 1422 of the windless air outlet panel 142 can be set to different shapes and different shapes.
  • the size is such that the side of the windless air deflector 142 facing the outside of the casing 20 is beautiful, thereby ensuring the appearance of the air conditioner 100 and improving the satisfaction of the user.
  • At least one windless air outlet panel 142 is located outside each of the intermediate air outlets 202 or each of the side air outlets 204, and communicates with the housing 20. Upper and lower ends.
  • the slashes in FIG. Partly illustrated as a windless air outlet panel 142, such that the windless air outlet panel 142 covers each of the intermediate air outlets 202 or each of the side air outlets 204 and communicates with the upper and lower ends of the housing 20 to ensure that the air conditioner 100 can be implemented without
  • the wind-sensing wind ensures the comfort of the user, and at the same time, the upper and lower sides of the casing 20 where each of the intermediate air outlets 202 or each side air outlet 204 is located is ensured to be covered by the windless air outlet panel 142, thereby ensuring
  • the uniformity of the upper and lower portions of each of the intermediate air outlets 202 or each of the side air outlets 204 is such that a windless air outlet panel 142 is disposed at each of the intermediate air outlets 202 or each of the side air outlets 204.
  • one side of the housing 20 where the intermediate air outlet 202 or the side air outlet 204 is located may be disposed as a windless air outlet panel 142, which effectively ensures the housing of the intermediate air outlet 202 or the side air outlet 204.
  • the consistency of the appearance on the 20 side further improves the appearance of the appearance of the air conditioner 100 and improves the satisfaction of the user.
  • one side of the casing 20 where the side air outlet 204 is located is provided with a windless air outlet plate 142, wherein the oblique line portion in FIG. 17 is illustrated as having no wind feeling. Wind panel 142. As shown in FIG.
  • the wind plate communicates with the casing 20 at the upper and lower ends of the side air outlet 204, or one side of the casing 20 where the side air outlet 204 is located as shown in FIG.
  • the true windless wind output range is adapted to the side air outlet 204.
  • the venting passage 1446 is an arcuate structure.
  • the ventilation passage 1446 has an arc-shaped structure, and the rotation of the cylindrical revolving door 1444 causes the curved structure to be concave or convex to different sides of the air outlet where the cylindrical revolving door 1444 is located, so that the air outlet direction of the air outlet can be changed.
  • the user's requirement for the multi-dimensional air outlet mode of the air conditioner 100 is satisfied, and the user experience is improved, and the air passage 1446 of the curved structure communicates with the inner air outlet 202 or the side air outlet 204 when the inner and outer portions of the housing 20 are opened, which is beneficial to control the wind.
  • the wind generated by the work of the wheel 30 is blown out to the external environment from the air outlet 202 or the side air outlet 204 on both sides of the air outlet 204, which further expands the air outlet range, which is beneficial to the air conditioner 100 to quickly and evenly heat or Cooling, maintaining the indoor temperature unchanged, meets the user's need for rapid realization of heating or cooling comfort of the air conditioner 100, and improves user satisfaction.
  • At least one windless air outlet panel 142 is two, and two windless air outlet panels 142 cover the two side air outlets 204.
  • At least one cylindrical revolving door 1444 is two, and two cylindrical revolving doors 1444 are located at the two intermediate air outlets 202.
  • At least one windless air outlet panel 142 is two, and two windless air outlet panels 142 cover the two side air outlets 204, so that the two side air outlets 204 of the air conditioner 100 can be made without wind.
  • at least one cylindrical revolving door 1444 is two, two cylindrical revolving doors 1444 are located At the two intermediate air outlets 202, by rotating the two cylindrical revolving doors 1444 such that the ventilation passages 1446 are located inside the housing 20 or communicating with the inside and outside of the housing 20, the two intermediate air outlets 202 can be stopped to stop the air or the conventional air blowing, thereby making When the conventional air blows out, the wind is concentrated, which is beneficial to the rapid cooling or heating of the air conditioner 100, and maintains the indoor temperature uniformly.
  • the two windless air outlet panels 142 covering the two side air outlets 204 are located in the middle of the two air outlets 204.
  • the two cylindrical revolving doors 1444 at the tuyere 202 cooperate with each other to realize the windless sensation and integrated air of the air conditioner 100, and satisfy the user's pursuit of various air outlet modes and various air outlet functions of the air conditioner 100. High degree of user comfort, Improve the user experience.
  • the two side air outlets 204 cover the two windless air outlet panels 142, which expands the range of the windless wind, so that the windless wind is dispersed, which is beneficial to the user to enjoy the windless feeling.
  • the comfort of the wind avoiding only the air outlet in the middle to achieve the windless feeling.
  • the user needs to concentrate together to enjoy the windless and crowded problem, which effectively enhances the user experience, while the middle two are out.
  • Two tuyere revolving doors 1444 are disposed at the tuyere 202 such that the common air outlets are realized by the two intermediate air outlets 202 when the ventilation passages 1446 of the cylindrical revolving door 1444 communicate with the inside and outside of the housing 20, and can quickly achieve heating or heating.
  • the temperature in the room is kept constant, and the temperature at the wind-free air outlet range of the two side air outlets 204 is ensured to be uniform, thereby further improving the satisfaction of the user.
  • the two windless air deflectors 142 are symmetrically disposed on both sides of the two cylindrical revolving doors 1444 located in the middle, which effectively ensures the appearance of the air conditioner 100 and improves the satisfaction of the user.
  • the two arcuate structures of the two cylindrical revolving doors 1444 are disposed away from each other, enabling air to be blown from the two intermediate air outlets 202 to meet.
  • Forming an air outlet zone, and the arc structure is disposed away from the intersection to reduce the intersection of the wind from the two arc structures to the outside of the casing 20, and the wind blown from the two arc structures to the outside of the casing 20 is increased.
  • the air outlet range allows the air blown from the inside of the casing 20 to exchange heat with the outside air in a large range, so that the air conditioner 100 can achieve heating or cooling comfort quickly, uniformly, and in a wide range. Maintain the indoor temperature, improve the user experience, and improve user satisfaction.
  • the wind generated by the operation of the wind wheel 30 is blown out to the external environment through the air passages 1446 of the two arc structures, and the two intermediate air outlets 202 are further enlarged.
  • the air outlet range improves the efficiency of the air conditioner 100 to achieve heating or cooling comfort, and improves the satisfaction of the user.
  • the air guiding assembly 16 is rotatably disposed inside the air duct assembly 12, and the air guiding assembly 16 includes Two air guiding members 162 are respectively located between each of the intermediate air outlets 202 and each of the side air outlets 204, and each of the air guiding members 162 is respectively rotated against one side of the air duct assembly 12 to enable two air outlet regions. Separate In communication with the two intermediate air outlets 202, the two air guiding members 162 are rotated to abut the intermediate portion of the air duct assembly 12 to connect the two air outlet regions to the two side air outlets 204, respectively.
  • the air guiding device 10 further includes a wind deflecting assembly 16 rotatably disposed inside the air duct assembly 12, the air guiding assembly 16 including two between each of the intermediate air outlets 202 and each of the side air outlets 204, respectively.
  • the air guiding members 162 are respectively connected to the two sides or the middle portion of the air duct assembly 12 by the two air guiding members 162, and the two air outlet portions are connected to the two intermediate air outlets 202 or the two side air outlets 204. Further, the two air guiding members 162 are located between one side and the middle portion of the air duct assembly 12 to connect the two air outlet portions with the four air outlets, and then rotate through the two air guiding members 162 and cooperate with the two air guiding members 162.
  • the cylindrical revolving door 1444 opens or closes the two side air outlets 204, which can realize the windless sensation of the two side air outlets 204 of the air conditioner 100, the conventional air outlet of the two intermediate air outlets 202, and the four air outlets simultaneously.
  • the comprehensive air outlet of the wind meets the user's pursuit of the multi-dimensional air outlet mode and various air outlet functions of the air conditioner, and improves the satisfaction of the user's use, while ensuring that the wind generated by the work of the wind wheel 30 passes through the ongoing wind action.
  • the air outlet blows out to the shell 20 externally, the air volume loss inside the casing 20 during the air blowing process is reduced, the working efficiency of the wind wheel 30 is improved, the use cost is reduced, and sufficient air volume is ensured, and the air conditioner 100 can be quickly heated or Cooling comfort enhances the user experience.
  • the two air guiding regions are respectively connected to the two side air outlets 204 by rotating the two air guiding members 162 to abut against the intermediate portion of the air duct assembly 12, and two air outlets are simultaneously provided.
  • the area and the two intermediate air outlets 202 are blocked, so that the winds of the two air outlets generated by the operation of the two wind wheels 30 are all blown out to the external environment through the two side air outlets 204, so that the two side air outlets 204 are free of wind.
  • the wind is felt to ensure the softness of the wind blown to the user, and the comfort of the user is improved, and at the same time, the wind generated by the operation of the wind wheel 30 is all blown out to the external environment through the two side air outlets 204 that are performing the wind action.
  • the air volume loss inside the casing 20 during the air outlet of the air conditioner 100 is reduced, the working efficiency of the wind wheel 30 is improved, and the use cost is reduced.
  • the two cylindrical revolving doors 1444 can be rotated at the same time, so that the ventilation passages 1446 are located inside the casing 20 to close the two intermediate air outlets 202, further ensuring that the wind generated by the operation of the wind wheel 30 is completely blown out through the windless air outlet panel 142.
  • the external environment improves the air outlet efficiency, and avoids the middle air outlet 202 not rotating.
  • the cylindrical revolving door 1444 rotates to make the ventilation passage 1446 communicate with the inside and outside of the housing 20 to affect the appearance of the air conditioner 100, thereby effectively improving the satisfaction of the user. degree.
  • each of the air guiding members 162 is rotated to abut one side of the air duct assembly 12 to connect the two air outlet regions with the two intermediate air outlets 202, and two air outlets are simultaneously provided.
  • the zone is blocked from the two side air outlets 204.
  • the two wind turbines 30 work to produce two out
  • the wind in the wind zone is completely blown out to the external environment through the ventilation passage 1446, and the two intermediate air outlets 202 are normally ventilated, and the wind volume loss of the wind generated by the operation of the wind wheel 30 inside the casing 20 is reduced, and the wind wheel 30 is improved.
  • the working efficiency ensures that the air volume from the two intermediate air outlets 202 is blown out to the external environment, which expands the range of conventional airflow and ensures the concentration of conventional airflow, so that sufficient and concentrated wind can exchange heat with the external environment quickly. To achieve the comfort of heating or cooling, and to maintain the indoor temperature, improve the user experience, and improve user satisfaction.
  • the two air guiding members 162 are respectively rotated between one side and the middle portion of the air duct assembly 12, so that the two air outlet regions generated by the two wind wheels 30 respectively and two The intermediate air outlet 202 and the two side air outlets 204 are simultaneously communicated.
  • the two cylindrical rotating doors 1444 are rotated to connect the ventilation passage 1446 to the inside and outside of the housing 20 to open the two intermediate air outlets 202, the two wind wheels 30 work.
  • the wind is blown out to the external environment through the two intermediate air outlets 202 and the two side air outlets 204, and the integrated air outlet of the air conditioner 100 is realized, so that the wind is blown out by the air outlets 142 through the two side air outlets 204.
  • the two air outlets are partitioned by the two air guiding members 162 to ensure that the air volume of the two side air outlets 204 and the two intermediate air outlets 202 are sufficient to avoid the operation of the wind wheel 30.
  • the wind splitting generated by the operation of the wind wheel 30 by the two air guiding members 162 is such that after ensuring that the air volume blown by the windless air outlet panel 142 passing through the two side air outlets 204 is sufficient, most of the wind passes through two
  • the ventilation passage 1446 of the cylindrical revolving door 1444 at the intermediate air outlet 202 is blown out to the external environment to exchange heat with the air of the external environment, so that the wind blown by the two intermediate air outlets 202 is rapidly cooled or heated to reach the user's air conditioner.
  • the intermediate portion of the duct assembly 12 is provided with a guiding ramp 122 near one side of each of the wind wheels 30, and each of the air guiding members 162 rotates against the intermediate portion of the duct assembly 12. It is connected to the guiding slope 122 at the time.
  • the intermediate portion of the air duct assembly 12 is disposed on one side of the two wind wheels 30 with a guiding slope 122.
  • the guiding slope is The 122 phases are connected, and the wind generated by the operation of the wind wheel 30 is smoothly and quickly blown out to the outside of the casing 20 along the guiding inclined surface 122 and the air guiding member 162 through the side air outlet 204 in the air outlet region, thereby ensuring sufficient air volume and The good air blowing effect can further satisfy the user's demand for the airless comfort of the air conditioner 100, and improve the satisfaction of the user.
  • the embodiment of the third aspect of the present invention provides an air guiding control method for an air conditioner, the air conditioner comprising a housing, two wind wheels, and the air guiding device according to any one of the first aspect embodiments.
  • the outer peripheral wall of the casing is provided with an intermediate air outlet at the middle and two side air outlets on both sides of the middle air outlet.
  • the two air outlets are rotated in the opposite direction to realize two air outlet regions, as shown in FIG. 22
  • a schematic flowchart of a wind guiding control method according to a first embodiment of the present invention, the air guiding control method comprising:
  • Step 2202 detecting a wind mode command
  • Step 2204 according to the air outlet mode command, the at least one sliding door of the air guiding device is controlled to slide along the circumferential direction of the housing to different positions to close or open the intermediate air outlet and/or each side air outlet, and control the two wind wheels.
  • the housing is provided with at least one windless air outlet panel and at least one sliding door covering the middle air outlet and the two side air outlets.
  • An air guiding control method for an air conditioner provided by an embodiment of a third aspect of the present invention, the air conditioner comprising a housing, two wind wheels, and the air guiding device according to any one of the above aspects, the outer peripheral wall of the housing is disposed There are an air outlet in the middle and two side air outlets on both sides of the middle air outlet.
  • the air guiding control method is: by detecting the wind mode command, According to the air outlet mode command, at least one sliding door of the air guiding device is controlled to slide along the circumferential direction of the housing to different positions to close or open the intermediate air outlet and/or each side air outlet to control the working state of the two wind wheels.
  • the housing is provided with at least an intermediate air outlet and two side air outlets a windless ventilating panel and at least one sliding door, so that the wind generated by the two wind turbines passes through the windless sensation, and the plurality of through holes of the air venting panel are evacuated into a plurality of low speed, uniform air filaments which are spread to the outside of the casing.
  • the wind is soft and stable, and the wind-free air is realized, which avoids the wind generated by the two wind turbines directly blowing to the user, because the cold wind is hard and the hot air is dry, which affects the user's comfort.
  • the intermediate air outlet and/or each side air outlet is closed or opened by sliding at least one sliding door along the circumferential direction of the housing to different positions, so that the sliding air outlet is closed in the middle of the sliding door and/or Or the wind generated by the working of the wind wheel at each side air outlet is blown by the windless air blower to the user to realize the windless wind, improve the comfort of the user, and open the middle air outlet and/or each side in the sliding door.
  • the air conditioner can realize the integrated air output, that is, the wind generated by the wind wheel work is ensured that the wind is soft through the windless air outlet, and the air is directly discharged through the air outlet to make the air conditioner quickly enter the air of the external environment. Heat exchange to achieve a comfortable level of heating or cooling, further enhance the user experience, improve customer satisfaction to use.
  • the housing is a cylindrical housing
  • the outer peripheral wall of the housing is provided with an intermediate air outlet and two side air outlets
  • the damper assembly comprises at least one windless wind that covers the intermediate air outlet and the two side air outlets.
  • the plate and the at least one sliding door, the plurality of air outlets cooperate with the plurality of sliding doors to satisfy the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, and at least one windless air outlet panel and at least one sliding door cooperate to achieve no
  • the wind-sensing, wind-free wind and the conventional air-integrated air outlet method further enhance the user's comfort and enhance the user's experience, and the integrated air way can ensure the gentle breeze.
  • the wind blows to the user while ensuring that the indoor temperature is uniform, avoiding the problem that the hard cold wind or the dry hot air directly blows to the user and easily causes the user to catch a cold or cough, thereby ensuring the health of the user and improving the comfort of the user. It is more suitable for children and the elderly to use, expand the scope of use of products, improve the market competitiveness of products, and enhance the selling point of products.
  • different numbers of windless air outlet panels and different numbers of sliding doors can be set according to the needs of the user, and different numbers of windless air outlet panels and different numbers of sliding doors can be disposed in the middle air outlet and each A side air outlet to meet the user's demand for a variety of air outlets and a variety of air outlet functions, expand the function of the air conditioner, and improve user satisfaction.
  • At least one windless air outlet panel is one, and one windless air outlet panel covers the middle air outlet; at least one sliding door is two, and two sliding doors are along the housing. Slide the circumferential direction to a different position to close or open the two side air outlets.
  • At least one windless air outlet panel is one, and a windless air outlet panel covers the middle air outlet, which can realize the windless air outlet of the middle air outlet, ensuring gentle air blowing and improving user comfort.
  • At least one sliding door is two, and the two sliding doors slide along the circumferential direction of the casing to different positions to close or open the two side air outlets, so that the side air outlet can stop the air outlet or the conventional air outlet, ensuring rapid cooling.
  • the windless air outlet of the air conditioner can be realized
  • the comprehensive air outlet satisfies the user's pursuit of various air outlets and various air outlet functions of the air conditioner, improves the comfort of the user, and enhances the user experience.
  • the windless air outlet plate is located in the middle of the two sliding doors, which ensures that the sliding door is symmetrically disposed on both sides of a windless air outlet panel, thereby ensuring the appearance of the air conditioner and improving the satisfaction of the user. degree.
  • the flow diagram of the air guiding control method of the first embodiment of the present invention as shown in FIG. 22 further includes:
  • Step 2206 according to the air outlet mode command, according to the air outlet mode command, the two air guiding members of the air guiding device are controlled to rotate to different positions.
  • the air guiding control method provided by the present invention controls the two air guiding members of the air guiding device to rotate to different positions according to the air blowing mode command, so that the two air guiding members rotate respectively against the two sides or the middle portion of the air duct assembly
  • the two air outlets are connected to the middle air outlet or the two side air outlets, and the two air guiding members are located between one side and the middle portion of the air duct assembly, and the two air outlet areas are connected to the three air outlets.
  • the integrated air outlet of the three air outlets simultaneously meets the user's pursuit of the multi-dimensional air outlet mode and various air outlet functions of the air conditioner, and improves the satisfaction of the user's use, while ensuring that all the wind generated by the wind turbine work is being carried out.
  • the air outlet of the wind action is blown out to the outside of the casing, which reduces the loss of air volume inside the casing during the air blowing process, improves the working efficiency of the wind wheel, reduces the use cost, and ensures sufficient output. Amount, can quickly reach the comfort of air conditioning and heating or cooling, improve the user experience.
  • FIG. 23 is a schematic flowchart diagram of a wind guiding control method according to a second embodiment of the present invention, the air guiding control method includes:
  • Step 2302 detecting a wind mode command
  • Step 2304 according to the windless air blowing command, control each sliding door to slide along the circumferential direction of the casing to close each side air outlet, and control the two wind wheels to start working.
  • the air outlet mode command is a windless air outlet command
  • each sliding door is controlled to slide along the circumferential direction of the casing to close each side air outlet port according to the windless air blowing command.
  • Controlling the two wind wheels to start working so that the wind generated by the work of the two wind wheels is blown out to the external environment through the windless air outlet plate covering the middle air outlet, and the wind generated by the wind wheel work has no wind and feels more wind.
  • the through holes are evacuated into a plurality of low-speed, uniform air filaments that are spread to the outside of the casing and blow to the user.
  • the wind is soft and stable, and the wind generated by the two wind turbines is prevented from being directly blown to the user through the middle air outlet because the cold wind is hard.
  • the hot air is more dry and affects the satisfaction of the user.
  • the softer wind blows the user to effectively improve the user's comfort and enhance the user experience.
  • the flow diagram of the air guiding control method of the second embodiment of the present invention as shown in FIG. 23 further includes:
  • Step 2306 according to the windless air blowing command, each of the air guiding members of the air guiding device is controlled to abut against one side of the air duct assembly to connect the two air outlet regions with the intermediate air outlet.
  • the air guiding control method provided by the present invention controls the rotation of each air guiding member of the air guiding device to abut against one side of the air duct assembly according to the windless air blowing command, and connects the two air outlet regions to the middle air outlet At the same time, the two outlet areas and the two side outlets are blocked, so that when the air conditioner performs the windless gusting command, the winds of the two outlet areas generated by the two wind turbines all pass through the intermediate air outlet.
  • the wind-free wind plate blows out to the external environment, ensuring that the wind blown out to the user is soft and slow, improving the comfort of the user, and ensuring that the wind generated by the wind wheel work passes through the middle air outlet that is performing the wind action. Blowing out to the external environment reduces the loss of air volume inside the casing during the air outlet of the air conditioner, improves the working efficiency of the wind turbine, and reduces the use cost.
  • FIG. 24 is a schematic flowchart diagram of a wind guiding control method according to a third embodiment of the present invention, the air guiding control method includes:
  • Step 2402 detecting a wind mode command
  • Step 2404 control each sliding door to slide along the circumferential direction of the casing to open each side air outlet, and control the rotation of the two air guiding members to abut the middle portion of the air duct assembly to connect the two air outlet regions. They are connected to the two side air outlets respectively to control the two wind wheels to start working.
  • the air outlet mode command is a conventional air blowing command
  • each sliding door is controlled to slide along the circumferential direction of the casing to open each side air outlet according to a conventional air blowing command, and two wind guiding airs are controlled.
  • the rotation of the piece abuts against the middle portion of the air duct assembly, and the two air outlet areas are respectively connected with the two side air outlets, and at the same time, the two air outlet areas and the middle air outlet are blocked, and the two wind wheels are controlled to start working.
  • the wind generated by the work of the two wind turbines is blown out to the external environment through the two side air outlets, and the air outlets of the two side air outlets of the air conditioner are conventionally ventilated, and the winds of the two air outlet areas generated by the two wind turbines are all passed.
  • the two side air outlets are blown out to the external environment, which reduces the air volume loss inside the air conditioner during the air blowing process, improves the working efficiency of the wind wheel, reduces the use cost, and ensures sufficient air output of the side air outlet. It can quickly achieve the comfort of air conditioner heating or cooling, maintain the indoor temperature and improve the user experience.
  • FIG. 25 is a schematic flowchart diagram of a wind guiding control method according to a fourth embodiment of the present invention, the air guiding control method includes:
  • Step 2502 detecting a wind mode command
  • Step 2504 according to the integrated air blowing command, control each sliding door to slide along the circumferential direction of the housing to open each side air outlet, and control the two wind wheels to start working.
  • the air outlet mode command is an integrated air blowing command
  • each sliding door is controlled to slide along the circumferential direction of the casing to open each side air outlet, and the two wind wheels are controlled to start.
  • the work makes the wind generated by the wind wheel work through the windless air outlet plate covering the middle air outlet to blow the windless sensible air of the air conditioner, and the air is blown to the external environment and the external environment through the two side air outlets.
  • the problem of cold or cough can ensure the health of the user and improve the comfort of the user. It is more suitable for children and the elderly, expands the scope of use of the product, improves the market competitiveness of the product, and enhances the selling point of the product.
  • the flow diagram of the air guiding control method of the fourth embodiment of the present invention as shown in FIG. 25 further includes:
  • Step 2506 according to the integrated air blowing instruction, each air guiding member of the air guiding device is controlled to rotate between one side and the middle portion of the air duct assembly, and the two air outlet regions are connected to the intermediate air outlet and the two side air outlets. through.
  • the air guiding control method provided by the present invention controls the two air guiding portions and the intermediate air outlet by controlling each air guiding member of the air guiding device to rotate between one side and the middle portion of the air duct assembly according to the integrated air blowing command.
  • the two side air outlets are connected. Since the two air guiding members are located inside the two air outlets, the two air outlets are divided by the two air guiding members to ensure the exit of the two side air outlets and the middle air outlet.
  • the air volume is sufficient, avoiding the problem that the wind generated by the wind wheel work is not shunted through the side air outlet and the middle air outlet to the external environment, and the air outlet is insufficient, effectively ensuring a good air blowing effect and improving the user's use.
  • the wind splitting generated by the wind turbine working by the two air guiding members makes the wind blow out to the outside through the two side air outlets after ensuring that the air volume blown by the windless air outlet panel through the intermediate air outlet is sufficient.
  • the environment is fully exchanged with the air of the external environment to achieve rapid cooling or heating of the side air outlets, to meet the user's need for heating or cooling comfort of the air conditioner, and the soft air blowing from the middle air outlet can improve the user.
  • the comfort of the user enhances the user experience and increases the satisfaction of the user.
  • FIG. 26 is a schematic flowchart diagram of a wind guiding control method according to a fifth embodiment of the present invention, the air guiding control method includes:
  • Step 2602 detecting a wind mode command
  • Step 2604 according to the stop air blowing command, control the two wind wheels to stop working, control the two air guiding members to stop rotating, and control the two sliding doors to slide along the circumferential direction of the housing to close the two side air outlets.
  • the air outlet mode command is to stop the air blowing command, and according to the stop air blowing command, the two wind wheels are controlled to stop working to stop generating wind, and the two air guiding members are controlled to stop rotating, thereby avoiding the wind guiding.
  • the device keeps turning waste energy and generates noise under the condition of stopping the air blowing, which affects the user's use, improves the satisfaction of the user, and controls the sliding of the two sliding doors along the circumferential direction of the casing to close the two side air outlets, thereby avoiding
  • the air conditioner stops the air outlet state the two side air outlets are exposed to the outside, which affects the appearance of the air conditioner and easily causes the interior of the air conditioner to fall into the dust, thereby effectively ensuring the appearance of the air conditioner and ensuring the cleanness of the interior of the housing, thereby improving the user. Satisfaction with use improves the quality of the product.
  • the two air guiding members of the air guiding device can be rotated to any position and then stopped. Specifically, the two air guiding members can be rotated to offset the two sides of the wind wheel assembly.
  • the two air outlets of the two wind wheels are connected to the middle air outlet and blocked by the two side air outlets, so that the air conditioner directly controls the wind wheel when performing the windless air blowing command.
  • the utility model can realize the windless wind and does not need to control the rotation of the air guiding member, thereby improving the control speed of the air conditioner and improving the satisfaction of the user.
  • the embodiment of the fourth aspect of the present invention provides a wind guiding control method for an air conditioner, the air conditioner comprising a casing, two wind wheels, and the wind guiding body according to any one of the second aspect embodiments.
  • the device has two central air outlets in the middle and two side air outlets on the two sides of the two intermediate air outlets, and the two wind wheels rotate in opposite directions to realize two air outlet areas.
  • FIG. 27 is a schematic flowchart diagram of a wind guiding control method according to a sixth embodiment of the present invention, and the air guiding control method includes:
  • Step 2702 detecting a wind mode command
  • Step 2704 controlling at least one cylindrical revolving door of the air guiding device to rotate, so that the ventilation passage is located inside the casing or inside and outside the connecting casing, and each of the intermediate air outlets and/or each side air outlet is closed or Open to control the working state of the two wind wheels;
  • the housing is provided with at least one windless air outlet panel covering at least two intermediate air outlets and two side air outlets and at least one cylindrical revolving door.
  • the air conditioner includes a casing, two wind wheels, and the air guiding device according to any one of the above aspects, and the outer peripheral wall of the casing is disposed There are two intermediate air outlets in the middle and two side air outlets on both sides of the two intermediate air outlets. When the two wind wheels are working, they rotate in opposite directions to realize two air outlet areas.
  • the air guiding control method is: The air outlet mode command, according to the air outlet mode command, controls at least one cylindrical revolving door of the air guiding device to rotate such that the ventilation passage is located inside the casing or communicates inside and outside the casing to each intermediate air outlet and/or each side air outlet Closing or opening, controlling the working state of the two wind wheels, since the housing is provided with at least one windless air outlet panel covering at least two intermediate air outlets and two side air outlets, and at least one cylindrical revolving door, so that two The wind generated by the wind wheel works through a plurality of through holes covering each of the intermediate air outlets and/or the windless air outlets of each side air outlet is evacuated into a plurality of low speed, uniform air filaments spread to the housing The department blows to the user, the wind is soft and stable, and the wind-free air is realized.
  • the wind generated by the two wind turbines is prevented from blowing directly to the user through the air outlet.
  • the cold wind is hard and the hot air is dry, which affects the user's comfort. Degree, effectively improving the user's experience; closing or opening each of the intermediate air outlets and/or each side air outlet by the rotation of at least one cylindrical revolving door such that the ventilation passages are located inside the housing or inside and outside the communication housing.
  • each side air outlet can realize the integrated air outlet, that is, the air is blown out by the windless air outlet to ensure the wind is soft, and at the same time, the air volume blown through the ventilation passage of the cylindrical revolving door is sufficient, and the wind with a wide range is fast and fast.
  • the heat exchange of the air in the external environment can quickly achieve the heating or cooling comfort and enhance the user experience.
  • the rotation of the cylindrical revolving door to connect the inside and the outside of the casing with different positions of the ventilation passage can change the air outlet direction of the air outlet, satisfying the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, and avoiding the wind guide through the louver assembly.
  • the scope of the wind is limited, and the range of the airflow is effectively expanded, ensuring sufficient airflow and a wide range of airflow, thereby enabling rapid heating or cooling and improving the user experience.
  • the housing is a cylindrical housing, and the outer peripheral wall of the housing is provided with two intermediate air outlets in the middle and two side air outlets on both sides of the two intermediate air outlets, and the damper assembly includes two middle portions.
  • At least one windless air outlet panel and at least one cylindrical revolving door of the air outlet and the two side air outlets, and the plurality of air outlets cooperate with the plurality of cylindrical revolving doors to satisfy the user's pursuit of the multi-dimensional air outlet mode of the air conditioner, and simultaneously
  • At least one windless air deflector and at least one cylindrical revolving door cooperate to realize a comprehensive air outlet mode combining windless wind, windless wind and conventional air blowing, thereby further improving user comfort and improving
  • the user's experience, combined with the way of wind can ensure that the gentle wind like the willow breeze blows to the user, while ensuring that the indoor temperature is even, avoiding the hard cold wind or the dry hot air directly blowing to the user, easily causing the user to catch a cold.
  • the problem of coughing which in turn ensures the health of the user, improves the comfort of the user, is more suitable for children, the elderly, and expands the product.
  • Range improve the market competitiveness of products to enhance the selling point of the product.
  • different numbers of windless air outlet panels and different numbers of cylindrical revolving doors can be set according to the needs of the user, and different numbers of windless air outlet panels and different numbers of cylindrical revolving doors are arranged in each middle.
  • the function of the air conditioner is expanded, and the satisfaction of the user is improved.
  • At least one windless air outlet panel is two, and two windless air outlet panels cover two side air outlets; at least one cylindrical revolving door is two, two The cylindrical revolving door is located at the two intermediate air outlets.
  • At least one windless air outlet panel is two, and two windless air outlet panels cover the two side air outlets, so that the air outlets of the air conditioner can be airless and windproof.
  • the soft air enhances the comfort of the user, and expands the range of the windless wind and improves the satisfaction of the user.
  • At least one cylindrical revolving door is two, and two cylindrical revolving doors are located at the two intermediate air outlets. By rotating the two cylindrical revolving doors, the ventilation passages are located inside the casing or inside and outside the casing, so that the two intermediate air outlets can stop the air or the conventional air blowing, so that the wind is concentrated when the conventional air is discharged, which is beneficial to the air conditioner.
  • the air conditioner can be realized No wind and wind and comprehensive air, to meet the user's pursuit of a variety of air outlets and a variety of air outlets, improve user comfort and enhance the user experience.
  • the two side air outlets cover two windless air outlet panels, which expands the range of the windless wind, so that the windless wind is scattered, which is beneficial to the user to enjoy the windless wind. Comfortable, avoiding only the middle air outlet to achieve a windless sensation.
  • the two windless wind panels are symmetrically arranged on both sides of the two cylindrical revolving doors in the middle, which effectively ensures the appearance of the air conditioner and improves the satisfaction of the user.
  • the flow diagram of the air guiding control method of the sixth embodiment of the present invention as shown in FIG. 27 further includes:
  • Step 2706 according to the air outlet mode command, the two air guiding members of the air guiding device are controlled to rotate to different positions.
  • the air guiding control method provided by the present invention controls the two air guiding members of the air guiding device to rotate to different positions according to the air blowing mode command, so that the two air guiding members rotate respectively against the two sides or the middle portion of the air duct assembly Connecting the two outlet areas to the two intermediate air outlets or the two side air outlets, each of the air guiding members is located between one side and the middle portion of the air duct assembly, and the two air outlet areas and four out Wind
  • the mouth is connected, and then two air conditioners can be realized by rotating the two air guiding members and rotating the two cylindrical rotating doors so that the ventilation passages are located inside the casing or open or close the two intermediate air outlets inside and outside the connecting casing.
  • the side air outlet has no wind-sensing wind, two intermediate air outlets, and four air outlets simultaneously generate air, which satisfies the user's pursuit of multi-dimensional air outlet mode and various air outlet functions of the air conditioner, and improves users. Satisfaction of use, while ensuring that the wind generated by the wind turbine work is blown out to the outside of the casing through the air outlet that is performing the wind action, which reduces the loss of air volume inside the casing during the wind blowing process, and improves the work of the wind wheel. Efficiency, reducing the cost of use, while ensuring sufficient airflow, can quickly achieve the comfort of air conditioning heating or cooling, and enhance the user experience.
  • FIG. 28 is a schematic flowchart diagram of a wind guiding control method according to a seventh embodiment of the present invention, the air guiding control method includes:
  • Step 2802 detecting a wind mode command
  • Step 2804 according to the windless wind output command, control each cylindrical revolving door to rotate so that the ventilation passage is located inside the casing to close each of the intermediate air outlets, and control the two wind wheels to start working.
  • the air blowing mode command is a windless air blowing command
  • the rotation of each cylindrical revolving door is controlled according to the windless air blowing command, so that the ventilation passage is located inside the casing to close each of the intermediate air outlets. Controlling the two wind wheels to start working, so that the wind generated by the work of the two wind wheels is blown out to the external environment through the windless air outlet plate covering the two side air outlets, and the wind generated by the wind wheel work is windless and windy.
  • the plurality of through holes of the plate are evacuated into a plurality of low-speed, uniform air wires which are spread to the outside of the casing and blow to the user, and the air is soft and stable, so that the wind generated by the work of the two wind wheels is directly blown to the user through the side air outlet.
  • the cold wind is harder and the hot air is dry, which affects the user's satisfaction.
  • the softer wind blows the user to effectively improve the user's comfort and enhance the user's experience, and the two side air outlets simultaneously realize the windless feeling.
  • the wind has expanded the range of windless winds and increased user satisfaction.
  • the flow diagram of the air guiding control method of the seventh embodiment of the present invention shown in FIG. 28 further includes:
  • Step 2806 according to the windless air blowing command, the two air guiding members of the air guiding device are controlled to rotate against the middle portion of the air duct assembly, and the two air outlet regions are respectively communicated with the two side air outlets.
  • the two air guiding members of the air guiding device are controlled to rotate against the middle portion of the air duct assembly according to the windless air blowing command, and the two air outlet regions are respectively separated from the two sides.
  • the air outlets are connected, and the two air outlets are blocked from the middle air outlets, so that when the air conditioner performs the windless air output command, the winds of the two air outlets generated by the two wind turbines all pass through the two winds.
  • the windless sensation of the side air outlets is blown out to the external environment, ensuring the softness of the wind blown out to the user, improving the comfort of the user, and ensuring that the wind generated by the wind turbine works all through the two winds that are undergoing the wind action.
  • the side air outlets are blown out to the external environment, which reduces the loss of air volume inside the air conditioner during the air outlet, improves the working efficiency of the wind wheel, and reduces the use cost.
  • FIG. 29 is a schematic flowchart diagram of an air guiding control method according to an eighth embodiment of the present invention, the air guiding control method includes:
  • Step 2902 detecting a wind mode command
  • Step 2904 control each cylindrical revolving door to rotate, so that the ventilation passage communicates with the inside and outside of the housing to open each of the intermediate air outlets, and controls each of the air guiding members to rotate against one side of the air duct assembly respectively.
  • the two outlet zones are respectively connected with the two intermediate air outlets to control the two wind wheels to start working.
  • the air outlet mode command is a conventional air blowing command
  • each of the intermediate air outlets is controlled by controlling the rotation of each of the cylindrical rotating doors according to the conventional air blowing command, so that the ventilation passage communicates with the inside and outside of the casing to open each of the intermediate air outlets.
  • Each air guiding member rotates against one side of the air duct assembly to connect the two air outlet regions with the two intermediate air outlets, and simultaneously blocks the two air outlet regions and the two side air outlets, and controls two The wind wheel starts to work, so that the wind generated by the two wind turbines is blown out to the external environment through the two intermediate air outlets, and the two intermediate air outlets of the air conditioner are conventionally discharged, and the wind generated by the wind wheel work is reduced in the shell.
  • the loss of air volume inside the body improves the working efficiency of the wind wheel, and ensures that the air volume blown from the two intermediate air outlets to the external environment is sufficient, and the range of conventional air outlet is expanded to ensure the concentration of conventional airflow, so that sufficient and concentrated
  • the heat exchange between the wind and the external environment can quickly achieve the heating or cooling comfort, and maintain the indoor temperature, improve the user experience, and improve the user's use. Degree.
  • each of the intermediate air outlets can be opened by connecting the ventilation passages of the cylindrical revolving door to the inside and outside of the casing at different positions, so that the air outlet direction of each of the intermediate air outlets is different, and the user can satisfy the multi-dimensional air outlet mode of the air conditioner.
  • the ventilation passage of the cylindrical revolving door can be set as an arc structure, and the rotation of the cylindrical revolving door can be used to make the arc structure concave or convex toward the middle portion of the two intermediate air outlets so that the two intermediate air outlets are out.
  • the wind direction is different, satisfying the user's air conditioner
  • the demand for multi-dimensional wind mode enhances the user experience.
  • FIG. 30 is a schematic flowchart diagram of a wind guiding control method according to a ninth embodiment of the present invention, the air guiding control method includes:
  • Step 3002 detecting a wind mode command
  • each cylindrical revolving door is controlled to rotate so that the ventilation passage communicates with the inside and outside of the casing to open each of the intermediate air outlets, and the two wind wheels are controlled to start working.
  • the air outlet mode command is an integrated air blowing command
  • each of the intermediate air outlets is controlled by controlling the rotation of each cylindrical revolving door according to the integrated air blowing command, so that the ventilation passage communicates with the inside and outside of the casing to open each of the intermediate air outlets.
  • the two wind wheels start to work, so that the wind generated by the wind wheel work passes through each windless sensation air hood covering each side air outlet to blow the user to realize the wind venting of the two side air outlets of the air conditioner, ensuring the user
  • the comfort of use while the air is blown out to the external environment through the two intermediate air outlets to quickly exchange heat with the external environment to achieve cooling or heating, and to maintain the indoor temperature, improve the user experience, and avoid the hard cold wind.
  • the hot air blows directly to the user, which may cause the user to have a cold or cough, thereby ensuring the health of the user and improving the comfort of the user. It is more suitable for children and the elderly, and expands the scope of use of the product and improves the use of the product.
  • the market competitiveness of products enhances the selling point of products.
  • the flow diagram of the air guiding control method of the ninth embodiment of the present invention shown in FIG. 30 further includes:
  • Step 3006 according to the integrated air blowing instruction, each air guiding member of the air guiding device is controlled to rotate between one side and the middle portion of the air duct assembly, and the two air outlet regions are respectively separated from the two intermediate air outlets and the two side portions.
  • the air outlets are connected.
  • the air guiding control method provided by the present invention controls the two air guiding portions and the intermediate air outlet by controlling each air guiding member of the air guiding device to rotate between one side and the middle portion of the air duct assembly according to the integrated air blowing command.
  • the two side air outlets are connected. Since the two air guiding members are located inside the two air outlets, the two air outlets are divided by the two air guiding members to ensure two side air outlets and two intermediate air outlets.
  • the air volume is sufficient to avoid the problem that the wind generated by the wind wheel work is not shunted and is blown out through the side air outlet and the middle air outlet to the external environment, and the air outlet is insufficient, effectively ensuring a good air output effect and improving the user.
  • the wind splitting generated by the wind turbine working through the two air guiding members enables the air volume to be blown out by the windless air outlet plate that ensures the air outlets through the two side air outlets.
  • the windless air outlet plate ensures the air outlets through the two side air outlets.
  • most of the wind is blown out through the ventilation passage of the cylindrical revolving door at the two intermediate air outlets to the external environment to exchange heat with the air of the external environment, so that the wind blown by the two intermediate air outlets can be quickly cooled or heated.
  • the soft wind of the two side air outlets can improve the user's comfort, thereby improving the user experience and improving the user's satisfaction.
  • FIG. 31 is a schematic flowchart diagram of a wind guiding control method according to a tenth embodiment of the present invention, the air guiding control method includes:
  • Step 3102 detecting a wind mode command
  • Step 3104 according to the stop air blowing command, control the two wind wheels to stop working, control the two air guiding members to stop rotating, and control each cylindrical rotating door to rotate so that the ventilation passages are located inside the casing to close each of the intermediate air outlets.
  • the air outlet mode command is to stop the air blowing command, and according to the stop air blowing command, the two wind wheels are controlled to stop working to stop generating wind, and the two air guiding members are controlled to stop rotating, thereby avoiding the wind guiding.
  • the device keeps turning waste energy and generates noise under the condition of stopping the air blowing, which affects the user's use, improves the satisfaction of the user, and controls the rotation of the two cylindrical revolving doors so that the ventilation passage is located inside the casing to close the two intermediate air outlets.
  • the two intermediate air outlets are exposed to the outside, which affects the appearance of the air conditioner and easily causes the interior of the housing to fall into the dust, thereby effectively ensuring the appearance of the air conditioner and ensuring the cleanness of the interior of the housing. Improve user satisfaction and improve product quality.
  • the two air guiding members of the air guiding device can be rotated to any position and then stopped. Specifically, the two air guiding members can be rotated to abut the middle portion of the air duct assembly.
  • the two air outlets of the two wind wheels are connected to the two side air outlets and blocked by the two intermediate air outlets, so that the air conditioner can directly control the wind wheel when executing the windless air blowing command. Achieve no wind and wind, no need to control the rotation of the air guiding member, improve the control speed of the air conditioner, and improve the satisfaction of the user.
  • an air conditioner comprising: a casing, wherein an outer peripheral wall of the casing is provided with an intermediate air outlet at the middle and two side air outlets at two sides of the intermediate air outlet Two wind wheels, two wind wheels are rotated in opposite directions to realize two air outlet regions; and the air guiding device according to any one of the above first embodiments.
  • An air conditioner according to an embodiment of the present invention includes a housing, two wind wheels, and the air guiding device according to any one of the first aspect of the present invention, wherein an outer peripheral wall of the housing is disposed in the middle The middle air outlet and the two side air outlets on both sides of the middle air outlet, the two wind wheels rotate in reverse to realize two wind wheels in the two air outlet areas.
  • the air conditioner provided by the embodiment of the fifth aspect of the present invention includes all the advantageous technical effects of the air guiding device provided by the first aspect of the present invention, and is not described herein.
  • the method further includes: detecting means disposed on the casing for detecting the wind mode command; the controller being disposed on the casing and sliding with the two wind wheels, at least one The two air guiding members of the door and the air guiding device are connected, and the two wind wheels, the at least one sliding door and the two air guiding members are controlled according to the air blowing mode command; wherein the air blowing mode command comprises no wind feeling Wind command, regular air command, integrated air command, stop air command.
  • the air conditioner further includes a detecting device and a controller.
  • the detecting device is disposed on the casing to detect the wind mode command
  • the controller is disposed on the casing, and the two wind wheels, the at least one sliding door
  • the two air guiding members of the air guiding device are connected, and according to the windless air blowing command detected by the detecting device, the conventional air blowing command, the integrated air blowing command, and the stop air blowing command, the two wind wheels and the at least one sliding door
  • the two air guiding members are controlled so that the wind generated by the two wind wheels works through the windless sensation, and the plurality of through holes of the air outlet plate are evacuated into a plurality of low speed and uniform air wires which are spread to the outside of the casing and blow to the user.
  • the wind is soft and stable, and the wind-free air is realized. It avoids the wind generated by the two wind turbines and directly blows to the user.
  • the wind is hard and the hot air is dry, which affects the user's comfort.
  • the user's experience; the intermediate air outlet and/or each side air outlet is closed or opened by sliding the at least one sliding door along the circumferential direction of the housing to different positions, such that the sliding door closes the middle air outlet and/or each side
  • the air outlet is used, the wind generated by the wind wheel works without the wind, and the wind plate blows to the user to realize the windless wind, improve the comfort of the user, and the air conditioner is installed when the sliding door opens the middle air outlet and/or each side air outlet.
  • the utility model can realize the integrated air outlet, that is, the wind is ensured by the windless air outlet, and the wind is directly discharged through the air outlet to make the air conditioner quickly exchange heat with the air of the external environment to achieve heating or cooling comfort. Further enhance the user experience and improve user satisfaction.
  • the detecting device of the air conditioner detects the windless air blowing command or stops the air blowing command
  • the sliding door does not slide, and the appearance of the air conditioner does not change, so the user cannot use the eye from the outside.
  • the air conditioner is specifically configured to execute the windless air command or the air blow command, but only when the wind wheel working inside the air conditioner housing and the air guiding assembly rotate to realize a specific windless air blowing command to ensure a gentle wind blowing To the user, the satisfaction of the user is improved; similarly, when the detecting device of the air conditioner detects the normal air blowing command or the integrated air blowing command, the sliding door slides to open the two side air outlets, so the user cannot use the external air outlet.
  • the eye recognition air conditioner specifically executes the conventional air blowing command or the integrated air blowing command, but the air guiding component inside the air conditioner rotates to realize the air blowing command of different functions, satisfies the different needs of the user, and improves the satisfaction of the user.
  • an air conditioner comprising: a casing, wherein the outer peripheral wall of the casing is provided with two intermediate air outlets in the middle and two sides on both sides of the two intermediate air outlets.
  • a wind deflecting device according to any one of the above aspects of the second aspect.
  • An air conditioner according to an embodiment of the sixth aspect of the present invention includes a housing, two wind wheels, and the air guiding device according to any one of the second aspect, wherein the outer peripheral wall of the housing is disposed in the middle
  • the two intermediate air outlets and the two side air outlets on both sides of the two intermediate air outlets are reversely rotated when the two wind wheels are operated to realize the two wind wheels of the two air outlet areas.
  • the air conditioner provided by the embodiment of the sixth aspect of the present invention includes the air guiding device provided by the embodiment of the second aspect, and thus has all the beneficial technical effects of the air guiding device provided by the embodiment of the second aspect, and details are not described herein again.
  • the method further includes: detecting means disposed on the casing for detecting the wind mode command; the controller being disposed on the casing, and the two wind wheels, the at least one cylinder The two air guiding members of the revolving door and the air guiding device are connected, and the two wind wheels, the at least one cylindrical rotating door and the two air guiding members are controlled according to the air blowing mode command; wherein the air blowing mode command includes no wind The wind command, the regular air command, the integrated air command, and the stop air command are sensed.
  • the air conditioner further includes a detecting device and a controller.
  • the detecting device is disposed on the casing to detect the wind mode command
  • the controller is disposed on the casing, and the two wind wheels and the at least one cylindrical revolving door
  • the two air guiding members of the air guiding device are connected, and according to the windless air blowing command detected by the detecting device, the conventional air blowing command, the integrated air blowing command, the stop air blowing command, the two wind wheels, at least one cylinder
  • the revolving door and the two air guiding members are controlled so that the wind generated by the two wind wheels works through the windless sensation, and the plurality of through holes of the air discharging plate are evacuated into a plurality of low speed and uniform air wires which are spread to the outside of the casing and blow to the user.
  • the wind is soft and stable, achieving a windless wind and avoiding two wind turbines
  • the generated wind is directly blown to the user through the air outlet, because the cold wind is hard and the hot air is dry, which affects the user's comfort, which effectively improves the user's experience
  • the ventilation passage is located inside the casing by rotating at least one cylindrical revolving door Or each of the intermediate air outlets and/or each side air outlet is closed or opened by connecting the inside and the outside of the housing, so that the wind wheel works when the cylindrical rotating door rotates to close each of the intermediate air outlets and/or each side air outlet.
  • the wind is blown by the windless wind to blow the wind to the user to improve the comfort of the user.
  • the air conditioner can be opened when the cylindrical door revolving door rotates to open each of the middle air outlets and/or each side air outlet.
  • the realization of the integrated wind, that is, the air output is ensured by the windless air outlet, and the air blown through the ventilation passage of the cylindrical revolving door and the wide-ranging wind quickly exchange heat with the air of the external environment can quickly reach Heating or cooling comfort enhances the user experience.
  • the cylindrical revolving door when the detecting device of the air conditioner detects the windless air blowing command or stops the air blowing command, the cylindrical revolving door does not rotate, and the appearance of the air conditioner does not change, so the user cannot recognize the air conditioner from the outside with the eye.
  • the specific execution is the windless wind command or the stop air command, but only when the wind wheel working inside the air conditioner housing and the wind guide assembly rotate to achieve a specific windless wind command to ensure that the soft wind blows to the user, To improve the satisfaction of the user's use; similarly, when the detecting device of the air conditioner detects the conventional air blowing command or the integrated air blowing command, the two cylindrical rotating doors are rotated so that the ventilation passage communicates with the inside and outside of the casing to open each of the intermediate outlets.
  • the tuyere so the user can not use the eye to identify the air conditioner from the outside is the conventional air blowing command or the integrated air blowing command, but the air guiding component inside the air conditioner housing rotates to realize the air blowing command of different functions to meet the user's different requirements. Demand, improve user satisfaction.
  • a computer device 200 including a memory 202, a processor 204, and a computer program stored on the memory 202 and executable on the processor 204.
  • the processor 204 is configured to perform the steps of any one of the air conduction control methods of the third aspect embodiment or the fourth aspect embodiment.
  • the computer device 200 provided by the embodiment of the seventh aspect of the present invention includes a memory 202, a processor 204, and a computer program stored on the memory 202 and operable on the processor 204.
  • the processor 204 is configured to perform the implementation of the third aspect. The steps of any one of the air guiding control methods of the embodiment or the fourth aspect.
  • the processor 204 of the computer device 200 provided by the embodiment of the seventh aspect of the present invention is capable of performing the air guiding control of the third aspect embodiment or the fourth aspect embodiment The method of any one of the methods, and therefore, has all the beneficial technical effects of the air guiding control method described in the third embodiment or the fourth aspect, and details are not described herein again.
  • a computer readable storage medium having stored thereon a computer program, wherein the third aspect embodiment or the fourth aspect embodiment is implemented when the computer program is executed by the processor The steps of any of the methods of controlling the wind.
  • the computer readable storage medium provided by the embodiment of the eighth aspect of the present invention has a computer program stored thereon, and when the computer program is executed by the processor, the air guiding control method of the third aspect embodiment or the fourth aspect embodiment is implemented. The steps of any method.
  • the computer program of the computer readable storage medium provided by the embodiment of the eighth aspect of the present invention is executed by the processor to perform the steps of any of the methods of the air guiding control method of the third aspect embodiment or the fourth aspect embodiment, All the beneficial technical effects of the air guiding control method described in the third embodiment or the fourth embodiment are not described herein.
  • the terms “installation”, “connected”, “connected”, “fixed” and the like shall be understood broadly, and may be either a fixed connection or a detachable connection, unless explicitly stated and defined otherwise. Or integrated; can be directly connected, or indirectly connected through an intermediate medium, which can be the internal communication of two elements or the interaction of two elements.
  • an intermediate medium which can be the internal communication of two elements or the interaction of two elements.
  • the first feature "on” or “under” the second feature may include direct contact of the first and second features, and may also include first and second features, unless otherwise specifically defined and defined. It is not in direct contact but through additional features between them.
  • the first feature "above”, “above” and “above” the second feature includes the first feature directly above and above the second feature, or merely indicating that the first feature level is higher than the second feature.
  • the first feature “below”, “below” and “below” the second feature includes the first feature directly below and below the second feature, or merely the first feature level being less than the second feature.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air-Flow Control Members (AREA)

Abstract

一种导风装置(10),包括:风道组件(12),设置在壳体(20)内部,两个风轮(30)安装在风道组件(12)内部;风门组件(14),安装在壳体(20)上,包括覆盖中间出风口(202)和两个侧面出风口(204)的至少一个无风感出风板(142)、至少一个滑动门(1440)或至少一个圆柱旋转门(1444);至少一个无风感出风板(142)设置有多个通孔(1422)。还公开一种导风控制方法,一种空调器,一种计算机处理设备和一种计算机可读存储介质。

Description

导风装置、导风控制方法和空调器
本申请要求于2017年03月30日提交中国专利局、申请号为201710200672.0、发明名称为“导风装置、导风控制方法和空调器”的中国专利申请的优先权,以及于2017年03月30日提交中国专利局、申请号为201710204678.5、发明名称为“导风装置、导风控制方法和空调器”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及空调器技术领域,具体而言,涉及一种导风装置、导风控制方法、空调器、计算机设备和计算机可读存储介质。
背景技术
相关技术中的空调器通常通过出风口出风实现制冷或制热,但是由于风经出风口直接吹向人体,使得在制冷模式下较硬的冷风直接吹向用户使用户瞬间感到过冷,在制热模式下较干的热风直接吹向用户使用户快速感到过热,影响用户使用的舒适度,使用户的体验不佳,且不利于用户的身体健康。
发明内容
为了解决上述技术问题至少之一,本发明的第一方面的实施例提出了一种导风装置。
本发明的第二方面实施例,还提出了一种导风装置。
本发明的第三方面实施例,还提出了一种导风控制方法。
本发明的第四方面实施例,还提出了一种导风控制方法。
本发明的第五方面实施例,还提出了一种空调器。
本发明的第六方面实施例,还提出了一种空调器。
本发明的第七方面实施例,还提出了一种计算机设备。
本发明的第八方面实施例,还提出了一种计算机可读存储介质。
有鉴于此,根据本发明的第一方面的实施例,本发明提出了一种导风装置,用于空调器,空调器包括壳体和两个风轮,壳体的外周壁上设置有位于中间的中间出风口和位于中间出风口两侧的两个侧面出风口,两个风轮工作时反方向转动以实现两个出风区,导风装置包括:风道组件,设置在壳体内部,两个风轮安装在风道组件内部;风门组件,安装在壳体上,包括覆盖中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个滑动门;其中,至少一个无风感出风板设置有多个通孔,至少一个滑动门沿壳体的周向滑动至不同位置能够将中间出风口和/或每个侧面出风口关闭或打开。
本发明提供的导风装置,用于空调器,空调器包括设置有中间出风口和两个侧面出风口的壳体和两个风轮,两个风轮工作时反方向转动以实现两个出风区,导风装置包括风道组件和风门组件,风道组件设置在壳体内部,两个风轮安装在风道组件内部,风门组件安装在壳体上,包括覆盖中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个滑动门,通过至少一个无风感出风板设置有多个通孔,使得空调器在出风状态时两个风轮工作产生的风经无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮工作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,使得在滑动门关闭中间出风口和/或每个侧面出风口时风轮工作产生的风经无风感出风板吹向用户实现无风感出风,提高用户使用的舒适度,在滑动门打开中间出风口和/或每个侧面出风口时空调器能够实现综合出风,即通过无风感出风板出风保证出风柔和,同时通过出风口直接出风使空调器快速与外部环境的空气进行热交换达到制热或制冷的舒适度,进一步提升用户的使用体验,提高用户使用的满意度。
进一步地,壳体为圆柱壳体,壳体的外周壁上设置有中间出风口和两个侧面出风口,且风门组件包括覆盖中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个滑动门,多个出风口与多个滑动门相配合能够满足用户对空调器多维出风方式的追求,同时至少一个无风感出风板和至少一个滑动门相配合能够实现无风感出风、无风感出风与常规出风相结合的综合出风方式,进一步提高用户使用的舒适度,提升用户的使用体验,且综合出风的方式,能够保证如杨柳微风般柔和的风吹向用户,同时保证室内温度均匀,避免较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大产品的使用范围,提高产品的市场竞争力,提升产品的卖点。进一步地,可以根据用户的需求设置不同数量的无风感出风板和不同数量的滑动门,且将不同数量的无风感出风板和不同数量的滑动门设置在中间出风口和每个侧面出风口处,以满足用户对空调器多种出风方式和多种出风功能的需求,扩大空调器的功能,提高用户使用的满意度。
进一步地,两个风轮工作时反方向转动以实现两个出风区,增加了出风范围,能够满足一个中间出风口和两个侧面出风口出风的需求,保证充足的出风量和快速出风的效果,进而使空调器能够快速达到制热或制冷的舒适性,提升用户的使用体验,提高用户使用的满意度。
另外,本发明提供的上述实施例中的导风装置还可以具有如下附加技术特征:
在上述技术方案中,优选地,至少一个无风感出风板的形状与中间出风口或每个侧面出风口相适配,并位于中间出风口或每个侧面出风口处。
在该技术方案中,至少一个无风感出风板的形状与中间出风口或每个侧面出风口相适配,通过将至少一个无风感出风板安装在壳体上并位于中间出风口或每个侧面出风口处,使得无风感出风板用较小的面积覆盖了中间出风口和/或每个侧面出风口,保证了空调器能够实现无风感出风,提高用户使用的舒适度,同时节约了制造成本,避免了浪费。进一步地,由于无风感出风板位于中间出风口或每个侧面出风口处,可以将无风感出风板的多个通孔设置为不同的形状和不同的大小,使无风感出风板朝向壳体外部的一侧美观, 进而保证空调器外观的美观,提高用户使用的满意度。
在上述任一技术方案中,优选地,至少一个无风感出风板位于中间出风口或每个侧面出风口的外侧,并连通壳体的上端和下端。
在该技术方案中,通过将至少一个无风感出风板位于中间出风口或每个侧面出风口的外侧,并连通壳体的上端和下端,使得无风感出风板覆盖中间出风口或每个侧面出风口并连通壳体的上端和下端,保证空调器能够实现无风感出风保证用户使用的舒适性,同时保证了中间出风口或每个侧面出风口所在的壳体的上方和下方均被无风感出风板覆盖,进而保证了中间出风口或每个侧面出风口所在的壳体上方和下方的一致性,避免中间出风口或每个侧面出风口处设置有无风感出风板,而中间出风口或每个侧面出风口的上方和下方仍是壳体而影响空调器外观的美观,有效地保证了空调器外观的美观,提高用户使用的满意度。
进一步地,可以将中间出风口或侧面出风口所在的壳体的一侧均设置为无风感出风板,有效地保证了中间出风口或侧面出风口所在的壳体一侧外观的一致性,进一步提高了空调器外观的美观,提高用户使用的满意度。而出风板连通中间出风口或侧面出风口上下两端的壳体,或将中间出风口或侧面出风口所在的壳体的一侧均设置为无风感出风板,其真正的无风感出风范围与中间出风口或侧面出风口相适配。
在上述任一技术方案中,优选地,至少一个无风感出风板为一个,一个无风感出风板覆盖中间出风口;至少一个滑动门为两个,两个滑动门沿壳体的周向滑动至不同位置将两个侧面出风口关闭或打开。
在该技术方案中,至少一个无风感出风板为一个,一个无风感出风板覆盖中间出风口,能够实现中间出风口无风感出风,保证柔和出风提高用户使用的舒适度,至少一个滑动门为两个,两个滑动门沿壳体的周向滑动至不同位置将两个侧面出风口关闭或打开,能够实现侧面出风口停止出风或常规出风,保证快速的制冷或制热,维持室内温度均匀不变,通过覆盖中间出风口的无风感出风板和位于两个侧面出风口处的两个滑动门相互配合,能够实现空调器的无风感出风和综合出风,满足用户对空调器多种出风方式和多种出风功能的追求,提高用户使用的舒适度,提升用户的使用体验。
进一步地,无风感出风板位于两个滑动门的中间,保证了两个滑动门对称的设置在一个无风感出风板的两侧,进而保证了空调器外观的美观,提高用户使用的满意度。
在上述任一技术方案中,优选地,两个滑动门位于两个侧面出风口的外侧,两个滑动门沿壳体的周向滑动至相连接关闭中间出风口和两个侧面出风口。
在该技术方案中,两个滑动门位于两个侧面出风口的外侧,通过两个滑动门沿壳体的周向滑动至相连接关闭中间出风口和两个侧面出风口,使得在空调器停止出风时,两个滑动门滑动至相连接关闭所有出风口,避免空调器在停止出风状态下覆盖中间出风口的无风感出风板暴露在壳体外部影响空调器外观的美观,通过两个滑动门同时关闭中间出风口和两个侧面出风口有效地保证了空调器外观的美观,同时避免了通过无风感出风板向壳体内部落入灰尘,有效地节约的成本,保证了壳体内部的清洁,提高产品质量,提高用户使用的满意度。
进一步地,滑动门上设置有齿条,壳体内部设置有带有齿轮的驱动装置,齿轮通过设置在侧面出风口一侧的壳体上的安装槽伸出壳体外部,通过齿轮和齿条配合连接使滑动门与壳体滑动连接,进而在驱动装置的驱动下齿轮转动带动齿条运动,进而带动滑动门沿壳体的周向移动至不同位置关闭或打开侧面出风口,连接方式简单,齿轮和齿条传动准确,有效地提高了空调器控制的准确性和灵活性,提高空调器的质量,提高用户使用的满意度。进一步地,滑动门可以通满足要求的其他方式与壳体滑动连接实现关闭或打开侧面出风口。
在上述任一技术方案中,优选地,还包括:两个百叶组件,设置在壳体内部,分别与每个侧面出风口相对设置。
在该技术方案中,通过将两个百叶组件设置在壳体的内部,分别与每个侧面出风口相对设置,可以通过每个百叶组件转动至不同位置控制每个侧面出风口的出风方向,使得同一侧面出风口能够吹出不同方向的风,实现不同的出风方式,满足用户对空调器多维出风方式的追求,提高用户使用的满意度。
在上述任一技术方案中,优选地,还包括:导风组件,转动地设置在风道组件内部,导风组件包括分别位于中间出风口和每个侧面出风口之间的两个导风件,每个导风件转动分别与风道组件的一侧相抵接能够将两个出风区与中间出风口相连通,两个导风件转动与风道组件的中间部分相抵接能够将两个出风区分别与两个侧面出风口相连通。
在该技术方案中,导风装置还包括转动设置在风道组件内部的导风组件,导风组件包括分别位于中间出风口和每个侧面出风口之间的两个导风件,通过两个导风件转动分别与风道组件的两侧或中间部分相抵接将两个出风区与中间出风口或两个侧面出风口相连通,进一步地,两个导风件均位于风道组件的一侧和中间部分之间将两个出风区与三个出风口相连通,进而通过两个导风件转动并配合两个滑动门打开或关闭两个侧面出风口,能够实现空调器的中间出风口的无风感出风、两个侧面出风口的常规出风以及三个出风口同时出风的综合出风,满足用户对空调器多维出风方式和多种出风功能的追求,提高用户使用的满意度,同时保证风轮工作产生的风全部通过正在进行出风动作的出风口吹出至壳体外部,减小了出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本,同时保证了充足的出风量,能够快速达到空调器制热或制冷的舒适度,提升用户的使用体验。
一方面,通过每个导风件转动分别与风道组件的一侧相抵接将两个出风区与中间出风口相连通,同时将两个出风区与两个侧面出风口阻断,在两个滑动门沿壳体的周向滑动至关闭两个侧面出风口时,两个风轮工作产生的两个出风区的风全部通过中间出风口的无风感出风板吹出至外部环境,保证了吹出至用户身上的风柔和、缓慢,提高用户使用的舒适度,同时保证风轮工作产生的风全部通过正在进行出风动作的中间出风口吹出至外部环境,减小了空调器出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本。
一方面,通过两个导风件转动与风道组件的中间部分相抵接将两个出风区分别与两个侧面出风口相连通,同时将两个出风区与中间出风口阻断,在两个滑动门沿壳体的周向滑动至打开两个侧面出风口时,两个风轮工作产生的两个出风区的风全部通过两个侧面出风口吹出至外部环境,实现了侧面出 风口常规出风,同时降低了风轮工作产生的风在壳体内部的风量损失,提高了风轮的工作效率,并保证了从两个侧面出风口吹出至外部环境的风量充足,使得充足的风与外部环境进行热交换能够快速达到制热或制冷的舒适度,并维持室内温度不变,提升用户的使用体验,提高用户使用的满意度。
一方面,通过两个导风件转动分别位于风道组件的一侧和中间部分之间,使得两个风轮工作产生的两个出风区分别与中间出风口和两个侧面出风口同时连通,在两个滑动门沿壳体的周向滑动至打开两个侧面出风口时,两个风轮工作产生的风经中间出风口和两个侧面出风口同时吹出至外部环境,实现了空调器的综合出风,使得经中间出风口无风感出风板吹出的柔和的风吹向用户,提高用户使用的舒适度,同时经两个侧面出风口吹出的风快速实现制冷或制热,维持室内温度不变,提升用户的使用体验,而由于两个导风件位于两个出风区内部,通过两个导风件将两个出风区进行划分能够保证两个侧面出风口和中间出风口的出风量充足,避免风轮工作产生的风未经分流随意经侧面出风口和中间出风口吹出至外部环境存在部分出风口出风量不足的问题,有效地保证了良好的出风效果,提升用户的使用体验。
进一步地,通过两个导风件将风轮工作产生的风分流使得在保证经中间出风口的无风感出风板吹出的风量充足后,大部分的风经两个侧面出风口吹出至外部环境充分与外部环境的空气进行热交换,以达到侧面出风口快速实现制冷或制热,达到用户对空调器制热或制冷舒适度的需求,而中间出风口柔和的风吹向用户能够提高用户的舒适感,进而提升用户的使用体验,提高用户使用的满意度。
在上述任一技术方案中,优选地,风道组件的中间部分靠近两个风轮的一侧设置有导向斜面,两个导风件转动与风道组件的中间部分相抵接时与导向斜面相连接。
在该技术方案中,风道组件的中间部分靠近两个风轮的一侧设置有导向斜面,通过两个导风件转动与风道组件的中间部分相抵接时与导向斜面相连接,有利于风轮工作产生的风在出风区内沿导向斜面和导风件经侧面出风口顺畅、快速的吹出至壳体外部,保证了充足的出风量和良好的出风效果,进而能够满足用户对空调器快速达到制冷或制热舒适度的需求,提高用户使用 的满意度。
根据本发明的第二方面的实施例,本发明提出了一种导风装置,用于空调器,空调器包括壳体和两个风轮,壳体上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口,两个风轮工作时反方向转动以实现两个出风区,导风装置包括:风道组件,设置在壳体内部,两个风轮安装在风道组件内部;风门组件,安装在壳体上,包括覆盖两个中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个圆柱旋转门;其中,至少一个无风感出风板设置有多个通孔,至少一个圆柱旋转门设置有通风通道,圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部能够将每个中间出风口和/或每个侧面出风口关闭或打开。
本发明提供的导风装置,用于空调器,空调器包括壳体、两个风轮和导风装置,壳体设置有两个中间出风口和两个侧面出风口,两个风轮工作时反方向转动以实现两个出风区,导风装置包括风道组件和风门组件,风道组件设置在壳体内部,两个风轮安装在风道组件内部,风门组件安装在壳体上,包括覆盖两个中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个圆柱旋转门,通过无风感出风板设置有多个通孔,使得空调器在出风状态时两个风轮工作产生的风经覆盖每个中间出风口和/或每个侧面出风口的无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮工作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,使得在圆柱旋转门旋转关闭每个中间出风口和/或每个侧面出风口时风轮工作产生的风经无风感出风板吹向用户实现无风感出风,提高用户使用的舒适度,在圆柱门旋转门旋转打开每个中间出风口和/或每个侧面出风口时空调器能够实现综合出风,即通过无风感出风板出风保证出风柔和,同时通过圆柱旋转门的通风通道吹出的风量充足、范围较广的风快速与外部环境的空气进行热交换能够快速达到制热或制冷的舒适度,提升用户的使用体验。
进一步地,通过圆柱旋转门旋转以通风通道的不同位置连通壳体内部和 外部能够改变出风口的出风方向,满足用户对空调器多维出风方式的追求,同时避免了通过百叶组件进行导风使出风范围受限,有效地扩大了出风范围,保证了充足的出风量和较广的出风范围,进而能够实现快速制热或制冷,提升用户的使用体验。
进一步地,壳体为圆柱壳体,壳体的外周壁上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口,且风门组件包括覆盖两个中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个圆柱旋转门,多个出风口与多个圆柱旋转门相配合能够满足用户对空调器多维出风方式的追求,同时至少一个无风感出风板和至少一个圆柱旋转门相配合能够实现无风感出风、无风感出风与常规出风相结合的综合出风方式,进一步提高用户使用的舒适度,提升用户的使用体验,且综合出风的方式,能够保证如杨柳微风般柔和的风吹向用户,同时保证室内温度均匀,避免较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大产品的使用范围,提高产品的市场竞争力,提升产品的卖点。进一步地,可以根据用户的需求设置不同数量的无风感出风板和不同数量的圆柱旋转门,且将不同数量的无风感出风板和不同数量的圆柱旋转门设置在每个中间出风口和每个侧面出风口处,以满足用户对空调器多种出风方式和多种出风功能的需求,扩大空调器的功能,提高用户使用的满意度。
在上述技术方案中,优选地,至少一个无风感出风板的形状与每个中间出风口或每个侧面出风口相适配,并位于每个中间出风口或每个侧面出风口处。
在该技术方案中,至少一个无风感出风板的形状与每个中间出风口或每个侧面出风口相适配,通过将至少一个无风感出风板安装在壳体上并位于每个中间出风口或每个侧面出风口处,使得无风感出风板用较小的面积覆盖了每个中间出风口或每个侧面出风口,保证了空调器能够实现无风感出风,提高用户使用的舒适度,同时节约了制造成本,避免了浪费。进一步地,由于无风感出风板位于每个中间出风口或每个侧面出风口处,可以将无风感出风板的多个通孔设置为不同的形状和不同的大小,使无风感出风板朝向壳体外 部的一侧美观,进而保证空调器外观的美观,提高用户使用的满意度。
在上述任一技术方案中,优选地,至少一个无风感出风板位于每个中间出风口或每个侧面出风口的外侧,并连通壳体的上端和下端。
在该技术方案中,通过将至少一个无风感出风板位于每个中间出风口或每个侧面出风口的外侧,并连通壳体的上端和下端,使得无风感出风板覆盖每个中间出风口或每个侧面出风口并连通壳体的上端和下端,保证空调器能够实现无风感出风保证用户使用的舒适性,同时保证了每个中间出风口或每个侧面出风口所在的壳体的上方和下方均被无风感出风板覆盖,进而保证了每个中间出风口或每个侧面出风口所在的壳体上方和下方的一致性,避免每个中间出风口或每个侧面出风口处设置有无风感出风板,而每个中间出风口或每个侧面出风口的上方和下方仍是壳体而影响空调器外观的美观,有效地保证了空调器外观的美观,提高用户使用的满意度。
进一步地,可以将中间出风口或侧面出风口所在的壳体的一侧均设置为无风感出风板,有效地保证了中间出风口或侧面出风口所在的壳体一侧外观的一致性,进一步提高了空调器外观的美观,提高用户使用的满意度。而出风板连通中间出风口或侧面出风口上下两端的壳体,或将中间出风口或侧面出风口所在的壳体的一侧均设置为无风感出风板,其真正的无风感出风范围与中间出风口或侧面出风口相适配。
在上述任一技术方案中,优选地,通风通道为弧形结构。
在该技术方案中,通风通道为弧形结构,通过圆柱旋转门旋转使弧形结构凹向或凸向圆柱旋转门所在的出风口的不同侧,能够改变出风口的出风方向,满足用户对空调器多维出风方式的需求,提升用户的使用体验,且弧形结构的通风通道连通壳体内部和外部打开中间出风口或侧面出风口时,有利于控制风轮工作产生的风沿弧形结构的通风通道从中间出风口或侧面出风口的两侧面吹出至外部环境,进一步扩大了出风范围,有利于空调器快速、均匀制热或制冷,维持室内温度不变,满足用户对空调器快速实现制热或制冷舒适度的需求,提高用户使用的满意度。
在上述任一技术方案中,优选地,至少一个无风感出风板为两个,两个无风感出风板覆盖两个侧面出风口;至少一个圆柱旋转门为两个,两个圆柱 旋转门位于两个中间出风口处。
在该技术方案中,至少一个无风感出风板为两个,两个无风感出风板覆盖两个侧面出风口,能够实现空调器的两个侧面出风口无风感出风,保证柔和出风提高用户使用的舒适度,且扩大了无风感出风的范围,提高用户使用的满意度,至少一个圆柱旋转门为两个,两个圆柱旋转门位于两个中间出风口处,通过两个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部能够实现两个中间出风口停止出风或常规吹风,进而使得常规出风时出风集中,有利于空调器快速制冷或制热,维持室内温度均匀不变,通过覆盖两个侧面出风口的两个无风感出风板和位于两个中间出风口处的两个圆柱旋转门相互配合,能够实现空调器的无风感出风和综合出风,满足用户对空调器多种出风方式和多种出风功能的追求,提高用户使用的舒适度,提升用户的使用体验。
进一步地,两个侧面出风口处覆盖两个无风感出风板,扩大了无风感出风的范围,使无风感出风的范围分散,有利于用户分散地享受无风感出风的舒适,避免只有中间的出风口实现无风感出风用户需要集中在一起享受无风感出风而拥挤的问题,有效地提升了用户的使用体验,而位于中间的两个中间出风口处设置有两个圆柱旋转门,使得通过圆柱旋转门的通风通道连通壳体内部和外部时两个中间出风口实现常规出风,能够快速实现制热或制热,维持室内的温度不变,并保证两个侧面出风口的无风感出风范围处的温度均匀,进一步提高用户使用的满意度。而两个无风感出风板对称的设置在位于中间的两个圆柱旋转门的两侧,有效地保证了空调器外观的美观,提高用户使用的满意度。
在上述任一技术方案中,优选地,两个圆柱旋转门打开两个中间出风口时,两个圆柱旋转门的两个弧形结构背向设置。
在该技术方案中,两个圆柱旋转门打开两个中间出风口时,两个圆柱旋转门的两个弧形结构背向设置,能够使从两个中间出风口吹出的风交汇成一个出风区,且弧形结构背向设置减小了从两个弧形结构吹出至壳体外部风的交汇范围,增大了从两个弧形结构吹出至壳体外部风的出风范围,进而使从壳体内部吹出的风在较大的范围内与外部的空气进行热量交换,使空调器能 够快速、均匀、较大范围地达到制热或制冷的舒适性,维持室内温度不变,提升用户的使用体验,提高用户使用的满意。
进一步地,也可以通过旋转两个圆柱旋转门使风轮工作产生的风经两个弧形结构的通风通道吹出至外部环境后不交汇,进一步增大了两个中间出风口的出风范围,提高空调器达到制热或制冷舒适性的效率,提高用户使用的满意度。
在上述任一技术方案中,优选地,还包括:导风组件,转动地设置在风道组件内部,导风组件包括分别位于每个中间出风口和每个侧面出风口之间的两个导风件,每个导风件转动分别与风道组件的一侧相抵接能够将两个出风区分别与两个中间出风口相连通,两个导风件转动与风道组件的中间部分相抵接能够将两个出风区分别与两个侧面出风口相连通。
在该技术方案中,导风装置还包括转动设置在风道组件内部的导风组件,导风组件包括分别位于每个中间出风口和每个侧面出风口之间的两个导风件,通过两个导风件转动分别与风道组件的两侧或中间部分相抵接将两个出风区与两个中间出风口或两个侧面出风口相连通,进一步地,两个导风件均位于风道组件的一侧和中间部分之间将两个出风区与四个出风口相连通,进而通过两个导风件转动并配合两个圆柱旋转门打开或关闭两个侧面出风口,能够实现空调器的两个侧面出风口无风感出风、两个中间出风口的常规出风以及四个出风口同时出风的综合出风,满足用户对空调器多维出风方式和多种出风功能的追求,提高用户使用的满意度,同时保证风轮工作产生的风全部通过正在进行出风动作的出风口吹出至壳体外部,减小了出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本,同时保证了充足的出风量,能够快速达到空调器制热或制冷的舒适度,提升用户的使用体验。
一方面,通过两个导风件转动与风道组件的中间部分相抵接将两个出风区分别与两个侧面出风口相连通,同时将两个出风区与两个中间出风口阻断,使得两个风轮工作产生的两个出风区的风全部通过两个侧面出风口吹出至外部环境,实现了两个侧面出风口无风感出风,保证了吹出至用户身上的风柔和,提高用户使用的舒适度,同时保证风轮工作产生的风全部通过正在进 行出风动作的两个侧面出风口吹出至外部环境,减小了空调器出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本。进一步地,可以同时将两个圆柱旋转门旋转使通风通道位于壳体内部关闭两个中间出风口,进一步保证风轮工作产生的风全部经无风感出风板吹出至外部环境,提高出风效率,且避免了中间出风口不出风圆柱旋转门旋转使通风通道连通壳体内部和外部影响空调器外观的美观,有效地提高了用户使用的满意度。
一方面,通过每个导风件转动分别与风道组件的一侧相抵接将两个出风区与两个中间出风口相连通,同时将两个出风区与两个侧面出风口阻断,在两个圆柱旋转门旋转使通风通道连通壳体内部和外部打开两个中间出风口时,两个风轮工作产生的两个出风区的风全部通过通风通道吹出至外部环境,实现了两个中间出风口常规出风,同时降低了风轮工作产生的风在壳体内部的风量损失,提高了风轮的工作效率,并保证了从两个中间出风口吹出至外部环境的风量充足,扩大了常规出风的范围,保证常规出风集中,使得充足、集中的风与外部环境进行热交换能够快速达到制热或制冷的舒适度,并维持室内温度不变,提升用户的使用体验,提高用户使用的满意度。
一方面,通过两个导风件转动分别位于风道组件的一侧和中间部分之间,使得两个风轮工作产生的两个出风区分别与两个中间出风口和两个侧面出风口同时连通,在两个圆柱旋转门旋转使通风通道连通壳体内部和外部打开两个中间出风口时,两个风轮工作产生的风经两个中间出风口和两个侧面出风口同时吹出至外部环境,实现了空调器的综合出风,使得经两个侧面出风口无风感出风板吹出的柔和的风吹向用户,提高用户使用的舒适度,同时经两个中间出风口吹出的风快速实现制冷或制热,维持室内温度不变,提升用户的使用体验,而由于两个导风件位于两个出风区内部,通过两个导风件将两个出风区进行划分能够保证两个侧面出风口和两个中间出风口的出风量充足,避免风轮工作产生的风未经分流随意经侧面出风口和中间出风口吹出至外部环境存在部分出风口出风量不足的问题,有效地保证了良好的出风效果,提升用户的使用体验。
进一步地,通过两个导风件将风轮工作产生的风分流使得在保证经两个侧面出风口的无风感出风板吹出的风量充足后,大部分的风经两个中间出风 口处的圆柱旋转门的通风通道吹出至外部环境充分与外部环境的空气进行热交换,以使两个中间出风口吹出的风快速制冷或制热,达到用户对空调器制热或制冷舒适度的需求,而两个侧面出风口柔和的风吹向用户能够提高用户的舒适感,进而提升用户的使用体验,提高用户使用的满意度。
在上述任一技术方案中,优选地,风道组件的中间部分靠近每个风轮的一侧设置有导向斜面,每个导风件转动与风道组件的中间部分相抵接时与导向斜面相连接。
在该技术方案中,风道组件的中间部分靠近两个风轮的一侧设置有导向斜面,通过两个导风件转动与风道组件的中间部分相抵接时与导向斜面相连接,有利于风轮工作产生的风在出风区内沿导向斜面和导风件经侧面出风口顺畅、快速的吹出至壳体外部,保证了充足的出风量和良好的出风效果,进而能够满足用户对空调器无风感出风舒适度的需求,提高用户使用的满意度。
本发明第三方面的实施例提供了一种导风控制方法,用于空调器,空调器包括壳体、两个风轮以及如上述第一方面实施例中任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的中间出风口和位于中间出风口两侧的两个侧面出风口,两个风轮工作时反方向转动以实现两个出风区,导风控制方法包括:检测出风模式指令;根据出风模式指令,控制导风装置的至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态;其中,壳体上安装有覆盖中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个滑动门。
本发明第三方面的实施例提供的用于空调器的导风控制方法,空调器包括壳体、两个风轮以及上述第一方面实施例中任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的出风口和位于中间出风口两侧的两个侧面出风口,两个风轮工作时反方向转动以实现两个出风区,导风控制方法为:通过检测出风模式指令,根据出风模式指令,控制导风装置的至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态,由于壳体上安装有覆盖中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个滑动门,使得两个风轮工作产生的风经无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳 体外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮工作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,使得在滑动门关闭中间出风口和/或每个侧面出风口时风轮工作产生的风经无风感出风板吹向用户实现无风感出风,提高用户使用的舒适度,在滑动门打开中间出风口和/或每个侧面出风口时空调器能够实现综合出风,即风轮工作产生的风通过无风感出风板出风保证出风柔和,同时通过出风口直接出风使空调器快速与外部环境的空气进行热交换达到制热或制冷的舒适度,进一步提升用户的使用体验,提高用户使用的满意度。
进一步地,壳体为圆柱壳体,壳体的外周壁上设置有中间出风口和两个侧面出风口,且风门组件包括覆盖中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个滑动门,多个出风口与多个滑动门相配合能够满足用户对空调器多维出风方式的追求,同时至少一个无风感出风板和至少一个滑动门相配合能够实现无风感出风、无风感出风与常规出风相结合的综合出风方式,进一步提高用户使用的舒适度,提升用户的使用体验,且综合出风的方式,能够保证如杨柳微风般柔和的风吹向用户,同时保证室内温度均匀,避免较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大产品的使用范围,提高产品的市场竞争力,提升产品的卖点。进一步地,可以根据用户的需求设置不同数量的无风感出风板和不同数量的滑动门,且可以将不同数量的无风感出风板和不同数量的滑动门设置在中间出风口和每个侧面出风口处,以满足用户对空调器多种出风方式和多种出风功能的需求,扩大空调器的功能,提高用户使用的满意度。
在上述任一技术方案中,优选地,至少一个无风感出风板为一个,一个无风感出风板覆盖中间出风口;至少一个滑动门为两个,两个滑动门沿壳体的周向滑动至不同位置将两个侧面出风口关闭或打开。
在该技术方案中,至少一个无风感出风板为一个,一个无风感出风板覆盖中间出风口,能够实现中间出风口无风感出风,保证柔和出风提高用户使 用的舒适度,至少一个滑动门为两个,两个滑动门沿壳体的周向滑动至不同位置将两个侧面出风口关闭或打开,能够实现侧面出风口停止出风或常规出风,保证快速的制冷或制热,维持室内温度均匀不变,通过覆盖中间出风口的无风感出风板和位于两个侧面出风口处的两个滑动门相互配合,能够实现空调器的无风感出风和综合出风,满足用户对空调器多种出风方式和多种出风功能的追求,提高用户使用的舒适度,提升用户的使用体验。
进一步地,无风感出风板位于两个滑动门的中间,保证了滑动门对称的设置在一个无风感出风板的两侧,进而保证了空调器外观的美观,提高用户使用的满意度。
在上述任一技术方案中,优选地,还包括:根据出风模式指令,控制导风装置的两个导风件转动至不同位置。
在该技术方案中,通过根据出风模式指令,控制导风装置的两个导风件转动至不同位置,使得两个导风件转动分别与风道组件的两侧或中间部分相抵接将两个出风区与中间出风口或两个侧面出风口相连通,两个导风件均位于风道组件的一侧和中间部分之间将两个出风区与三个出风口相连通,进而通过两个导风件转动并配合两个滑动门打开或关闭两个侧面出风口,能够实现空调器的中间出风口的无风感出风、两个侧面出风口的常规出风以及三个出风口同时出风的综合出风,满足用户对空调器多维出风方式和多种出风功能的追求,提高用户使用的满意度,同时保证风轮工作产生的风全部通过正在进行出风动作的出风口吹出至壳体外部,减小了出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本,同时保证了充足的出风量,能够快速达到空调器制热或制冷的舒适度,提升用户的使用体验。
在上述任一技术方案中,优选地,出风模式指令为无风感出风指令,根据出风模式指令,控制导风装置的至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态的具体步骤包括:根据无风感出风指令,控制每个滑动门沿壳体的周向滑动至关闭每个侧面出风口,控制两个风轮开始工作。
在该技术方案中,出风模式指令为无风感出风指令,通过根据无风感出风指令,控制每个滑动门沿壳体的周向滑动至关闭每个侧面出风口,控制两 个风轮开始工作,使得两个风轮工作产生的风经覆盖中间出风口的无风感出风板吹出至外部环境,由于风轮工作产生的风经无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,避免了两个风轮工作产生的风经中间出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的满意度,较柔和的风吹向用户有效地提升了用户使用的舒适度,提升用户的使用体验。
在上述任一技术方案中,优选地,还包括:根据无风感出风指令,控制导风装置的每个导风件转动分别与风道组件的一侧相抵接将两个出风区与中间出风口相连通。
在该技术方案中,通过根据无风感出风指令,控制导风装置的每个导风件转动分别与风道组件的一侧相抵接将两个出风区与中间出风口相连通,同时将两个出风区与两个侧面出风口阻断,使得在空调器执行无风感出风指令时,两个风轮工作产生的两个出风区的风全部通过中间出风口的无风感出风板吹出至外部环境,保证了吹出至用户身上的风柔和、缓慢,提高用户使用的舒适度,同时保证风轮工作产生的风全部通过正在进行出风动作的中间出风口吹出至外部环境,减小了空调器出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本。
在上述任一技术方案中,优选地,出风模式指令为常规出风指令,根据出风模式指令,控制导风装置的至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态,根据出风模式指令,控制导风装置的两个导风件转动至不同位置的具体步骤包括:根据常规出风指令,控制每个滑动门沿壳体的周向滑动打开每个侧面出风口,控制两个导风件转动与风道组件的中间部分相抵接将两个出风区分别与两个侧面出风口相连通,控制两个风轮开始工作。
在该技术方案中,出风模式指令为常规出风指令,通过根据常规出风指令,控制每个滑动门沿壳体的周向滑动打开每个侧面出风口,控制两个导风件转动与风道组件的中间部分相抵接将两个出风区分别与两个侧面出风口相连通,同时使两个出风区与中间出风口阻断,控制两个风轮开始工作,使得两个风轮工作产生的风经两个侧面出风口吹出至外部环境,实现了空调器的 两个侧面出风口常规出风,同时两个风轮工作产生的两个出风区的风全部通过两个侧面出风口吹出至外部环境,减小了空调器在出风过程中壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本,同时保证了侧面出风口充足的出风量,能够快速达到空调器制热或制冷的舒适度,维持室内温度不变,提升用户的使用体验。
在上述任一技术方案中,优选地,出风模式指令为综合出风指令,根据出风模式指令,根据出风模式指令,控制导风装置的至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态的具体步骤包括:根据综合出风指令,控制每个滑动门沿壳体的周向滑动打开每个侧面出风口,控制两个风轮开始工作。
在该技术方案中,出风模式指令为综合出风指令,根据综合出风指令,控制每个滑动门沿壳体的周向滑动打开每个侧面出风口,控制两个风轮开始工作,使得风轮工作产生的风经覆盖中间出风口的无风感出风板吹向用户实现空调器的无风感出风,同时经两个侧面出风口吹出至外部环境与外部环境的空气快速进行热交换实现制冷或制热,并维持室内温度不变,提升用户的使用体验,提高用户使用的满意度,同时避免了较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大了产品的使用范围,提高产品的市场竞争力,提升产品的卖点。
在上述任一技术方案中,优选地,还包括:根据综合出风指令,控制导风装置的每个导风件转动至风道组件的一侧和中间部分之间,将两个出风区与中间出风口、两个侧面出风口相连通。
在该技术方案中,通过根据综合出风指令,控制导风装置的每个导风件转动至风道组件的一侧和中间部分之间,将两个出风区与中间出风口、两个侧面出风口相连通,由于两个导风件位于两个出风区内部,通过两个导风件将两个出风区进行划分能够保证两个侧面出风口和中间出风口的出风量充足,避免风轮工作产生的风未经分流随意经侧面出风口和中间出风口吹出至外部环境存在部分出风口出风量不足的问题,有效地保证了良好的出风效果,提升用户的使用体验。进一步地,通过两个导风件将风轮工作产生的风分流使 得在保证经中间出风口的无风感出风板吹出的风量充足后,大部分的风经两个侧面出风口吹出至外部环境充分与外部环境的空气进行热交换,以达到侧面出风口快速实现制冷或制热,达到用户对空调器制热或制冷舒适度的需求,而中间出风口柔和的风吹向用户能够提高用户的舒适感,进而提升用户的使用体验,提高用户使用的满意度。
在上述任一技术方案中,优选地,出风模式指令为停止出风指令,根据出风模式指令,控制导风装置的至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态,根据出风模式指令,控制导风装置的两个导风件转动至不同位置的具体步骤包括:根据停止出风指令,控制两个风轮停止工作,控制两个导风件停止转动,控制两个滑动门沿壳体的周向滑动关闭两个侧面出风口。
在该技术方案中,出风模式指令为停止出风指令,通过根据停止出风指令,控制两个风轮停止工作停止产生风,控制两个导风件停止转动,避免了导风件在停止出风指令状态下一直转动浪费能源并产生噪音而影响用户的使用,提高了用户使用的满意度,同时控制两个滑动门沿壳体的周向滑动关闭两个侧面出风口,避免空调器为停止出风状态时,两个侧面出风口暴露在外影响空调器外观的美观且容易使壳体内部落入灰尘,有效地保证了空调器外观的美观且保证壳体内部的清洁,提高用户使用的满意度,提高产品的质量。
进一步地,空调器在停止出风指令状态时,导风装置的两个导风件可以转动至任一位置后停止,具体地,两个导风件可以转动至与风轮组件的两侧相抵接将两个风轮的两个出风区与中间出风口相连通并与两个侧面出风口阻断,进而使得空调器在执行无风感出风指令时直接控制风轮工作即可实现无风感出风,无需控制导风件转动,提高了空调器的控制速度,提高用户使用的满意度。
本发明第四方面的实施例提供了一种导风控制方法,用于空调器,空调器包括壳体、两个风轮以及上述第二方面实施例中任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口,两个风轮工作时反方向转动以实现两个出风区, 导风控制方法包括:检测出风模式指令;根据出风模式指令,控制导风装置的至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态;其中,壳体上安装有覆盖两个中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个圆柱旋转门。
本发明第四方面的实施例提供的用于空调器的导风控制方法,空调器包括壳体、两个风轮以及上述第二方面实施例中任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口,两个风轮工作时反方向转动以实现两个出风区,导风控制方法为:通过检测出风模式指令,根据出风模式指令,控制导风装置的至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态,由于壳体上安装有覆盖两个中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个圆柱旋转门,使得两个风轮工作产生的风经覆盖每个中间出风口和/或每个侧面出风口的无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮工作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,使得在圆柱旋转门旋转关闭每个中间出风口和/或每个侧面出风口时风轮工作产生的风经无风感出风板吹向用户实现无风感出风,提高用户使用的舒适度,在圆柱门旋转门旋转打开每个中间出风口和/或每个侧面出风口时空调器能够实现综合出风,即通过无风感出风板出风保证出风柔和,同时通过圆柱旋转门的通风通道吹出的风量充足、范围较广的风快速与外部环境的空气进行热交换能够快速达到制热或制冷的舒适度,提升用户的使用体验。
进一步地,通过圆柱旋转门旋转以通风通道的不同位置连通壳体内部和外部能够改变出风口的出风方向,满足用户对空调器多维出风方式的追求,同时避免了通过百叶组件进行导风使出风范围受限,有效地扩大了出风范围, 保证了充足的出风量和较广的出风范围,进而能够实现快速制热或制冷,提升用户的使用体验。
进一步地,壳体为圆柱壳体,壳体的外周壁上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口,且风门组件包括覆盖两个中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个圆柱旋转门,多个出风口与多个圆柱旋转门相配合能够满足用户对空调器多维出风方式的追求,同时至少一个无风感出风板和至少一个圆柱旋转门相配合能够实现无风感出风、无风感出风与常规出风相结合的综合出风方式,进一步提高用户使用的舒适度,提升用户的使用体验,且综合出风的方式,能够保证如杨柳微风般柔和的风吹向用户,同时保证室内温度均匀,避免较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大产品的使用范围,提高产品的市场竞争力,提升产品的卖点。进一步地,可以根据用户的需求设置不同数量的无风感出风板和不同数量的圆柱旋转门,且将不同数量的无风感出风板和不同数量的圆柱旋转门设置在每个中间出风口和每个侧面出风口处,以满足用户对空调器多种出风方式和多种出风功能的需求,扩大空调器的功能,提高用户使用的满意度。
在上述任一技术方案中,优选地,至少一个无风感出风板为两个,两个无风感出风板覆盖两个侧面出风口;至少一个圆柱旋转门为两个,两个圆柱旋转门位于两个中间出风口处。
在该技术方案中,至少一个无风感出风板为两个,两个无风感出风板覆盖两个侧面出风口,能够实现空调器的两个侧面出风口无风感出风,保证柔和出风提高用户使用的舒适度,且扩大了无风感出风的范围,提高用户使用的满意度,至少一个圆柱旋转门为两个,两个圆柱旋转门位于两个中间出风口处,通过两个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部能够实现两个中间出风口停止出风或常规吹风,进而使得常规出风时出风集中,有利于空调器快速制冷或制热,维持室内温度均匀不变,通过覆盖两个侧面出风口的两个无风感出风板和位于两个中间出风口处的两个圆柱旋转门相互配合,能够实现空调器的无风感出风和综合出风,满足用户对空调 器多种出风方式和多种出风功能的追求,提高用户使用的舒适度,提升用户的使用体验。
进一步地,两个侧面出风口处覆盖两个无风感出风板,扩大了无风感出风的范围,使无风感出风的范围分散,有利于用户分散地享受无风感出风的舒适,避免只有中间的出风口实现无风感出风用户需要集中在一起享受无风感出风而拥挤的问题,有效地提升了用户的使用体验,而位于中间的两个中间出风口处设置有两个圆柱旋转门,使得通过圆柱旋转门的通风通道连通壳体内部和外部时两个中间出风口实现常规出风,能够快速实现制热或制热,维持室内的温度不变,并保证两个侧面出风口的无风感出风范围处的温度均匀,进一步提高用户使用的满意度。而两个无风感出风板对称的设置在位于中间的两个圆柱旋转门的两侧,有效地保证了空调器外观的美观,提高用户使用的满意度。
在上述任一技术方案中,优选地,还包括:根据出风模式指令,控制导风装置的两个导风件转动至不同位置。
在该技术方案中,通过根据出风模式指令,控制导风装置的两个导风件转动至不同位置,使得两个导风件转动分别与风道组件的两侧或中间部分相抵接将两个出风区与两个中间出风口或两个侧面出风口相连通,每个导风件均位于风道组件的一侧和中间部分之间将两个出风区与四个出风口相连通,进而通过两个导风件转动并配合两个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部打开或关闭两个中间出风口,能够实现空调器的两个侧面出风口无风感出风、两个中间出风口常规出风以及四个出风口同时出风的综合出风,满足用户对空调器多维出风方式和多种出风功能的追求,提高用户使用的满意度,同时保证风轮工作产生的风全部通过正在进行出风动作的出风口吹出至壳体外部,减小了出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本,同时保证了充足的出风量,能够快速达到空调器制热或制冷的舒适度,提升用户的使用体验。
在上述任一技术方案中,优选地,出风模式指令为无风感出风指令,根据出风模式指令,控制导风装置的至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭 或打开,控制两个风轮的工作状态的具体步骤包括:根据无风感出风指令,控制每个圆柱旋转门旋转使通风通道位于壳体内部关闭每个中间出风口,控制两个风轮开始工作。
在该技术方案中,出风模式指令为无风感出风指令,通过根据无风感出风指令,控制每个圆柱旋转门旋转使通风通道位于壳体内部关闭每个中间出风口,控制两个风轮开始工作,使得两个风轮工作产生的风经覆盖两个侧面出风口的无风感出风板吹出至外部环境,由于风轮工作产生的风经无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,避免了两个风轮工作产生的风经侧面出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的满意度,较柔和的风吹向用户有效地提升了用户使用的舒适度,提升用户的使用体验,且两个侧面出风口同时实现无风感出风,扩大了无风感出风的范围,提高用户使用的满意度。
在上述任一技术方案中,优选地,还包括:根据无风感出风指令,控制导风装置的两个导风件转动与风道组件的中间部分相抵接将两个出风区分别与两个侧面出风口相连通。
在该技术方案中,通过根据无风感出风指令,控制导风装置的两个导风件转动与风道组件的中间部分相抵接将两个出风区分别与两个侧面出风口相连通,同时将两个出风区与中间出风口阻断,使得空调器在执行无风感出风指令时,两个风轮工作产生的两个出风区的风全部通过两个侧面出风口的无风感出风板吹出至外部环境,保证了吹出至用户身上的风柔和,提高用户使用的舒适度,同时保证风轮工作产生的风全部通过正在进行出风动作的两个侧面出风口吹出至外部环境,减小了空调器出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本。
在上述任一技术方案中,优选地,出风模式指令为常规出风指令,根据出风模式指令,控制导风装置的至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态,根据出风模式指令,控制导风装置的两个导风件转动至不同位置的具体步骤包括:根据常规出风指令,控制每个圆柱旋转门旋转使通风通道连通壳体内部和外部打开每个中间出风口,控制每个 导风件转动分别与风道组件的一侧相抵接将两个出风区分别与两个中间出风口相连通,控制两个风轮开始工作。
在该技术方案中,出风模式指令为常规出风指令,通过根据常规出风指令,控制每个圆柱旋转门旋转使通风通道连通壳体内部和外部打开每个中间出风口,控制每个导风件转动与风道组件的一侧相抵接将两个出风区分别与两个中间出风口相连通,同时使两个出风区与两个侧面出风口阻断,控制两个风轮开始工作,使得两个风轮工作产生的风经两个中间出风口吹出至外部环境,实现了空调器的两个中间出风口常规出风,同时降低了风轮工作产生的风在壳体内部的风量损失,提高了风轮的工作效率,并保证了从两个中间出风口吹出至外部环境的风量充足,扩大了常规出风的范围,保证常规出风集中,使得充足、集中的风与外部环境进行热交换能够快速达到制热或制冷的舒适度,并维持室内温度不变,提升用户的使用体验,提高用户使用的满意度。
进一步地,可以通过控制圆柱旋转门的通风通道以不同位置连通壳体内部和外部打开每个中间出风口,实现每个中间出风口的出风方向不同,满足用户对空调器多维出风方式的追求,进一步地,可以将圆柱旋转门的通风通道设置为弧形结构,可以通过圆柱旋转门旋转使弧形结构凹向或凸向两个中间出风口的中间部分使两个中间出风口的出风方向不同,满足用户对空调器多维出风方式的需求,提升用户的使用体验。
在上述任一技术方案中,优选地,出风模式指令为综合出风指令,根据出风模式指令,控制导风装置的至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态的具体步骤包括:根据综合出风指令,控制每个圆柱旋转门旋转使通风通道连通壳体内部和外部打开每个中间出风口,控制两个风轮开始工作。
在该技术方案中,出风模式指令为综合出风指令,通过根据综合出风指令,控制每个圆柱旋转门旋转使通风通道连通壳体内部和外部打开每个中间出风口,控制两个风轮开始工作,使得风轮工作产生的风经覆盖每个侧面出风口的每个无风感出风板吹向用户实现空调器的两个侧面出风口无风感出风, 保证用户使用的舒适度,同时经两个中间出风口吹出至外部环境与外部环境的空气快速进行热交换实现制冷或制热,并维持室内温度不变,提升用户的使用体验,避免了较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大了产品的使用范围,提高产品的市场竞争力,提升产品的卖点。
在上述任一技术方案中,优选地,还包括:根据综合出风指令,控制导风装置的每个导风件转动至风道组件的一侧和中间部分之间,将两个出风区分别与两个中间出风口、两个侧面出风口相连通。
在该技术方案中,通过根据综合出风指令,控制导风装置的每个导风件转动至风道组件的一侧和中间部分之间,将两个出风区与中间出风口、两个侧面出风口相连通,由于两个导风件位于两个出风区内部,通过两个导风件将两个出风区进行划分能够保证两个侧面出风口和两个中间出风口的出风量充足,避免风轮工作产生的风未经分流随意经侧面出风口和中间出风口吹出至外部环境存在部分出风口出风量不足的问题,有效地保证了良好的出风效果,提升用户的使用体验。进一步地,通过两个导风件将风轮工作产生的风分流使得在保证经两个侧面出风口的无风感出风板吹出的风量充足后,大部分的风经两个中间出风口处的圆柱旋转门的通风通道吹出至外部环境充分与外部环境的空气进行热交换,以使两个中间出风口吹出的风快速制冷或制热,达到用户对空调器制热或制冷舒适度的需求,而两个侧面出风口柔和的风吹向用户能够提高用户的舒适感,进而提升用户的使用体验,提高用户使用的满意度。
在上述任一技术方案中,优选地,出风模式指令为停止出风指令,根据出风模式指令,控制导风装置的至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态,根据出风模式指令,控制导风装置的两个导风件转动至不同位置的具体步骤包括:根据停止出风指令,控制两个风轮停止工作,控制两个导风件停止转动,控制每个圆柱旋转门旋转使通风通道位于壳体内部关闭每个中间出风口。
在该技术方案中,出风模式指令为停止出风指令,通过根据停止出风指令,控制两个风轮停止工作停止产生风,控制两个导风件停止转动,避免了导风件在停止出风指令状态下一直转动浪费能源并产生噪音而影响用户的使用,提高了用户使用的满意度,同时控制两个圆柱旋转门旋转使通风通道位于壳体内部关闭两个中间出风口,避免空调器为停止出风状态时,两个中间出风口暴露在外影响空调器外观的美观且容易使壳体内部落入灰尘,有效地保证了空调器外观的美观且保证壳体内部的清洁,提高用户使用的满意度,提高产品的质量。
进一步地,空调器在停止出风指令状态时,导风装置的两个导风件可以转动至任一位置后停止,具体地,两个导风件可以转动至与风道组件的中间部分相抵接将两个风轮的两个出风区与两个侧面出风口相连通并与两个中间出风口阻断,进而使得空调器在执行无风感出风指令时直接控制风轮工作即可实现无风感出风,无需控制导风件转动,提高了空调器的控制速度,提高用户使用的满意度。
根据本发明的第五方面实施例,还提出了一种空调器,包括:壳体,壳体的外周壁上设置有位于中间的中间出风口和位于中间出风口两侧的两个侧面出风口;两个风轮,两个风轮工作时反方向转动以实现两个出风区;以及上述第一方面实施例中任一技术方案所述的导风装置。
本发明第五方面的实施例提供的空调器,包括壳体、两个风轮以及上述第一方面实施例中任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的中间出风口和位于中间出风口两侧的两个侧面出风口,两个风轮工作时反向转动以实现两个出风区的两个风轮。本发明第五方面的实施例提供的空调器因包括第一方面实施例提供的导风装置,因而具有第一方面实施例提供的导风装置的全部有益技术效果,在此不再赘述。
在上述任一技术方案中,优选地,还包括:检测装置,设置在壳体上,用于检测出风模式指令;控制器,设置在壳体上,与两个风轮、至少一个滑动门、导风装置的两个导风件相连接,并根据出风模式指令对两个风轮、至少一个滑动门、两个导风件进行控制;其中,出风模式指令包括无风感出风指令、常规出风指令、综合出风指令、停止出风指令。
在该技术方案中,空调器还包括检测装置和控制器,通过检测装置设置在壳体上,检测出风模式指令,控制器设置在壳体上,与两个风轮、至少一个滑动门、导风装置的两个导风件相连接,并根据检测装置检测出的无风感出风指令、常规出风指令、综合出风指令、停止出风指令对两个风轮、至少一个滑动门、两个导风件进行控制,使得两个风轮工作产生的风经无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮工作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,使得在滑动门关闭中间出风口和/或每个侧面出风口时风轮工作产生的风经无风感出风板吹向用户实现无风感出风,提高用户使用的舒适度,在滑动门打开中间出风口和/或每个侧面出风口时空调器能够实现综合出风,即通过无风感出风板出风保证出风柔和,同时通过出风口直接出风使空调器快速与外部环境的空气进行热交换达到制热或制冷的舒适度,进一步提升用户的使用体验,提高用户使用的满意度。
根据本发明的第六方面实施例,还提出了一种空调器,包括:壳体,壳体的外周壁上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口;两个风轮,两个风轮工作时反方向转动以实现两个出风区;以及上述第二方面实施例中任一技术方案所述的导风装置。
本发明第六方面的实施例提供的空调器,包括壳体、两个风轮以及上述第二方面实施例中任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口,两个风轮工作时反向转动以实现两个出风区的两个风轮。本发明第六方面的实施例提供的空调器因包括第二方面实施例提供的导风装置,因而具有第二方面实施例提供的导风装置的全部有益技术效果,在此不再赘述。
在上述任一技术方案中,优选地,还包括:检测装置,设置在壳体上,用于检测出风模式指令;控制器,设置在壳体上,与两个风轮、至少一个圆柱旋转门、导风装置的两个导风件相连接,并根据出风模式指令对两个风轮、 至少一个圆柱旋转门、两个导风件进行控制;其中,出风模式指令包括无风感出风指令、常规出风指令、综合出风指令、停止出风指令。
在该技术方案中,空调器还包括检测装置和控制器,通过检测装置设置在壳体上,检测出风模式指令,控制器设置在壳体上,与两个风轮、至少一个圆柱旋转门、导风装置的两个导风件相连接,并根据检测装置检测出的无风感出风指令、常规出风指令、综合出风指令、停止出风指令对两个风轮、至少一个圆柱旋转门、两个导风件进行控制,使得两个风轮工作产生的风经无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮工作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,使得在圆柱旋转门旋转关闭每个中间出风口和/或每个侧面出风口时风轮工作产生的风经无风感出风板吹向用户实现无风感出风,提高用户使用的舒适度,在圆柱门旋转门旋转打开每个中间出风口和/或每个侧面出风口时空调器能够实现综合出风,即通过无风感出风板出风保证出风柔和,同时通过圆柱旋转门的通风通道吹出的风量充足、范围较广的风快速与外部环境的空气进行热交换能够快速达到制热或制冷的舒适度,提升用户的使用体验。
根据本发明的第七方面的实施例,还提出了一种计算机设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,处理器用于执行上述第三方面实施例或第四方面实施例的导风控制方法中任一项方法的步骤。
本发明第七方面的实施例提供的计算机设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,处理器用于执行上述第三方面实施例或第四方面实施例的导风控制方法中任一项方法的步骤。因本发明第七方面的实施例提供的计算机设备的处理器能够执行第三方面实施例或第四方面实施例的导风控制方法中任一项方法的步骤,因此,具备第三方面实施例或第四方面实施例所述的导风控制方法的全部有益技术 效果,在此不再赘述。
根据本发明的第八方面的实施例,还提出了一种计算可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现了上述第三方面实施例或第四方面实施例的导风控制方法中任一项方法的步骤。
本发明第八方面的实施例提供的计算机可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现了上述第三方面实施例或第四方面实施例的导风控制方法中任一项方法的步骤。因本发明第八方面的实施例提供的计算机可读存储介质的计算机程序被处理器执行能够实现上述第三方面实施例或第四方面实施例的导风控制方法任一项方法的步骤,因此,具备第三方面实施例或第四方面实施例所述的导风控制方法的全部有益技术效果,在此不再赘述。
本发明的附加方面和优点将在下面的描述部分中变得明显,或通过本发明的实践了解到。
附图说明
图1是本发明的一个实施例中空调器的结构示意图;
图2是图1所示的本发明的一个实施例中空调器的剖视图;
图3是图1所示的本发明的一个实施例中空调器的主视图;
图4是图3所示的本发明的一个实施例中空调器的A-A的截面示意图;
图5是图1所示的本发明的又一个实施例中空调器的主视图;
图6是本发明的第二个实施例中空调器的结构示意图;
图7是本发明的一个实施例中空调器为无风感出风指令时的结构示意图;
图8是本发明的一个实施例中空调器为常规出风指令时的结构示意图;
图9是本发明的又一个实施例中空调器为常规出风指令时的结构示意图;
图10是本发明的一个实施例中空调器为综合出风指令时的结构示意图;
图11是本发明的一个实施例中空调器为停止出风指令时的结构示意图;
图12是本发明的第三个实施例中空调器的结构示意图;
图13是图12所示的本发明的第三个实施例中空调器的剖视图;
[根据细则91更正 23.06.2017] 
图14是图12所示的本发明的第三个实施例中空调器的主视图;
图15是图14所示的本发明的第三个实施例中空调器的B-B的截面示意图;
图16是本发明的第四个实施例中空调器的的结构示意图;
图17是本发明的第五个实施例中空调器的的结构示意图;
图18是本发明的又一个实施例中空调器为无风感出风指令时的结构示意图;
图19是本发明的另一个实施例中空调器为常规出风指令时的结构示意图;
图20是本发明的又一个实施例中空调器为综合出风指令时的结构示意图;
图21是本发明的又一个实施例中空调器为停止出风指令时的结构示意图;
图22是本发明的第一个实施例的导风控制方法的流程示意图;
图23是本发明的第二个实施例的导风控制方法的流程示意图;
图24是本发明的第三个实施例的导风控制方法的流程示意图;
图25是本发明的第四个实施例的导风控制方法的流程示意图;
图26是本发明的第五个实施例的导风控制方法的流程示意图;。
图27是本发明的第六个实施例的导风控制方法的流程示意图;
图28是本发明的第七个实施例的导风控制方法的流程示意图;
图29是本发明的第八个实施例的导风控制方法的流程示意图;
图30是本发明的第九个实施例的导风控制方法的流程示意图;
图31是本发明的第十个实施例的导风控制方法的流程示意图;
图32本发明的实施例的计算机处理设备的示意框图。
其中,图1至图21中,附图标记与部件名称之间的对应关系为:
10导风装置,12风道组件,122导向斜面,14风门组件,142无风感出风板,1422通孔,1440滑动门,1442齿条,1444圆柱旋转门,1446通风通道,16导风组件,162导风件,18百叶组件,20壳体,202中间出风口,204侧面出风口,30风轮,40齿轮,100空调器。
具体实施方式
为了能够更清楚地理解本发明的上述目的、特征和优点,下面结合附图和具体实施方式对本发明进行进一步的详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本发明,但是,本发明还可以采用其他不同于在此描述的其他方式来实施,因此,本发明的保护范围并不受下面公开的具体实施例的限制。
下面参照图1至图32描述根据本发明一些实施例所述导风装置10、导风控制方法和空调器100。
如图1至图3所示,本发明提出了一种导风装置10,用于空调器100,空调器100包括壳体20和两个风轮30,壳体20的外周壁上设置有位于中间的中间出风口202和位于中间出风口202两侧的两个侧面出风口204,两个风轮30工作时反方向转动以实现两个出风区,导风装置10包括:风道组件12,设置在壳体20内部,两个风轮30安装在风道组件12内部;风门组件14,安装在壳体20上,包括覆盖中间出风口202和两个侧面出风口204的至少一个无风感出风板142和至少一个滑动门1440;其中,至少一个无风感出风板142设置有多个通孔1422,至少一个滑动门1440沿壳体20的周向滑动至不同位置能够将中间出风口202和/或每个侧面出风口204关闭或打开。
本发明提供的导风装置10,用于空调器100,空调器100包括设置有中间出风口202和两个侧面出风口204的壳体20和两个风轮30,两个风轮30工作时反方向转动以实现两个出风区,导风装置10包括风道组件12和风门组件14,风道组件12设置在壳体20内部,两个风轮30安装在风道组件12内部,风门组件12安装在壳体20上,包括覆盖中间出风口202和两个侧面出风口204的至少一个无风感出风板142和至少一个滑动门1440,通过至少 一个无风感出风板142设置有多个通孔1422,使得空调器100在出风状态时两个风轮30工作产生的风经无风感出风板142的多个通孔1422被疏散成众多低速、均匀的气丝蔓延至壳体20外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮30工作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个滑动门1440沿壳体20的周向滑动至不同位置将中间出风口202和/或每个侧面出风口204关闭或打开,使得在滑动门1440关闭中间出风口202和/或每个侧面出风口204时风轮30工作产生的风经无风感出风板142吹向用户实现无风感出风,提高用户使用的舒适度,在滑动门1440打开中间出风口202和/或每个侧面出风口204时空调器100能够实现综合出风,即通过无风感出风板142出风保证出风柔和,同时通过出风口直接出风使空调器100快速与外部环境的空气进行热交换达到制热或制冷的舒适度,进一步提升用户的使用体验,提高用户使用的满意度。
进一步地,壳体20为圆柱壳体20,壳体20的外周壁上设置有中间出风口202和两个侧面出风口204,且风门组件14包括覆盖中间出风口202和两个侧面出风口204的至少一个无风感出风板142和至少一个滑动门1440,多个出风口与多个滑动门1440相配合能够满足用户对空调器100多维出风方式的追求,同时至少一个无风感出风板142和至少一个滑动门1440相配合能够实现无风感出风、无风感出风与常规出风相结合的综合出风方式,进一步提高用户使用的舒适度,提升用户的使用体验,且综合出风的方式,能够保证如杨柳微风般柔和的风吹向用户,同时保证室内温度均匀,避免较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大产品的使用范围,提高产品的市场竞争力,提升产品的卖点。进一步地,可以根据用户的需求设置不同数量的无风感出风板142和不同数量的滑动门1440,且将不同数量的无风感出风板142和不同数量的滑动门1440设置在中间出风口202和每个侧面出风口204处,以满足用户对空调器100多种出风方式和多种出风功能的需求,扩大空调器100的功能,提高用户使用的满意度。
进一步地,两个风轮30工作时反方向转动以实现两个出风区,增加了出风范围,能够满足一个中间出风口202和两个侧面出风口204出风的需求,保证充足的出风量和快速出风的效果,进而使空调器100能够快速达到制热或制冷的舒适性,提升用户的使用体验,提高用户使用的满意度。
如图4所示,在本发明的一个实施例中,优选地,至少一个无风感出风板142的形状与中间出风口202或每个侧面出风口204相适配,并位于中间出风口202或每个侧面出风口204处。
在该实施例中,至少一个无风感出风板142的形状与中间出风口202或每个侧面出风口204相适配,通过将至少一个无风感出风板142安装在壳体20上并位于中间出风口202或每个侧面出风口204处,使得无风感出风板142用较小的面积覆盖了中间出风口202和/或每个侧面出风口204,保证了空调器100能够实现无风感出风,提高用户使用的舒适度,同时节约了制造成本,避免了浪费。进一步地,由于无风感出风板142位于中间出风口202或每个侧面出风口204处,可以将无风感出风板142的多个通孔1422设置为不同的形状和不同的大小,使无风感出风板142朝向壳体20外部的一侧美观,进而保证空调器100外观的美观,提高用户使用的满意度。
如图5所示,在本发明的一个实施例中,优选地,至少一个无风感出风板142位于中间出风口202或每个侧面出风口204的外侧,并连通壳体20的上端和下端。
在该实施例中,通过将至少一个无风感出风板142位于中间出风口202或每个侧面出风口204的外侧,并连通壳体20的上端和下端,使得无风感出风板142覆盖中间出风口202或每个侧面出风口204并连通壳体20的上端和下端,保证空调器100能够实现无风感出风保证用户使用的舒适性,同时保证了中间出风口202或每个侧面出风口204所在的壳体20的上方和下方均被无风感出风板142覆盖,进而保证了中间出风口202或每个侧面出风口204所在的壳体20上方和下方的一致性,避免中间出风口202或每个侧面出风口204处设置有无风感出风板142,而中间出风口202或每个侧面出风口204的上方和下方仍是壳体20而影响空调器100外观的美观,有效地保证了空调器100外观的美观,提高用户使用的满意度。
进一步地,可以将中间出风口202或侧面出风口204所在的壳体20的一侧均设置为无风感出风板142,有效地保证了中间出风口202或侧面出风口204所在的壳体20一侧外观的一致性,进一步提高了空调器100外观的美观,提高用户使用的满意度。而出风板连通中间出风口202或侧面出风口204上下两端的壳体20,或将中间出风口202或侧面出风口204所在的壳体20的一侧均设置为无风感出风板142,其真正的无风感出风范围与中间出风口202或侧面出风口204相适配。
如图1至图11所示,在本发明的一个实施例中,优选地,至少一个无风感出风板142为一个,一个无风感出风板142覆盖中间出风口202;至少一个滑动门1440为两个,两个滑动门1440沿壳体20的周向滑动至不同位置将两个侧面出风口204关闭或打开。
在该实施例中,至少一个无风感出风板142为一个,一个无风感出风板142覆盖中间出风口202,能够实现中间出风口202无风感出风,保证柔和出风提高用户使用的舒适度,至少一个滑动门1440为两个,两个滑动门1440沿壳体20的周向滑动至不同位置将两个侧面出风口204关闭或打开,能够实现侧面出风口204停止出风或常规出风,保证快速的制冷或制热,维持室内温度均匀不变,通过覆盖中间出风口202的无风感出风板142和位于两个侧面出风口204处的两个滑动门1440相互配合,能够实现空调器100的无风感出风和综合出风,满足用户对空调器100多种出风方式和多种出风功能的追求,提高用户使用的舒适度,提升用户的使用体验。
进一步地,无风感出风板142位于两个滑动门1440的中间,保证了两个滑动门1440对称的设置在一个无风感出风板142的两侧,进而保证了空调器100外观的美观,提高用户使用的满意度。
在本发明的一个实施例中,优选地,两个滑动门1440位于两个侧面出风口204的外侧,两个滑动门1440沿壳体20的周向滑动至相连接关闭中间出风口202和两个侧面出风口204。
在该实施例中,两个滑动门1440位于两个侧面出风口204的外侧,通过两个滑动门1440沿壳体20的周向滑动至相连接关闭中间出风口202和两个侧面出风口204,使得在空调器100停止出风时,两个滑动门1440滑动至 相连接关闭所有出风口,避免空调器100在停止出风状态下覆盖中间出风口202的无风感出风板142暴露在壳体20外部影响空调器100外观的美观,通过两个滑动门1440同时关闭中间出风口202和两个侧面出风口204有效地保证了空调器100外观的美观,同时避免了通过无风感出风板142向壳体20内部落入灰尘,有效地节约的成本,保证了壳体20内部的清洁,提高产品质量,提高用户使用的满意度。
如图6所示,进一步地,滑动门1440上设置有齿条1442,壳体20内部设置有带有齿轮40的驱动装置,齿轮40通过设置在侧面出风口204一侧的壳体20上的安装槽伸出壳体20外部,通过齿轮40和齿条1442配合连接使滑动门1440与壳体20滑动连接,进而在驱动装置的驱动下齿轮40转动带动齿条1442运动,进而带动滑动门1440沿壳体20的周向移动至不同位置关闭或打开侧面出风口204,连接方式简单,齿轮40和齿条1442传动准确,有效地提高了空调器100控制的准确性和灵活性,提高空调器100的质量,提高用户使用的满意度。进一步地,滑动门1440可以通满足要求的其他方式与壳体20滑动连接实现关闭或打开侧面出风口204。
如图7至图11所示,在本发明的一个实施例中,优选地,还包括:两个百叶组件18,设置在壳体20内部,分别与每个侧面出风口204相对设置。
在该实施例中,通过将两个百叶组件18设置在壳体20的内部,分别与每个侧面出风口204相对设置,可以通过每个百叶组件18转动至不同位置控制每个侧面出风口204的出风方向,使得同一侧面出风口204能够吹出不同方向的风,实现不同的出风方式,满足用户对空调器100多维出风方式的追求,提高用户使用的满意度。
如图4、图7至图11所示,在本发明的一个实施例中,优选地,还包括:导风组件16,转动地设置在风道组件12内部,导风组件16包括分别位于中间出风口202和每个侧面出风口204之间的两个导风件162,每个导风件162转动分别与风道组件12的一侧相抵接能够将两个出风区与中间出风口202相连通,两个导风件162转动与风道组件12的中间部分相抵接能够将两个出风区分别与两个侧面出风口204相连通。
在该实施例中,导风装置10还包括转动设置在风道组件12内部的导风 组件16,导风组件16包括分别位于中间出风口202和每个侧面出风口204之间的两个导风件162,通过两个导风件162转动分别与风道组件12的两侧或中间部分相抵接将两个出风区与中间出风口202或两个侧面出风口204相连通,进一步地,两个导风件162均位于风道组件12的一侧和中间部分之间将两个出风区与三个出风口相连通,进而通过两个导风件162转动并配合两个滑动门1440打开或关闭两个侧面出风口204,能够实现空调器100的中间出风口202的无风感出风、两个侧面出风口204的常规出风以及三个出风口同时出风的综合出风,满足用户对空调器100多维出风方式和多种出风功能的追求,提高用户使用的满意度,同时保证风轮30工作产生的风全部通过正在进行出风动作的出风口吹出至壳体20外部,减小了出风过程中在壳体20内部的风量损失,提高了风轮30的工作效率,降低了使用成本,同时保证了充足的出风量,能够快速达到空调器100制热或制冷的舒适度,提升用户的使用体验。
一方面,如图1和图7所示,通过每个导风件162转动分别与风道组件12的一侧相抵接将两个出风区与中间出风口202相连通,同时将两个出风区与两个侧面出风口204阻断,在两个滑动门1440沿壳体20的周向滑动至关闭两个侧面出风口204时,两个风轮30工作产生的两个出风区的风全部通过中间出风口202的无风感出风板142吹出至外部环境,保证了吹出至用户身上的风柔和、缓慢,提高用户使用的舒适度,同时保证风轮30工作产生的风全部通过正在进行出风动作的中间出风口202吹出至外部环境,减小了空调器100出风过程中在壳体20内部的风量损失,提高了风轮30的工作效率,降低了使用成本。
一方面,如图8和图9所示,通过两个导风件162转动与风道组件12的中间部分相抵接将两个出风区分别与两个侧面出风口204相连通,同时将两个出风区与中间出风口202阻断,在两个滑动门1440沿壳体20的周向滑动至打开两个侧面出风口204时,两个风轮30工作产生的两个出风区的风全部通过两个侧面出风口204吹出至外部环境,实现了侧面出风口204常规出风,同时降低了风轮30工作产生的风在壳体20内部的风量损失,提高了风轮30的工作效率,并保证了从两个侧面出风口204吹出至外部环境的风量充足, 使得充足的风与外部环境进行热交换能够快速达到制热或制冷的舒适度,并维持室内温度不变,提升用户的使用体验,提高用户使用的满意度。
一方面,如图10所示,通过两个导风件162转动分别位于风道组件12的一侧和中间部分之间,使得两个风轮30工作产生的两个出风区分别与中间出风口202和两个侧面出风口204同时连通,在两个滑动门1440沿壳体20的周向滑动至打开两个侧面出风口204时,两个风轮30工作产生的风经中间出风口202和两个侧面出风口204同时吹出至外部环境,实现了空调器100的综合出风,使得经中间出风口202无风感出风板142吹出的柔和的风吹向用户,提高用户使用的舒适度,同时经两个侧面出风口204吹出的风快速实现制冷或制热,维持室内温度不变,提升用户的使用体验,而由于两个导风件162位于两个出风区内部,通过两个导风件162将两个出风区进行划分能够保证两个侧面出风口204和中间出风口202的出风量充足,避免风轮30工作产生的风未经分流随意经侧面出风口204和中间出风口202吹出至外部环境存在部分出风口出风量不足的问题,有效地保证了良好的出风效果,提升用户的使用体验。
进一步地,通过两个导风件162将风轮30工作产生的风分流使得在保证经中间出风口202的无风感出风板142吹出的风量充足后,大部分的风经两个侧面出风口204吹出至外部环境充分与外部环境的空气进行热交换,以达到侧面出风口204快速实现制冷或制热,达到用户对空调器100制热或制冷舒适度的需求,而中间出风口202柔和的风吹向用户能够提高用户的舒适感,进而提升用户的使用体验,提高用户使用的满意度。
如图7、图8至图11所示,在本发明的一个实施例中,优选地,风道组件12的中间部分靠近两个风轮30的一侧设置有导向斜面122,两个导风件162转动与风道组件12的中间部分相抵接时与导向斜面122相连接。
在该实施例中,风道组件12的中间部分靠近两个风轮30的一侧设置有导向斜面122,通过两个导风件162转动与风道组件12的中间部分相抵接时与导向斜面122相连接,有利于风轮30工作产生的风在出风区内沿导向斜面122和导风件162经侧面出风口204顺畅、快速的吹出至壳体20外部,保证了充足的出风量和良好的出风效果,进而能够满足用户对空调器100快速达 到制冷或制热舒适度的需求,提高用户使用的满意度。
如图12至图15所示,根据本发明第二方面的实施例,本发明提出了一种导风装置10,用于空调器100,空调器100包括壳体20和两个风轮30,壳体20上设置有位于中间的两个中间出风口202和位于两个中间出风口202两侧的两个侧面出风口204,两个风轮30工作时反方向转动以实现两个出风区,导风装置10包括:风道组件12,设置在壳体20内部,两个风轮30安装在风道组件12内部;风门组件14,安装在壳体20上,包括覆盖两个中间出风口202和两个侧面出风口204的至少一个无风感出风板142和至少一个圆柱旋转门1444;其中,至少一个无风感出风板142设置有多个通孔1422,至少一个圆柱旋转门1444设置有通风通道1446,圆柱旋转门1444旋转使通风通道1446位于壳体20内部或连通壳体20内部和外部能够将每个中间出风口202和/或每个侧面出风口204关闭或打开。
本发明第二方面提供的导风装置10,用于空调器100,空调器100包括壳体20、两个风轮30和导风装置10,壳体20设置有两个中间出风口202和两个侧面出风口204,两个风轮30工作时反方向转动以实现两个出风区,导风装置10包括风道组件12和风门组件14,风道组件12设置在壳体20内部,两个风轮30安装在风道组件12内部,风门组件14安装在壳体20上,包括覆盖两个中间出风口202和两个侧面出风口204的至少一个无风感出风板142和至少一个圆柱旋转门1444,通过无风感出风板142设置有多个通孔1422,使得空调器100在出风状态时两个风轮30工作产生的风经覆盖每个中间出风口202和/或每个侧面出风口204的无风感出风板142的多个通孔1422被疏散成众多低速、均匀的气丝蔓延至壳体20外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮30工作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个圆柱旋转门1444旋转使通风通道1446位于壳体20内部或连通壳体20内部和外部将每个中间出风口202和/或每个侧面出风口204关闭或打开,使得在圆柱旋转门1444旋转关闭每个中间出风口202和/或每个侧面出风口204时风轮30工作产生的风经无风感出风板142吹向用户实现无风感出风,提高用户使用的舒适度,在圆柱门旋转门旋转打开每个中间 出风口202和/或每个侧面出风口204时空调器100能够实现综合出风,即通过无风感出风板142出风保证出风柔和,同时通过圆柱旋转门1444的通风通道1446吹出的风量充足、范围较广的风快速与外部环境的空气进行热交换能够快速达到制热或制冷的舒适度,提升用户的使用体验。
进一步地,通过圆柱旋转门1444旋转以通风通道1446的不同位置连通壳体20内部和外部能够改变出风口的出风方向,满足用户对空调器100多维出风方式的追求,同时避免了通过百叶组件进行导风使出风范围受限,有效地扩大了出风范围,保证了充足的出风量和较广的出风范围,进而能够实现快速制热或制冷,提升用户的使用体验。
进一步地,壳体20为圆柱壳体20,壳体20的外周壁上设置有位于中间的两个中间出风口202和位于两个中间出风口202两侧的两个侧面出风口204,且风门组件14包括覆盖两个中间出风口202和两个侧面出风口204的至少一个无风感出风板142和至少一个圆柱旋转门1444,多个出风口与多个圆柱旋转门1444相配合能够满足用户对空调器100多维出风方式的追求,同时至少一个无风感出风板142和至少一个圆柱旋转门1444相配合能够实现无风感出风、无风感出风与常规出风相结合的综合出风方式,进一步提高用户使用的舒适度,提升用户的使用体验,且综合出风的方式,能够保证如杨柳微风般柔和的风吹向用户,同时保证室内温度均匀,避免较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大产品的使用范围,提高产品的市场竞争力,提升产品的卖点。进一步地,可以根据用户的需求设置不同数量的无风感出风板142和不同数量的圆柱旋转门1444,且将不同数量的无风感出风板142和不同数量的圆柱旋转门1444设置在每个中间出风口202和每个侧面出风口204处,以满足用户对空调器100多种出风方式和多种出风功能的需求,扩大空调器100的功能,提高用户使用的满意度。
如图12所示,在本发明的一个实施例中,优选地,至少一个无风感出风板142的形状与每个中间出风口202或每个侧面出风口204相适配,并位于每个中间出风口202或每个侧面出风口204处。
在该实施例中,至少一个无风感出风板142的形状与每个中间出风口202或每个侧面出风口204相适配,通过将至少一个无风感出风板142安装在壳体20上并位于每个中间出风口202或每个侧面出风口204处,使得无风感出风板142用较小的面积覆盖了每个中间出风口202或每个侧面出风口204,保证了空调器100能够实现无风感出风,提高用户使用的舒适度,同时节约了制造成本,避免了浪费。进一步地,由于无风感出风板142位于每个中间出风口202或每个侧面出风口204处,可以将无风感出风板142的多个通孔1422设置为不同的形状和不同的大小,使无风感出风板142朝向壳体20外部的一侧美观,进而保证空调器100外观的美观,提高用户使用的满意度。
如图16所示,在本发明的一个实施例中,优选地,至少一个无风感出风板142位于每个中间出风口202或每个侧面出风口204的外侧,并连通壳体20的上端和下端。
在该实施例中,通过将至少一个无风感出风板142位于每个中间出风口202或每个侧面出风口204的外侧,并连通壳体20的上端和下端,图16中的斜线部分示意为无风感出风板142,使得无风感出风板142覆盖每个中间出风口202或每个侧面出风口204并连通壳体20的上端和下端,保证空调器100能够实现无风感出风保证用户使用的舒适性,同时保证了每个中间出风口202或每个侧面出风口204所在的壳体20的上方和下方均被无风感出风板142覆盖,进而保证了每个中间出风口202或每个侧面出风口204所在的壳体20上方和下方的一致性,避免每个中间出风口202或每个侧面出风口204处设置有无风感出风板142,而每个中间出风口202或每个侧面出风口204的上方和下方仍是壳体20而影响空调器100外观的美观,有效地保证了空调器100外观的美观,提高用户使用的满意度。
进一步地,可以将中间出风口202或侧面出风口204所在的壳体20的一侧均设置为无风感出风板142,有效地保证了中间出风口202或侧面出风口204所在的壳体20一侧外观的一致性,进一步提高了空调器100外观的美观,提高用户使用的满意度。如图17所示为将侧面出风口204所在的壳体20的一侧均设置有无风感出风板142,其中,图17中的斜线部分示意为无风感出 风板142。而如图16所示出风板连通侧面出风口204上下两端的壳体20,或如图17所示将侧面出风口204所在的壳体20的一侧均设置为无风感出风板142,其真正的无风感出风范围与侧面出风口204相适配。
如图15所示,在本发明的一个实施例中,优选地,通风通道1446为弧形结构。
在该实施例中,通风通道1446为弧形结构,通过圆柱旋转门1444旋转使弧形结构凹向或凸向圆柱旋转门1444所在的出风口的不同侧,能够改变出风口的出风方向,满足用户对空调器100多维出风方式的需求,提升用户的使用体验,且弧形结构的通风通道1446连通壳体20内部和外部打开中间出风口202或侧面出风口204时,有利于控制风轮30工作产生的风沿弧形结构的通风通道1446从中间出风口202或侧面出风口204的两侧面吹出至外部环境,进一步扩大了出风范围,有利于空调器100快速、均匀制热或制冷,维持室内温度不变,满足用户对空调器100快速实现制热或制冷舒适度的需求,提高用户使用的满意度。
如图12至图21所示,在本发明的一个实施例中,优选地,至少一个无风感出风板142为两个,两个无风感出风板142覆盖两个侧面出风口204;至少一个圆柱旋转门1444为两个,两个圆柱旋转门1444位于两个中间出风口202处。
在该实施例中,至少一个无风感出风板142为两个,两个无风感出风板142覆盖两个侧面出风口204,能够实现空调器100的两个侧面出风口204无风感出风,保证柔和出风提高用户使用的舒适度,且扩大了无风感出风的范围,提高用户使用的满意度,至少一个圆柱旋转门1444为两个,两个圆柱旋转门1444位于两个中间出风口202处,通过两个圆柱旋转门1444旋转使通风通道1446位于壳体20内部或连通壳体20内部和外部能够实现两个中间出风口202停止出风或常规吹风,进而使得常规出风时出风集中,有利于空调器100快速制冷或制热,维持室内温度均匀不变,通过覆盖两个侧面出风口204的两个无风感出风板142和位于两个中间出风口202处的两个圆柱旋转门1444相互配合,能够实现空调器100的无风感出风和综合出风,满足用户对空调器100多种出风方式和多种出风功能的追求,提高用户使用的舒适度, 提升用户的使用体验。
进一步地,两个侧面出风口204处覆盖两个无风感出风板142,扩大了无风感出风的范围,使无风感出风的范围分散,有利于用户分散地享受无风感出风的舒适,避免只有中间的出风口实现无风感出风用户需要集中在一起享受无风感出风而拥挤的问题,有效地提升了用户的使用体验,而位于中间的两个中间出风口202处设置有两个圆柱旋转门1444,使得通过圆柱旋转门1444的通风通道1446连通壳体20内部和外部时两个中间出风口202实现常规出风,能够快速实现制热或制热,维持室内的温度不变,并保证两个侧面出风口204的无风感出风范围处的温度均匀,进一步提高用户使用的满意度。而两个无风感出风板142对称的设置在位于中间的两个圆柱旋转门1444的两侧,有效地保证了空调器100外观的美观,提高用户使用的满意度。
如图19和图21所示,在本发明的一个实施例中,优选地,两个圆柱旋转门1444打开两个中间出风口202时,两个圆柱旋转门1444的两个弧形结构背向设置。
在该实施例中,两个圆柱旋转门1444打开两个中间出风口202时,两个圆柱旋转门1444的两个弧形结构背向设置,能够使从两个中间出风口202吹出的风交汇成一个出风区,且弧形结构背向设置减小了从两个弧形结构吹出至壳体20外部风的交汇范围,增大了从两个弧形结构吹出至壳体20外部风的出风范围,进而使从壳体20内部吹出的风在较大的范围内与外部的空气进行热量交换,使空调器100能够快速、均匀、较大范围地达到制热或制冷的舒适性,维持室内温度不变,提升用户的使用体验,提高用户使用的满意。
进一步地,也可以通过旋转两个圆柱旋转门1444使风轮30工作产生的风经两个弧形结构的通风通道1446吹出至外部环境后不交汇,进一步增大了两个中间出风口202的出风范围,提高空调器100达到制热或制冷舒适性的效率,提高用户使用的满意度。
如图13、图15、图18至图21所示,在本发明的一个实施例中,优选地,还包括:导风组件16,转动地设置在风道组件12内部,导风组件16包括分别位于每个中间出风口202和每个侧面出风口204之间的两个导风件162,每个导风件162转动分别与风道组件12的一侧相抵接能够将两个出风区分别 与两个中间出风口202相连通,两个导风件162转动与风道组件12的中间部分相抵接能够将两个出风区分别与两个侧面出风口204相连通。
在该实施例中,导风装置10还包括转动设置在风道组件12内部的导风组件16,导风组件16包括分别位于每个中间出风口202和每个侧面出风口204之间的两个导风件162,通过两个导风件162转动分别与风道组件12的两侧或中间部分相抵接将两个出风区与两个中间出风口202或两个侧面出风口204相连通,进一步地,两个导风件162均位于风道组件12的一侧和中间部分之间将两个出风区与四个出风口相连通,进而通过两个导风件162转动并配合两个圆柱旋转门1444打开或关闭两个侧面出风口204,能够实现空调器100的两个侧面出风口204的无风感出风、两个中间出风口202的常规出风以及四个出风口同时出风的综合出风,满足用户对空调器100多维出风方式和多种出风功能的追求,提高用户使用的满意度,同时保证风轮30工作产生的风全部通过正在进行出风动作的出风口吹出至壳体20外部,减小了出风过程中在壳体20内部的风量损失,提高了风轮30的工作效率,降低了使用成本,同时保证了充足的出风量,能够快速达到空调器100制热或制冷的舒适度,提升用户的使用体验。
一方面,如图18所示,通过两个导风件162转动与风道组件12的中间部分相抵接将两个出风区分别与两个侧面出风口204相连通,同时将两个出风区与两个中间出风口202阻断,使得两个风轮30工作产生的两个出风区的风全部通过两个侧面出风口204吹出至外部环境,实现了两个侧面出风口204无风感出风,保证了吹出至用户身上的风柔和,提高用户使用的舒适度,同时保证风轮30工作产生的风全部通过正在进行出风动作的两个侧面出风口204吹出至外部环境,减小了空调器100出风过程中在壳体20内部的风量损失,提高了风轮30的工作效率,降低了使用成本。进一步地,可以同时将两个圆柱旋转门1444旋转使通风通道1446位于壳体20内部关闭两个中间出风口202,进一步保证风轮30工作产生的风全部经无风感出风板142吹出至外部环境,提高出风效率,且避免了中间出风口202不出风圆柱旋转门1444旋转使通风通道1446连通壳体20内部和外部影响空调器100外观的美观,有效地提高了用户使用的满意度。
一方面,如图19所示,通过每个导风件162转动分别与风道组件12的一侧相抵接将两个出风区与两个中间出风口202相连通,同时将两个出风区与两个侧面出风口204阻断,在两个圆柱旋转门1444旋转使通风通道1446连通壳体20内部和外部打开两个中间出风口202时,两个风轮30工作产生的两个出风区的风全部通过通风通道1446吹出至外部环境,实现了两个中间出风口202常规出风,同时降低了风轮30工作产生的风在壳体20内部的风量损失,提高了风轮30的工作效率,并保证了从两个中间出风口202吹出至外部环境的风量充足,扩大了常规出风的范围,保证常规出风集中,使得充足、集中的风与外部环境进行热交换能够快速达到制热或制冷的舒适度,并维持室内温度不变,提升用户的使用体验,提高用户使用的满意度。
一方面,如图20所示,通过两个导风件162转动分别位于风道组件12的一侧和中间部分之间,使得两个风轮30工作产生的两个出风区分别与两个中间出风口202和两个侧面出风口204同时连通,在两个圆柱旋转门1444旋转使通风通道1446连通壳体20内部和外部打开两个中间出风口202时,两个风轮30工作产生的风经两个中间出风口202和两个侧面出风口204同时吹出至外部环境,实现了空调器100的综合出风,使得经两个侧面出风口204无风感出风板142吹出的柔和的风吹向用户,提高用户使用的舒适度,同时经两个中间出风口202吹出的风快速实现制冷或制热,维持室内温度不变,提升用户的使用体验,而由于两个导风件162位于两个出风区内部,通过两个导风件162将两个出风区进行划分能够保证两个侧面出风口204和两个中间出风口202的出风量充足,避免风轮30工作产生的风未经分流随意经侧面出风口204和中间出风口202吹出至外部环境存在部分出风口出风量不足的问题,有效地保证了良好的出风效果,提升用户的使用体验。
进一步地,通过两个导风件162将风轮30工作产生的风分流使得在保证经两个侧面出风口204的无风感出风板142吹出的风量充足后,大部分的风经两个中间出风口202处的圆柱旋转门1444的通风通道1446吹出至外部环境充分与外部环境的空气进行热交换,以使两个中间出风口202吹出的风快速制冷或制热,达到用户对空调器100制热或制冷舒适度的需求,而两个侧面出风口204柔和的风吹向用户能够提高用户的舒适感,进而提升用户的使 用体验,提高用户使用的满意度。
在本发明的一个实施例中,优选地,风道组件12的中间部分靠近每个风轮30的一侧设置有导向斜面122,每个导风件162转动与风道组件12的中间部分相抵接时与导向斜面122相连接。
在该实施例中,风道组件12的中间部分靠近两个风轮30的一侧设置有导向斜面122,通过两个导风件162转动与风道组件12的中间部分相抵接时与导向斜面122相连接,有利于风轮30工作产生的风在出风区内沿导向斜面122和导风件162经侧面出风口204顺畅、快速的吹出至壳体20外部,保证了充足的出风量和良好的出风效果,进而能够满足用户对空调器100无风感出风舒适度的需求,提高用户使用的满意度。
本发明第三方面的实施例提供了一种导风控制方法,用于空调器,空调器包括壳体、两个风轮以及上述第一方面实施例中任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的中间出风口和位于中间出风口两侧的两个侧面出风口,两个风轮工作时反方向转动以实现两个出风区,如图22所示的本发明的第一个实施例的导风控制方法的流程示意图,该导风控制方法包括:
步骤2202,检测出风模式指令;
步骤2204,根据出风模式指令,控制导风装置的至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态;
其中,壳体上安装有覆盖中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个滑动门。
本发明第三方面的实施例提供的用于空调器的导风控制方法,空调器包括壳体、两个风轮以及上述任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的出风口和位于中间出风口两侧的两个侧面出风口,两个风轮工作时反方向转动以实现两个出风区,导风控制方法为:通过检测出风模式指令,根据出风模式指令,控制导风装置的至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态,由于壳体上安装有覆盖中间出风口和两个侧面出风口的至少 一个无风感出风板和至少一个滑动门,使得两个风轮工作产生的风经无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮工作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,使得在滑动门关闭中间出风口和/或每个侧面出风口时风轮工作产生的风经无风感出风板吹向用户实现无风感出风,提高用户使用的舒适度,在滑动门打开中间出风口和/或每个侧面出风口时空调器能够实现综合出风,即风轮工作产生的风通过无风感出风板出风保证出风柔和,同时通过出风口直接出风使空调器快速与外部环境的空气进行热交换达到制热或制冷的舒适度,进一步提升用户的使用体验,提高用户使用的满意度。
进一步地,壳体为圆柱壳体,壳体的外周壁上设置有中间出风口和两个侧面出风口,且风门组件包括覆盖中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个滑动门,多个出风口与多个滑动门相配合能够满足用户对空调器多维出风方式的追求,同时至少一个无风感出风板和至少一个滑动门相配合能够实现无风感出风、无风感出风与常规出风相结合的综合出风方式,进一步提高用户使用的舒适度,提升用户的使用体验,且综合出风的方式,能够保证如杨柳微风般柔和的风吹向用户,同时保证室内温度均匀,避免较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大产品的使用范围,提高产品的市场竞争力,提升产品的卖点。进一步地,可以根据用户的需求设置不同数量的无风感出风板和不同数量的滑动门,且可以将不同数量的无风感出风板和不同数量的滑动门设置在中间出风口和每个侧面出风口处,以满足用户对空调器多种出风方式和多种出风功能的需求,扩大空调器的功能,提高用户使用的满意度。
在本发明的一个实施例中,优选地,至少一个无风感出风板为一个,一个无风感出风板覆盖中间出风口;至少一个滑动门为两个,两个滑动门沿壳体的周向滑动至不同位置将两个侧面出风口关闭或打开。
在该实施例中,至少一个无风感出风板为一个,一个无风感出风板覆盖中间出风口,能够实现中间出风口无风感出风,保证柔和出风提高用户使用的舒适度,至少一个滑动门为两个,两个滑动门沿壳体的周向滑动至不同位置将两个侧面出风口关闭或打开,能够实现侧面出风口停止出风或常规出风,保证快速的制冷或制热,维持室内温度均匀不变,通过覆盖中间出风口的无风感出风板和位于两个侧面出风口处的两个滑动门相互配合,能够实现空调器的无风感出风和综合出风,满足用户对空调器多种出风方式和多种出风功能的追求,提高用户使用的舒适度,提升用户的使用体验。
进一步地,无风感出风板位于两个滑动门的中间,保证了滑动门对称的设置在一个无风感出风板的两侧,进而保证了空调器外观的美观,提高用户使用的满意度。
如图22所示的本发明的第一个实施例的导风控制方法的流程示意图还包括:
步骤2206,根据出风模式指令,根据出风模式指令,控制导风装置的两个导风件转动至不同位置。
本发明提供的导风控制方法,通过根据出风模式指令,控制导风装置的两个导风件转动至不同位置,使得两个导风件转动分别与风道组件的两侧或中间部分相抵接将两个出风区与中间出风口或两个侧面出风口相连通,两个导风件均位于风道组件的一侧和中间部分之间将两个出风区与三个出风口相连通,进而通过两个导风件转动并配合两个滑动门打开或关闭两个侧面出风口,能够实现空调器的中间出风口的无风感出风、两个侧面出风口的常规出风以及三个出风口同时出风的综合出风,满足用户对空调器多维出风方式和多种出风功能的追求,提高用户使用的满意度,同时保证风轮工作产生的风全部通过正在进行出风动作的出风口吹出至壳体外部,减小了出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本,同时保证了充足的出风量,能够快速达到空调器制热或制冷的舒适度,提升用户的使用体验。
如图23所示的本发明的第二个实施例的导风控制方法的流程示意图,该导风控制方法包括:
步骤2302,检测出风模式指令;
步骤2304,根据无风感出风指令,控制每个滑动门沿壳体的周向滑动至关闭每个侧面出风口,控制两个风轮开始工作。
本发明提供的导风控制方法,出风模式指令为无风感出风指令,通过根据无风感出风指令,控制每个滑动门沿壳体的周向滑动至关闭每个侧面出风口,控制两个风轮开始工作,使得两个风轮工作产生的风经覆盖中间出风口的无风感出风板吹出至外部环境,由于风轮工作产生的风经无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,避免了两个风轮工作产生的风经中间出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的满意度,较柔和的风吹向用户有效地提升了用户使用的舒适度,提升用户的使用体验。
如图23所示的本发明的第二个实施例的导风控制方法的流程示意图还包括:
步骤2306,根据无风感出风指令,控制导风装置的每个导风件转动分别与风道组件的一侧相抵接将两个出风区与中间出风口相连通。
本发明提供的导风控制方法,通过根据无风感出风指令,控制导风装置的每个导风件转动分别与风道组件的一侧相抵接将两个出风区与中间出风口相连通,同时将两个出风区与两个侧面出风口阻断,使得在空调器执行无风感出风指令时,两个风轮工作产生的两个出风区的风全部通过中间出风口的无风感出风板吹出至外部环境,保证了吹出至用户身上的风柔和、缓慢,提高用户使用的舒适度,同时保证风轮工作产生的风全部通过正在进行出风动作的中间出风口吹出至外部环境,减小了空调器出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本。
如图24所示的本发明的第三个实施例的导风控制方法的流程示意图,该导风控制方法包括:
步骤2402,检测出风模式指令;
步骤2404,根据常规出风指令,控制每个滑动门沿壳体的周向滑动打开每个侧面出风口,控制两个导风件转动与风道组件的中间部分相抵接将两个出风区分别与两个侧面出风口相连通,控制两个风轮开始工作。
本发明提供的导风控制方法,出风模式指令为常规出风指令,通过根据常规出风指令,控制每个滑动门沿壳体的周向滑动打开每个侧面出风口,控制两个导风件转动与风道组件的中间部分相抵接将两个出风区分别与两个侧面出风口相连通,同时使两个出风区与中间出风口阻断,控制两个风轮开始工作,使得两个风轮工作产生的风经两个侧面出风口吹出至外部环境,实现了空调器的两个侧面出风口常规出风,同时两个风轮工作产生的两个出风区的风全部通过两个侧面出风口吹出至外部环境,减小了空调器在出风过程中壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本,同时保证了侧面出风口充足的出风量,能够快速达到空调器制热或制冷的舒适度,维持室内温度不变,提升用户的使用体验。
如图25所示的本发明的第四个实施例的导风控制方法的流程示意图,该导风控制方法包括:
步骤2502,检测出风模式指令;
步骤2504,根据综合出风指令,控制每个滑动门沿壳体的周向滑动打开每个侧面出风口,控制两个风轮开始工作。
本发明提供的导风控制方法,出风模式指令为综合出风指令,根据综合出风指令,控制每个滑动门沿壳体的周向滑动打开每个侧面出风口,控制两个风轮开始工作,使得风轮工作产生的风经覆盖中间出风口的无风感出风板吹向用户实现空调器的无风感出风,同时经两个侧面出风口吹出至外部环境与外部环境的空气快速进行热交换实现制冷或制热,并维持室内温度不变,提升用户的使用体验,提高用户使用的满意度,同时避免了较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大了产品的使用范围,提高产品的市场竞争力,提升产品的卖点。
如图25所示的本发明的第四个实施例的导风控制方法的流程示意图还包括:
步骤2506,根据综合出风指令,控制导风装置的每个导风件转动至风道组件的一侧和中间部分之间,将两个出风区与中间出风口、两个侧面出风口相连通。
本发明提供的导风控制方法,通过根据综合出风指令,控制导风装置的每个导风件转动至风道组件的一侧和中间部分之间,将两个出风区与中间出风口、两个侧面出风口相连通,由于两个导风件位于两个出风区内部,通过两个导风件将两个出风区进行划分能够保证两个侧面出风口和中间出风口的出风量充足,避免风轮工作产生的风未经分流随意经侧面出风口和中间出风口吹出至外部环境存在部分出风口出风量不足的问题,有效地保证了良好的出风效果,提升用户的使用体验。进一步地,通过两个导风件将风轮工作产生的风分流使得在保证经中间出风口的无风感出风板吹出的风量充足后,大部分的风经两个侧面出风口吹出至外部环境充分与外部环境的空气进行热交换,以达到侧面出风口快速实现制冷或制热,达到用户对空调器制热或制冷舒适度的需求,而中间出风口柔和的风吹向用户能够提高用户的舒适感,进而提升用户的使用体验,提高用户使用的满意度。
如图26所示的本发明的第五个实施例的导风控制方法的流程示意图,该导风控制方法包括:
步骤2602,检测出风模式指令;
步骤2604,根据停止出风指令,控制两个风轮停止工作,控制两个导风件停止转动,控制两个滑动门沿壳体的周向滑动关闭两个侧面出风口。
本发明提供的导风控制方法,出风模式指令为停止出风指令,通过根据停止出风指令,控制两个风轮停止工作停止产生风,控制两个导风件停止转动,避免了导风件在停止出风指令状态下一直转动浪费能源并产生噪音而影响用户的使用,提高了用户使用的满意度,同时控制两个滑动门沿壳体的周向滑动关闭两个侧面出风口,避免空调器为停止出风状态时,两个侧面出风口暴露在外影响空调器外观的美观且容易使壳体内部落入灰尘,有效地保证了空调器外观的美观且保证壳体内部的清洁,提高用户使用的满意度,提高产品的质量。
进一步地,空调器在停止出风指令状态时,导风装置的两个导风件可以转动至任一位置后停止,具体地,两个导风件可以转动至与风轮组件的两侧相抵接将两个风轮的两个出风区与中间出风口相连通并与两个侧面出风口阻断,进而使得空调器在执行无风感出风指令时直接控制风轮工作即 可实现无风感出风,无需控制导风件转动,提高了空调器的控制速度,提高用户使用的满意度。
本发明第第四方面的实施例提供了一种导风控制方法,用于空调器,空调器包括壳体、两个风轮以及上述第二方面实施例中任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口,两个风轮工作时反方向转动以实现两个出风区,如图27所示的本发明的第六个实施例的导风控制方法的流程示意图,该导风控制方法包括:
步骤2702,检测出风模式指令;
步骤2704,根据出风模式指令,控制导风装置的至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态;
其中,壳体上安装有覆盖两个中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个圆柱旋转门。
本发明第二方面的实施例提供的用于空调器的导风控制方法,空调器包括壳体、两个风轮以及上述任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口,两个风轮工作时反方向转动以实现两个出风区,导风控制方法为:通过检测出风模式指令,根据出风模式指令,控制导风装置的至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,控制两个风轮的工作状态,由于壳体上安装有覆盖两个中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个圆柱旋转门,使得两个风轮工作产生的风经覆盖每个中间出风口和/或每个侧面出风口的无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮工作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,使得在圆柱旋转门旋转关闭每个中间出风口和/或 每个侧面出风口时风轮工作产生的风经无风感出风板吹向用户实现无风感出风,提高用户使用的舒适度,在圆柱门旋转门旋转打开每个中间出风口和/或每个侧面出风口时空调器能够实现综合出风,即通过无风感出风板出风保证出风柔和,同时通过圆柱旋转门的通风通道吹出的风量充足、范围较广的风快速与外部环境的空气进行热交换能够快速达到制热或制冷的舒适度,提升用户的使用体验。
进一步地,通过圆柱旋转门旋转以通风通道的不同位置连通壳体内部和外部能够改变出风口的出风方向,满足用户对空调器多维出风方式的追求,同时避免了通过百叶组件进行导风使出风范围受限,有效地扩大了出风范围,保证了充足的出风量和较广的出风范围,进而能够实现快速制热或制冷,提升用户的使用体验。
进一步地,壳体为圆柱壳体,壳体的外周壁上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口,且风门组件包括覆盖两个中间出风口和两个侧面出风口的至少一个无风感出风板和至少一个圆柱旋转门,多个出风口与多个圆柱旋转门相配合能够满足用户对空调器多维出风方式的追求,同时至少一个无风感出风板和至少一个圆柱旋转门相配合能够实现无风感出风、无风感出风与常规出风相结合的综合出风方式,进一步提高用户使用的舒适度,提升用户的使用体验,且综合出风的方式,能够保证如杨柳微风般柔和的风吹向用户,同时保证室内温度均匀,避免较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大产品的使用范围,提高产品的市场竞争力,提升产品的卖点。进一步地,可以根据用户的需求设置不同数量的无风感出风板和不同数量的圆柱旋转门,且将不同数量的无风感出风板和不同数量的圆柱旋转门设置在每个中间出风口和每个侧面出风口处,以满足用户对空调器多种出风方式和多种出风功能的需求,扩大空调器的功能,提高用户使用的满意度。
在本发明的一个实施例中,优选地,至少一个无风感出风板为两个,两个无风感出风板覆盖两个侧面出风口;至少一个圆柱旋转门为两个,两个圆柱旋转门位于两个中间出风口处。
在该实施例中,至少一个无风感出风板为两个,两个无风感出风板覆盖两个侧面出风口,能够实现空调器的两个侧面出风口无风感出风,保证柔和出风提高用户使用的舒适度,且扩大了无风感出风的范围,提高用户使用的满意度,至少一个圆柱旋转门为两个,两个圆柱旋转门位于两个中间出风口处,通过两个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部能够实现两个中间出风口停止出风或常规吹风,进而使得常规出风时出风集中,有利于空调器快速制冷或制热,维持室内温度均匀不变,通过覆盖两个侧面出风口的两个无风感出风板和位于两个中间出风口处的两个圆柱旋转门相互配合,能够实现空调器的无风感出风和综合出风,满足用户对空调器多种出风方式和多种出风功能的追求,提高用户使用的舒适度,提升用户的使用体验。
进一步地,两个侧面出风口处覆盖两个无风感出风板,扩大了无风感出风的范围,使无风感出风的范围分散,有利于用户分散地享受无风感出风的舒适,避免只有中间的出风口实现无风感出风用户需要集中在一起享受无风感出风而拥挤的问题,有效地提升了用户的使用体验,而位于中间的两个中间出风口处设置有两个圆柱旋转门,使得通过圆柱旋转门的通风通道连通壳体内部和外部时两个中间出风口实现常规出风,能够快速实现制热或制热,维持室内的温度不变,并保证两个侧面出风口的无风感出风范围处的温度均匀,进一步提高用户使用的满意度。而两个无风感出风板对称的设置在位于中间的两个圆柱旋转门的两侧,有效地保证了空调器外观的美观,提高用户使用的满意度。
如图27所示的本发明的第六个实施例的导风控制方法的流程示意图还包括:
步骤2706,根据出风模式指令,控制导风装置的两个导风件转动至不同位置。
本发明提供的导风控制方法,通过根据出风模式指令,控制导风装置的两个导风件转动至不同位置,使得两个导风件转动分别与风道组件的两侧或中间部分相抵接将两个出风区与两个中间出风口或两个侧面出风口相连通,每个导风件均位于风道组件的一侧和中间部分之间将两个出风区与四个出风 口相连通,进而通过两个导风件转动并配合两个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部打开或关闭两个中间出风口,能够实现空调器的两个侧面出风口无风感出风、两个中间出风口常规出风以及四个出风口同时出风的综合出风,满足用户对空调器多维出风方式和多种出风功能的追求,提高用户使用的满意度,同时保证风轮工作产生的风全部通过正在进行出风动作的出风口吹出至壳体外部,减小了出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本,同时保证了充足的出风量,能够快速达到空调器制热或制冷的舒适度,提升用户的使用体验。
如图28所示的本发明的第七个实施例的导风控制方法的流程示意图,该导风控制方法包括:
步骤2802,检测出风模式指令;
步骤2804,根据无风感出风指令,控制每个圆柱旋转门旋转使通风通道位于壳体内部关闭每个中间出风口,控制两个风轮开始工作。
本发明提供的导风控制方法,出风模式指令为无风感出风指令,通过根据无风感出风指令,控制每个圆柱旋转门旋转使通风通道位于壳体内部关闭每个中间出风口,控制两个风轮开始工作,使得两个风轮工作产生的风经覆盖两个侧面出风口的无风感出风板吹出至外部环境,由于风轮工作产生的风经无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,避免了两个风轮工作产生的风经侧面出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的满意度,较柔和的风吹向用户有效地提升了用户使用的舒适度,提升用户的使用体验,且两个侧面出风口同时实现无风感出风,扩大了无风感出风的范围,提高用户使用的满意度。
如图28所示的本发明的第七个实施例的导风控制方法的流程示意图还包括:
步骤2806,根据无风感出风指令,控制导风装置的两个导风件转动与风道组件的中间部分相抵接将两个出风区分别与两个侧面出风口相连通。
本发明提供的导风控制方法,通过根据无风感出风指令,控制导风装置的两个导风件转动与风道组件的中间部分相抵接将两个出风区分别与两个侧 面出风口相连通,同时将两个出风区与中间出风口阻断,使得空调器在执行无风感出风指令时,两个风轮工作产生的两个出风区的风全部通过两个侧面出风口的无风感出风板吹出至外部环境,保证了吹出至用户身上的风柔和,提高用户使用的舒适度,同时保证风轮工作产生的风全部通过正在进行出风动作的两个侧面出风口吹出至外部环境,减小了空调器出风过程中在壳体内部的风量损失,提高了风轮的工作效率,降低了使用成本。
如图29所示的本发明的第八个实施例的导风控制方法的流程示意图,该导风控制方法包括:
步骤2902,检测出风模式指令;
步骤2904,根据常规出风指令,控制每个圆柱旋转门旋转使通风通道连通壳体内部和外部打开每个中间出风口,控制每个导风件转动分别与风道组件的一侧相抵接将两个出风区分别与两个中间出风口相连通,控制两个风轮开始工作。
本发明提供的导风控制方法,出风模式指令为常规出风指令,通过根据常规出风指令,控制每个圆柱旋转门旋转使通风通道连通壳体内部和外部打开每个中间出风口,控制每个导风件转动与风道组件的一侧相抵接将两个出风区分别与两个中间出风口相连通,同时使两个出风区与两个侧面出风口阻断,控制两个风轮开始工作,使得两个风轮工作产生的风经两个中间出风口吹出至外部环境,实现了空调器的两个中间出风口常规出风,同时降低了风轮工作产生的风在壳体内部的风量损失,提高了风轮的工作效率,并保证了从两个中间出风口吹出至外部环境的风量充足,扩大了常规出风的范围,保证常规出风集中,使得充足、集中的风与外部环境进行热交换能够快速达到制热或制冷的舒适度,并维持室内温度不变,提升用户的使用体验,提高用户使用的满意度。
进一步地,可以通过控制圆柱旋转门的通风通道以不同位置连通壳体内部和外部打开每个中间出风口,实现每个中间出风口的出风方向不同,满足用户对空调器多维出风方式的追求,进一步地,可以将圆柱旋转门的通风通道设置为弧形结构,可以通过圆柱旋转门旋转使弧形结构凹向或凸向两个中间出风口的中间部分使两个中间出风口的出风方向不同,满足用户对空调器 多维出风方式的需求,提升用户的使用体验。
如图30所示的本发明的第九个实施例的导风控制方法的流程示意图,该导风控制方法包括:
步骤3002,检测出风模式指令;
步骤3004,根据综合出风指令,控制每个圆柱旋转门旋转使通风通道连通壳体内部和外部打开每个中间出风口,控制两个风轮开始工作。
本发明提供的导风控制方法,出风模式指令为综合出风指令,通过根据综合出风指令,控制每个圆柱旋转门旋转使通风通道连通壳体内部和外部打开每个中间出风口,控制两个风轮开始工作,使得风轮工作产生的风经覆盖每个侧面出风口的每个无风感出风板吹向用户实现空调器的两个侧面出风口无风感出风,保证用户使用的舒适度,同时经两个中间出风口吹出至外部环境与外部环境的空气快速进行热交换实现制冷或制热,并维持室内温度不变,提升用户的使用体验,避免了较硬的冷风或较干的热风直接吹向用户容易引起用户感冒伤风或咳嗽的问题,进而保证了用户的身体健康,提高用户使用的舒适度,更适用于儿童、老人使用,扩大了产品的使用范围,提高产品的市场竞争力,提升产品的卖点。
如图30所示的本发明的第九个实施例的导风控制方法的流程示意图还包括:
步骤3006,根据综合出风指令,控制导风装置的每个导风件转动至风道组件的一侧和中间部分之间,将两个出风区分别与两个中间出风口、两个侧面出风口相连通。
本发明提供的导风控制方法,通过根据综合出风指令,控制导风装置的每个导风件转动至风道组件的一侧和中间部分之间,将两个出风区与中间出风口、两个侧面出风口相连通,由于两个导风件位于两个出风区内部,通过两个导风件将两个出风区进行划分能够保证两个侧面出风口和两个中间出风口的出风量充足,避免风轮工作产生的风未经分流随意经侧面出风口和中间出风口吹出至外部环境存在部分出风口出风量不足的问题,有效地保证了良好的出风效果,提升用户的使用体验。进一步地,通过两个导风件将风轮工作产生的风分流使得在保证经两个侧面出风口的无风感出风板吹出的风量充 足后,大部分的风经两个中间出风口处的圆柱旋转门的通风通道吹出至外部环境充分与外部环境的空气进行热交换,以使两个中间出风口吹出的风快速制冷或制热,达到用户对空调器制热或制冷舒适度的需求,而两个侧面出风口柔和的风吹向用户能够提高用户的舒适感,进而提升用户的使用体验,提高用户使用的满意度。
如图31所示的本发明的第十个实施例的导风控制方法的流程示意图,该导风控制方法包括:
步骤3102,检测出风模式指令;
步骤3104,根据停止出风指令,控制两个风轮停止工作,控制两个导风件停止转动,控制每个圆柱旋转门旋转使通风通道位于壳体内部关闭每个中间出风口。
本发明提供的导风控制方法,出风模式指令为停止出风指令,通过根据停止出风指令,控制两个风轮停止工作停止产生风,控制两个导风件停止转动,避免了导风件在停止出风指令状态下一直转动浪费能源并产生噪音而影响用户的使用,提高了用户使用的满意度,同时控制两个圆柱旋转门旋转使通风通道位于壳体内部关闭两个中间出风口,避免空调器为停止出风状态时,两个中间出风口暴露在外影响空调器外观的美观且容易使壳体内部落入灰尘,有效地保证了空调器外观的美观且保证壳体内部的清洁,提高用户使用的满意度,提高产品的质量。
进一步地,空调器在停止出风指令状态时,导风装置的两个导风件可以转动至任一位置后停止,具体地,两个导风件可以转动至与风道组件的中间部分相抵接将两个风轮的两个出风区与两个侧面出风口相连通并与两个中间出风口阻断,进而使得空调器在执行无风感出风指令时直接控制风轮工作即可实现无风感出风,无需控制导风件转动,提高了空调器的控制速度,提高用户使用的满意度。
根据本发明的第五方面实施例,还提出了一种空调器,包括:壳体,壳体的外周壁上设置有位于中间的中间出风口和位于中间出风口两侧的两个侧面出风口;两个风轮,两个风轮工作时反方向转动以实现两个出风区;以及上述第一方面实施例中任一技术方案所述的导风装置。
本发明第五方面的实施例提供的空调器,包括壳体、两个风轮以及上述第一方面实施例中任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的中间出风口和位于中间出风口两侧的两个侧面出风口,两个风轮工作时反向转动以实现两个出风区的两个风轮。本发明第五方面的实施例提供的空调器因包括第一方面实施例提供的导风装置,因而具有第一方面实施例提供的导风装置的全部有益技术效果,在此不再赘述。
在本发明的一个实施例中,优选地,还包括:检测装置,设置在壳体上,用于检测出风模式指令;控制器,设置在壳体上,与两个风轮、至少一个滑动门、导风装置的两个导风件相连接,并根据出风模式指令对两个风轮、至少一个滑动门、两个导风件进行控制;其中,出风模式指令包括无风感出风指令、常规出风指令、综合出风指令、停止出风指令。
在该实施例中,空调器还包括检测装置和控制器,通过检测装置设置在壳体上,检测出风模式指令,控制器设置在壳体上,与两个风轮、至少一个滑动门、导风装置的两个导风件相连接,并根据检测装置检测出的无风感出风指令、常规出风指令、综合出风指令、停止出风指令对两个风轮、至少一个滑动门、两个导风件进行控制,使得两个风轮工作产生的风经无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮工作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个滑动门沿壳体的周向滑动至不同位置将中间出风口和/或每个侧面出风口关闭或打开,使得在滑动门关闭中间出风口和/或每个侧面出风口时风轮工作产生的风经无风感出风板吹向用户实现无风感出风,提高用户使用的舒适度,在滑动门打开中间出风口和/或每个侧面出风口时空调器能够实现综合出风,即通过无风感出风板出风保证出风柔和,同时通过出风口直接出风使空调器快速与外部环境的空气进行热交换达到制热或制冷的舒适度,进一步提升用户的使用体验,提高用户使用的满意度。
在具体实施例中,当空调器的检测装置检测到无风感出风指令或停止出风指令时,滑动门并不滑动,空调器外观无变化,所以用户从外部用眼无法 识别空调器具体执行的是无风感出风指令还是停止出风指令,只是当空调器壳体内部的风轮工作和导风组件转动实现具体的无风感出风指令以保证柔和的风吹向用户,提高用户使用的满意度;同样的,当空调器的检测装置检测到常规出风指令或综合出风指令时,滑动门均滑动使两个侧面出风口打开,所以用户从外部无法用眼识别空调器具体执行的是常规出风指令还是综合出风指令,只是空调器内部的导风组件转动具体实现不同功能的出风指令,满足用户的不同需求,提高用户使用的满意度。
根据本发明的第六方面实施例,还提出了一种空调器,包括:壳体,壳体的外周壁上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口;两个风轮,两个风轮工作时反方向转动以实现两个出风区;以及上述第二方面实施例中任一技术方案所述的导风装置。
本发明第六方面的实施例提供的空调器,包括壳体、两个风轮以及上述第二方面实施例中任一技术方案所述的导风装置,壳体的外周壁上设置有位于中间的两个中间出风口和位于两个中间出风口两侧的两个侧面出风口,两个风轮工作时反向转动以实现两个出风区的两个风轮。本发明第六方面的实施例提供的空调器因包括第二方面实施例提供的导风装置,因而具有第二方面实施例提供的导风装置的全部有益技术效果,在此不再赘述。
在本发明的一个实施例中,优选地,还包括:检测装置,设置在壳体上,用于检测出风模式指令;控制器,设置在壳体上,与两个风轮、至少一个圆柱旋转门、导风装置的两个导风件相连接,并根据出风模式指令对两个风轮、至少一个圆柱旋转门、两个导风件进行控制;其中,出风模式指令包括无风感出风指令、常规出风指令、综合出风指令、停止出风指令。
在该实施例中,空调器还包括检测装置和控制器,通过检测装置设置在壳体上,检测出风模式指令,控制器设置在壳体上,与两个风轮、至少一个圆柱旋转门、导风装置的两个导风件相连接,并根据检测装置检测出的无风感出风指令、常规出风指令、综合出风指令、停止出风指令对两个风轮、至少一个圆柱旋转门、两个导风件进行控制,使得两个风轮工作产生的风经无风感出风板的多个通孔被疏散成众多低速、均匀的气丝蔓延至壳体外部吹向用户,出风柔和且稳定,实现了无风感出风,避免了两个风轮工 作产生的风经出风口直接吹向用户因冷风较硬、热风较干而影响用户使用的舒适度,有效地提升了用户的使用体验;通过至少一个圆柱旋转门旋转使通风通道位于壳体内部或连通壳体内部和外部将每个中间出风口和/或每个侧面出风口关闭或打开,使得在圆柱旋转门旋转关闭每个中间出风口和/或每个侧面出风口时风轮工作产生的风经无风感出风板吹向用户实现无风感出风,提高用户使用的舒适度,在圆柱门旋转门旋转打开每个中间出风口和/或每个侧面出风口时空调器能够实现综合出风,即通过无风感出风板出风保证出风柔和,同时通过圆柱旋转门的通风通道吹出的风量充足、范围较广的风快速与外部环境的空气进行热交换能够快速达到制热或制冷的舒适度,提升用户的使用体验。
在具体实施例中,当空调器的检测装置检测到无风感出风指令或停止出风指令时,圆柱旋转门并不转动,空调器外观无变化,所以用户从外部用眼无法识别空调器具体执行的是无风感出风指令还是停止出风指令,只是当空调器壳体内部的风轮工作和导风组件转动实现具体的无风感出风指令以保证柔和的风吹向用户,提高用户使用的满意度;同样的,当空调器的检测装置检测到常规出风指令或综合出风指令时,两个圆柱旋转门均旋转使通风通道连通壳体内部和外部打开每个中间出风口,所以用户从外部无法用眼识别空调器具体执行的是常规出风指令还是综合出风指令,只是空调器壳体内部的导风组件转动具体实现不同功能的出风指令,满足用户的不同需求,提高用户使用的满意度。
如图32所示,根据本发明的第七方面的实施例,还提出了一种计算机设备200,包括存储器202、处理器204及存储在存储器202上并可在处理器204上运行的计算机程序,处理器204用于执行上述第三方面实施例或第四方面实施例的导风控制方法中任一项方法的步骤。
本发明第七方面的实施例提供的计算机设备200,包括存储器202、处理器204及存储在存储器202上并可在处理器204上运行的计算机程序,处理器204用于执行上述第三方面实施例或第四方面实施例的导风控制方法中任一项方法的步骤。因本发明第七方面的实施例提供的计算机设备200的处理器204能够执行第三方面实施例或第四方面实施例的导风控制 方法中任一项方法的步骤,因此,具备第三方面实施例或第四方面实施例所述的导风控制方法的全部有益技术效果,在此不再赘述。
根据本发明的第八方面的实施例,还提出了一种计算可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现了上述第三方面实施例或第四方面实施例的导风控制方法中任一项方法的步骤。
本发明第八方面的实施例提供的计算机可读存储介质,其上存储有计算机程序,计算机程序被处理器执行时实现了上述第三方面实施例或第四方面实施例的导风控制方法中任一项方法的步骤。因本发明第八方面的实施例提供的计算机可读存储介质的计算机程序被处理器执行能够实现上述第三方面实施例或第四方面实施例的导风控制方法任一项方法的步骤,因此,具备第三方面实施例或第四方面实施例所述的导风控制方法的全部有益技术效果,在此不再赘述。
在本发明的描述中,需要理解的是,术语“中心”、“长度”、“宽度”、“上”、“下”、“竖直”、“水平”、“顶”、“底”、“内”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
在本发明中,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”、“固定”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或成一体;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。
在本发明中,除非另有明确的规定和限定,第一特征在第二特征之“上”或之“下”可以包括第一和第二特征直接接触,也可以包括第一和第二特征不是直接接触而是通过它们之间的另外的特征接触。而且,第一特征在第二特征“之上”、“上方”和“上面”包括第一特征在第二特征正上方和斜上方,或仅仅表示第一特征水平高度高于第二特征。第一特征在第二特征“之下”、“下方”和“下面”包括第一特征在第二特征正下方和斜下方,或仅仅表示第一特征水平高度小于第二特征。
以上对本发明的石墨锅具及其制作方法进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述。以上实施例的说明只是用于帮助理解本发明的核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。

Claims (40)

  1. 一种导风装置,用于空调器,所述空调器包括壳体和两个风轮,所述壳体的外周壁上设置有位于中间的中间出风口和位于所述中间出风口两侧的两个侧面出风口,两个所述风轮工作时反方向转动以实现两个出风区,其特征在于,所述导风装置包括:
    风道组件,设置在所述壳体内部,两个所述风轮安装在所述风道组件内部;
    风门组件,安装在所述壳体上,包括覆盖所述中间出风口和两个所述侧面出风口的至少一个无风感出风板和至少一个滑动门;
    其中,所述至少一个无风感出风板设置有多个通孔,所述至少一个滑动门沿所述壳体的周向滑动至不同位置能够将所述中间出风口和/或每个所述侧面出风口关闭或打开。
  2. 根据权利要求1所述的导风装置,其特征在于,
    所述至少一个无风感出风板的形状与所述中间出风口或每个所述侧面出风口相适配,并位于所述中间出风口或每个所述侧面出风口处。
  3. 根据权利要求1所述的导风装置,其特征在于,
    所述至少一个无风感出风板位于所述中间出风口或每个所述侧面出风口的外侧,并连通所述壳体的上端和下端。
  4. 根据权利要求1所述的导风装置,其特征在于,
    所述至少一个无风感出风板为一个,一个所述无风感出风板覆盖所述中间出风口;
    所述至少一个滑动门为两个,两个所述滑动门沿所述壳体的周向滑动至不同位置将两个所述侧面出风口关闭或打开。
  5. 根据权利要求4所述的导风装置,其特征在于,
    两个所述滑动门位于两个所述侧面出风口的外侧,两个所述滑动门沿所述壳体的周向滑动至相连接关闭所述中间出风口和两个所述侧面出风口。
  6. 根据权利要求4所述的导风装置,其特征在于,还包括:
    两个百叶组件,设置在所述壳体内部,分别与每个所述侧面出风口相对设置。
  7. 根据权利要求1至6中任一项所述的导风装置,其特征在于,还包括:
    导风组件,转动地设置在所述风道组件内部,所述导风组件包括分别位于所述中间出风口和每个所述侧面出风口之间的两个导风件,每个所述导风件转动分别与所述风道组件的一侧相抵接能够将两个所述出风区与所述中间出风口相连通,两个所述导风件转动与所述风道组件的中间部分相抵接能够将两个所述出风区分别与两个所述侧面出风口相连通。
  8. 根据权利要求7所述的导风装置,其特征在于,
    所述风道组件的中间部分靠近两个所述风轮的一侧设置有导向斜面,两个所述导风件转动与所述风道组件的中间部分相抵接时与所述导向斜面相连接。
  9. 一种导风装置,用于空调器,所述空调器包括壳体和两个风轮,所述壳体上设置有位于中间的两个中间出风口和位于两个所述中间出风口两侧的两个侧面出风口,两个所述风轮工作时反方向转动以实现两个出风区,其特征在于,所述导风装置包括:
    风道组件,设置在所述壳体内部,两个所述风轮安装在所述风道组件内部;
    风门组件,安装在所述壳体上,包括覆盖两个所述中间出风口和两个所述侧面出风口的至少一个无风感出风板和至少一个圆柱旋转门;
    其中,所述至少一个无风感出风板设置有多个通孔,所述至少一个圆柱旋转门设置有通风通道,所述圆柱旋转门旋转使所述通风通道位于所述壳体内部或连通所述壳体内部和外部能够将每个所述中间出风口和/或每个所述侧面出风口关闭或打开。
  10. 根据权利要求9所述的导风装置,其特征在于,
    所述至少一个无风感出风板的形状与每个所述中间出风口或每个所述侧面出风口相适配,并位于每个所述中间出风口或每个所述侧面出风口处。
  11. 根据权利要求9所述的导风装置,其特征在于,
    所述至少一个无风感出风板位于每个所述中间出风口或每个所述侧面出 风口的外侧,并连通所述壳体的上端和下端。
  12. 根据权利要求9所述的导风装置,其特征在于,
    所述通风通道为弧形结构。
  13. 根据权利要求9所述的导风装置,其特征在于,
    所述至少一个无风感出风板为两个,两个所述无风感出风板覆盖两个所述侧面出风口;
    所述至少一个圆柱旋转门为两个,两个所述圆柱旋转门位于两个所述中间出风口处。
  14. 根据权利要求13所述的导风装置,其特征在于,
    两个所述圆柱旋转门打开两个所述中间出风口时,两个所述圆柱旋转门的两个所述弧形结构背向设置。
  15. 根据权利要求9至14中任一项所述的导风装置,其特征在于,还包括:
    导风组件,转动地设置在所述风道组件内部,所述导风组件包括分别位于每个所述中间出风口和每个所述侧面出风口之间的两个导风件,每个所述导风件转动分别与所述风道组件的一侧相抵接能够将两个所述出风区分别与两个所述中间出风口相连通,两个所述导风件转动与所述风道组件的中间部分相抵接能够将两个所述出风区分别与两个所述侧面出风口相连通。
  16. 根据权利要求15所述的导风装置,其特征在于,
    所述风道组件的中间部分靠近每个所述风轮的一侧设置有导向斜面,每个所述导风件转动与所述风道组件的中间部分相抵接时与所述导向斜面相连接。
  17. 一种导风控制方法,用于空调器,所述空调器包括壳体、两个风轮以及如权利要求1至8中任一项所述的导风装置,所述壳体的外周壁上设置有位于中间的中间出风口和位于所述中间出风口两侧的两个侧面出风口,两个所述风轮工作时反方向转动以实现两个出风区,其特征在于,所述导风控制方法包括:
    检测出风模式指令;
    根据所述出风模式指令,控制所述导风装置的至少一个滑动门沿所述壳 体的周向滑动至不同位置将所述中间出风口和/或每个所述侧面出风口关闭或打开,控制两个所述风轮的工作状态;
    其中,所述壳体上安装有覆盖所述中间出风口和两个所述侧面出风口的至少一个无风感出风板和至少一个滑动门。
  18. 根据权利要求17所述的导风控制方法,其特征在于,
    所述至少一个无风感出风板为一个,一个所述无风感出风板覆盖所述中间出风口;
    所述至少一个滑动门为两个,两个所述滑动门沿所述壳体的周向滑动至不同位置将两个所述侧面出风口关闭或打开。
  19. 根据权利要求18所述的导风控制方法,其特征在于,还包括:
    根据所述出风模式指令,控制所述导风装置的两个导风件转动至不同位置。
  20. 根据权利要求18所述的导风控制方法,其特征在于,所述出风模式指令为无风感出风指令,所述根据所述出风模式指令,控制所述导风装置的至少一个滑动门沿所述壳体的周向滑动至不同位置将所述中间出风口和/或每个所述侧面出风口关闭或打开,控制两个所述风轮的工作状态的具体步骤包括:
    根据所述无风感出风指令,控制每个所述滑动门沿所述壳体的周向滑动至关闭每个所述侧面出风口,控制两个所述风轮开始工作。
  21. 根据权利要求20所述的导风控制方法,其特征在于,还包括:
    根据所述无风感出风指令,控制所述导风装置的每个导风件转动分别与所述风道组件的一侧相抵接将两个所述出风区与所述中间出风口相连通。
  22. 根据权利要求19所述的导风控制方法,其特征在于,所述出风模式指令为常规出风指令,所述根据所述出风模式指令,控制所述导风装置的至少一个滑动门沿所述壳体的周向滑动至不同位置将所述中间出风口和/或每个所述侧面出风口关闭或打开,控制两个所述风轮的工作状态,根据所述出风模式指令,控制所述导风装置的两个导风件转动至不同位置的具体步骤包括:
    根据所述常规出风指令,控制每个所述滑动门沿所述壳体的周向滑动打开每个所述侧面出风口,控制两个所述导风件转动与所述风道组件的中间部 分相抵接将两个所述出风区分别与两个所述侧面出风口相连通,控制两个所述风轮开始工作。
  23. 根据权利要求18所述的导风控制方法,其特征在于,所述出风模式指令为综合出风指令,所述根据所述出风模式指令,所述根据所述出风模式指令,控制所述导风装置的至少一个滑动门沿所述壳体的周向滑动至不同位置将所述中间出风口和/或每个所述侧面出风口关闭或打开,控制两个所述风轮的工作状态的具体步骤包括:
    根据所述综合出风指令,控制每个所述滑动门沿所述壳体的周向滑动打开每个所述侧面出风口,控制两个所述风轮开始工作。
  24. 根据权利要求23所述的导风控制方法,其特征在于,还包括:
    根据所述综合出风指令,控制所述导风装置的每个导风件转动至所述风道组件的一侧和中间部分之间,将两个所述出风区与所述中间出风口、两个所述侧面出风口相连通。
  25. 根据权利要求19所述的导风控制方法,其特征在于,所述出风模式指令为停止出风指令,所述根据所述出风模式指令,控制所述导风装置的至少一个滑动门沿所述壳体的周向滑动至不同位置将所述中间出风口和/或每个所述侧面出风口关闭或打开,控制两个所述风轮的工作状态,根据所述出风模式指令,控制所述导风装置的两个导风件转动至不同位置的具体步骤包括:
    根据所述停止出风指令,控制两个所述风轮停止工作,控制两个所述导风件停止转动,控制两个所述滑动门沿所述壳体的周向滑动关闭两个所述侧面出风口。
  26. 一种导风控制方法,用于空调器,所述空调器包括壳体、两个风轮以及如权利要求9至16中任一项所述的导风装置,所述壳体的外周壁上设置有位于中间的两个中间出风口和位于两个所述中间出风口两侧的两个侧面出风口,两个所述风轮工作时反方向转动以实现两个出风区,其特征在于,所述导风控制方法包括:
    检测出风模式指令;
    根据所述出风模式指令,控制所述导风装置的至少一个圆柱旋转门旋转使通风通道位于所述壳体内部或连通所述壳体内部和外部将每个所述中间出 风口和/或每个所述侧面出风口关闭或打开,控制两个所述风轮的工作状态;
    其中,所述壳体上安装有覆盖两个所述中间出风口和两个所述侧面出风口的至少一个无风感出风板和至少一个圆柱旋转门。
  27. 根据权利要求26所述的导风控制方法,其特征在于,
    所述至少一个无风感出风板为两个,两个所述无风感出风板覆盖两个所述侧面出风口;
    所述至少一个圆柱旋转门为两个,两个所述圆柱旋转门位于两个所述中间出风口处。
  28. 根据权利要求27所述的导风控制方法,其特征在于,还包括:
    根据所述出风模式指令,控制所述导风装置的两个导风件转动至不同位置。
  29. 根据权利要求27所述的导风控制方法,其特征在于,所述出风模式指令为无风感出风指令,所述根据所述出风模式指令,控制所述导风装置的至少一个圆柱旋转门旋转使通风通道位于所述壳体内部或连通所述壳体内部和外部将每个所述中间出风口和/或每个所述侧面出风口关闭或打开,控制两个所述风轮的工作状态的具体步骤包括:
    根据所述无风感出风指令,控制每个所述圆柱旋转门旋转使所述通风通道位于所述壳体内部关闭每个所述中间出风口,控制两个所述风轮开始工作。
  30. 根据权利要求29所述的导风控制方法,其特征在于,还包括:
    根据所述无风感出风指令,控制所述导风装置的两个所述导风件转动与所述风道组件的中间部分相抵接将两个所述出风区分别与两个所述侧面出风口相连通。
  31. 根据权利要求28所述的导风控制方法,其特征在于,所述出风模式指令为常规出风指令,所述根据所述出风模式指令,控制所述导风装置的至少一个圆柱旋转门旋转使通风通道位于所述壳体内部或连通所述壳体内部和外部将每个所述中间出风口和/或每个所述侧面出风口关闭或打开,控制两个所述风轮的工作状态,根据所述出风模式指令,控制所述导风装置的两个导风件转动至不同位置的具体步骤包括:
    根据所述常规出风指令,控制每个所述圆柱旋转门旋转使所述通风通道 连通所述壳体内部和外部打开每个所述中间出风口,控制每个所述导风件转动分别与所述风道组件的一侧相抵接将两个所述出风区分别与两个所述中间出风口相连通,控制两个所述风轮开始工作。
  32. 根据权利要求27所述的导风控制方法,其特征在于,所述出风模式指令为综合出风指令,所述根据所述出风模式指令,控制所述导风装置的至少一个圆柱旋转门旋转使通风通道位于所述壳体内部或连通所述壳体内部和外部将每个所述中间出风口和/或每个所述侧面出风口关闭或打开,控制两个所述风轮的工作状态的具体步骤包括:
    根据所述综合出风指令,控制每个所述圆柱旋转门旋转使所述通风通道连通所述壳体内部和外部打开每个所述中间出风口,控制两个所述风轮开始工作。
  33. 根据权利要求32所述的导风控制方法,其特征在于,还包括:
    根据所述综合出风指令,控制所述导风装置的每个导风件转动至所述风道组件的一侧和中间部分之间,将两个所述出风区分别与两个所述中间出风口、两个所述侧面出风口相连通。
  34. 根据权利要求28所述的导风控制方法,其特征在于,所述出风模式指令为停止出风指令,所述根据所述出风模式指令,控制所述导风装置的至少一个圆柱旋转门旋转使通风通道位于所述壳体内部或连通所述壳体内部和外部将每个所述中间出风口和/或每个所述侧面出风口关闭或打开,控制两个所述风轮的工作状态,根据所述出风模式指令,控制所述导风装置的两个导风件转动至不同位置的具体步骤包括:
    根据所述停止出风指令,控制两个所述风轮停止工作,控制两个所述导风件停止转动,控制每个所述圆柱旋转门旋转使所述通风通道位于壳体内部关闭每个所述中间出风口。
  35. 一种空调器,其特征在于,包括:
    壳体,所述壳体的外周壁上设置有位于中间的中间出风口和位于所述中间出风口两侧的两个侧面出风口;
    两个风轮,两个所述风轮工作时反方向转动以实现两个出风区;以及
    如权利要求1至8中任一项所述的导风装置。
  36. 根据权利要求18所述的空调器,其特征在于,还包括:
    检测装置,设置在所述壳体上,用于检测出风模式指令;
    控制器,设置在所述壳体上,与两个所述风轮、至少一个滑动门、所述导风装置的两个导风件相连接,并根据所述出风模式指令对两个所述风轮、所述至少一个滑动门、两个所述导风件进行控制;
    其中,所述出风模式指令包括无风感出风指令、常规出风指令、综合出风指令、停止出风指令。
  37. 一种空调器,其特征在于,包括:
    壳体,所述壳体的外周壁上设置有位于中间的两个中间出风口和位于两个所述中间出风口两侧的两个侧面出风口;
    两个风轮,两个所述风轮工作时反方向转动以实现两个出风区;以及
    如权利要求9至16中任一项所述的导风装置。
  38. 根据权利要求37所述的空调器,其特征在于,还包括:
    检测装置,设置在所述壳体上,用于检测出风模式指令;
    控制器,设置在所述壳体上,与两个所述风轮、至少一个圆柱旋转门、所述导风装置的两个导风件相连接,并根据所述出风模式指令对两个所述风轮、所述至少一个圆柱旋转门、两个所述导风件进行控制;
    其中,所述出风模式指令包括无风感出风指令、常规出风指令、综合出风指令、停止出风指令。
  39. 一种计算机设备,包括存储器、处理器及存储在所述存储器上并可在所述处理器上运行的计算机程序,其特征在于,所述处理器用于执行如权利要求17至25或如权利要求26至34中任一项所述方法的步骤。
  40. 一种计算机可读存储介质,其上存储有计算机程序,其特征在于,所述计算机程序被处理器执行时实现了如权利要求17至25或如权利要求26至34中任一项所述方法的步骤。
PCT/CN2017/086403 2017-03-30 2017-05-27 导风装置、导风控制方法和空调器 WO2018176627A1 (zh)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN201710204678.5 2017-03-30
CN201710204678.5A CN106949541A (zh) 2017-03-30 2017-03-30 导风装置、导风控制方法和空调器
CN201710200672.0A CN106979555A (zh) 2017-03-30 2017-03-30 导风装置、导风控制方法和空调器
CN201710200672.0 2017-03-30

Publications (1)

Publication Number Publication Date
WO2018176627A1 true WO2018176627A1 (zh) 2018-10-04

Family

ID=63674162

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/086403 WO2018176627A1 (zh) 2017-03-30 2017-05-27 导风装置、导风控制方法和空调器

Country Status (1)

Country Link
WO (1) WO2018176627A1 (zh)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112432235A (zh) * 2019-08-26 2021-03-02 Tcl空调器(中山)有限公司 一种空调器及其控制方法
CN113819519A (zh) * 2021-08-31 2021-12-21 青岛海尔空调器有限总公司 送风结构和空调器

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1124213A (zh) * 1994-07-06 1996-06-12 日本电装株式会社 空气通路转换装置及车用空调装置
CN103791559A (zh) * 2014-01-21 2014-05-14 广东美的制冷设备有限公司 落地式空调器及其送风控制方法
CN104296343A (zh) * 2014-09-26 2015-01-21 广州华凌制冷设备有限公司 挡风件、风道组件及立式空调室内机
CN205878341U (zh) * 2016-07-01 2017-01-11 芜湖美智空调设备有限公司 一种空调器室内机
CN205878340U (zh) * 2016-07-01 2017-01-11 芜湖美智空调设备有限公司 一种空调器室内机
CN206037245U (zh) * 2016-08-24 2017-03-22 珠海格力电器股份有限公司 空调器及其空调室内机
CN106839369A (zh) * 2017-03-30 2017-06-13 广东美的制冷设备有限公司 导风装置、导风控制方法和空调器

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1124213A (zh) * 1994-07-06 1996-06-12 日本电装株式会社 空气通路转换装置及车用空调装置
CN103791559A (zh) * 2014-01-21 2014-05-14 广东美的制冷设备有限公司 落地式空调器及其送风控制方法
CN104296343A (zh) * 2014-09-26 2015-01-21 广州华凌制冷设备有限公司 挡风件、风道组件及立式空调室内机
CN205878341U (zh) * 2016-07-01 2017-01-11 芜湖美智空调设备有限公司 一种空调器室内机
CN205878340U (zh) * 2016-07-01 2017-01-11 芜湖美智空调设备有限公司 一种空调器室内机
CN206037245U (zh) * 2016-08-24 2017-03-22 珠海格力电器股份有限公司 空调器及其空调室内机
CN106839369A (zh) * 2017-03-30 2017-06-13 广东美的制冷设备有限公司 导风装置、导风控制方法和空调器

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112432235A (zh) * 2019-08-26 2021-03-02 Tcl空调器(中山)有限公司 一种空调器及其控制方法
CN113819519A (zh) * 2021-08-31 2021-12-21 青岛海尔空调器有限总公司 送风结构和空调器

Similar Documents

Publication Publication Date Title
WO2021088470A1 (zh) 一种空调的控制方法、装置、计算机可读存储介质及空调
CN105135519B (zh) 空调室内机及空调室内出风控制方法
CN105180268B (zh) 空调室内机及空调室内出风控制方法
CN206669886U (zh) 立式空调室内机
CN107388370A (zh) 空调室内机及其控制方法
CN101737917B (zh) 柜式空调器室内机的送风结构
CN108006822A (zh) 壁挂式空调室内机和具有其的空调器
CN106949541A (zh) 导风装置、导风控制方法和空调器
CN210921588U (zh) 一种新风装置以及空调器
CN216131991U (zh) 壁挂式空调室内机
CN106979555A (zh) 导风装置、导风控制方法和空调器
WO2018176627A1 (zh) 导风装置、导风控制方法和空调器
CN107940572A (zh) 壁挂式室内机及空调器
CN207555772U (zh) 壁挂式空调室内机和具有其的空调器
CN206755523U (zh) 导风装置和空调器
CN106594881A (zh) 空调柜机
WO2013035236A1 (ja) 空気調和機
CN109442573A (zh) 一种空调出风装置以及空调器
CN206755530U (zh) 导风装置和空调器
CN106839369A (zh) 导风装置、导风控制方法和空调器
CN208108309U (zh) 空调壁挂机和空调器
CN108006823A (zh) 壁挂式空调室内机和具有其的空调器
WO2023159936A1 (zh) 空调室内机
CN207555779U (zh) 壁挂式空调室内机和具有其的空调器
CN206755528U (zh) 导风装置和空调器

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 17902819

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 17902819

Country of ref document: EP

Kind code of ref document: A1