WO2019033701A1 - 空气处理模块及空调器 - Google Patents

空气处理模块及空调器 Download PDF

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Publication number
WO2019033701A1
WO2019033701A1 PCT/CN2018/072690 CN2018072690W WO2019033701A1 WO 2019033701 A1 WO2019033701 A1 WO 2019033701A1 CN 2018072690 W CN2018072690 W CN 2018072690W WO 2019033701 A1 WO2019033701 A1 WO 2019033701A1
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WO
WIPO (PCT)
Prior art keywords
air
panel
disposed
heat exchange
treatment
Prior art date
Application number
PCT/CN2018/072690
Other languages
English (en)
French (fr)
Inventor
刘源
张哲源
赵飞
姜凤华
田镇龙
刘奇伟
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
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 WO2019033701A1 publication Critical patent/WO2019033701A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • F24F8/108Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering using dry filter elements
    • 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
    • F24F1/0007Indoor units, e.g. fan coil units
    • 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
    • F24F13/28Arrangement or mounting of filters
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F3/00Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems
    • F24F3/12Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling
    • F24F3/14Air-conditioning systems in which conditioned primary air is supplied from one or more central stations to distributing units in the rooms or spaces where it may receive secondary treatment; Apparatus specially designed for such systems characterised by the treatment of the air otherwise than by heating and cooling by humidification; by dehumidification
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F2221/00Details or features not otherwise provided for
    • F24F2221/34Heater, e.g. gas burner, electric air heater

Definitions

  • the present invention relates to the field of air conditioners, and more particularly to an air treatment module and an air conditioner having the air treatment module.
  • the conventional air conditioner generally performs the function of cooling or heating by circulating heat in the air in the room, and the air conditioner is used in a closed room, although the air temperature in the room can be well adjusted, but the air temperature in the room can be well adjusted. After long-term operation, it will result in poor air quality in the room.
  • the prior art proposes a scheme of adding an air processing module in the air conditioner, and the specific implementation manner is: introducing a fresh air from the outdoor and mixing the indoor circulation air inlet of the air conditioner And after heat exchange, it is discharged into the room. Since it introduces fresh air from the outside, it can improve the air quality in the room.
  • the air passage of the air treatment module is in communication with the heat exchange air passage of the air conditioner itself, so the setting of the air treatment module seriously affects the operation of the heat exchange function of the air conditioner itself.
  • a first object of the present invention is to provide an air treatment module which aims to solve the technical problem that the prior art adds an air treatment module to the air conditioner to cause the heat exchange function of the air conditioner itself to be affected.
  • the present invention provides an air treatment module for an air conditioner including an outer casing, an air treatment assembly, and a fan, the outer casing being provided with an air treatment air inlet, an air processing air outlet, and communicating the air.
  • the air treatment duct includes an air inlet chamber communicating with the air processing air inlet, an air outlet chamber communicating with the air processing air outlet, and an air inlet chamber and the air outlet chamber
  • An air processing chamber, the air processing chamber and the air outlet chamber are located on the same side of the air inlet chamber, and the air processing chamber and the air outlet chamber are arranged side by side and are respectively disposed near the two ends of the air inlet chamber
  • the fan is disposed in the air outlet chamber in an axially horizontal manner, and the air treatment component is disposed in the air processing chamber.
  • the outer casing includes a first panel, a second panel, a third panel, and a fourth panel that are circumferentially circumferentially disposed and connected to each other, and the first panel and the third panel are spaced apart from each other,
  • the second panel and the fourth panel are oppositely disposed, the air inlet chamber is disposed adjacent to the first panel, and the air processing chamber and the air outlet chamber are disposed in the air inlet chamber and the second panel
  • the air treatment chamber is disposed adjacent to the second panel, and the fan is disposed adjacent to the fourth panel.
  • the fan has an air suction end surface adjacent to the third panel, the air suction end surface is disposed in parallel with the third panel or the air suction end surface is inclined with respect to the third panel.
  • the angle of the suction end face inclined relative to the third panel is greater than 0° and less than 45°.
  • the first panel is disposed in parallel with the third panel; and/or the air treatment assembly has an air treatment inlet surface adjacent to the first panel, the air treatment inlet surface being parallel to The first panel is arranged.
  • the air treatment air inlet comprises a fresh air inlet that communicates with the outdoor air and/or an inner circulation air inlet that communicates with the indoor air.
  • the fresh air inlet is provided with a first control damper for controlling the fresh air inlet switch, and/or the inner circulation air inlet is provided with a third unit for controlling the inner circulation air inlet switch. Second control the damper.
  • the air treatment air inlet comprises three of the fresh air inlets and two of the inner circulation air inlets
  • the outer casing comprises end panels and are respectively connected to the peripheral edges of the end panels and are connected to each other. a first panel, a second panel, a third panel, and a fourth panel, wherein the first panel and the third panel are oppositely disposed, and the second panel and the fourth panel are oppositely disposed, wherein one of the a fresh air inlet is disposed on the first panel, and two other fresh air inlets are respectively disposed on the second panel and the fourth panel, and the two inner circulation air inlets are respectively disposed on the first panel
  • the air treatment air outlet is disposed on the end panel on the second panel and the fourth panel.
  • the fan comprises a centrifugal wind wheel disposed in the air treatment duct and a drive motor mounted in the air treatment air passage for driving the centrifugal wind wheel to rotate.
  • the centrifugal wind wheel is a forward centrifugal wind wheel
  • the forward centrifugal air wheel cover is provided with a wind guiding volute.
  • the air treatment assembly comprises a purification filter and/or a humidification structure.
  • the air treatment assembly includes a purification filter and a humidification structure, the purification filter being disposed between the air treatment air inlet and the humidification structure.
  • the humidifying structure comprises a water tank, a water washing wheel rotatably installed in the water tank, a water washing motor for driving the washing wheel to rotate, and humidification provided between the purifying filter and the water washing wheel.
  • the air treatment module further comprising a water tank for supplying water into the water tank to maintain a water level in the water tank; or
  • the humidification structure includes a water tank and a humidified cotton immersed in the water tank at the bottom, and the air treatment module further includes a water tank for supplying water into the water tank to maintain a water level in the water tank.
  • an electrical auxiliary component is further disposed between the air treatment air inlet and the air treatment component.
  • a second object of the present invention is to provide an air conditioner including an air conditioning indoor heat exchange module and the above air processing module, wherein the air conditioning indoor heat exchange module is provided with a heat exchange air inlet communicating with the indoor, and communicating with the indoor a hot air outlet and a heat exchange air passage connecting the heat exchange air inlet and the heat exchange air outlet, the air processing module being disposed at one end of the air conditioning indoor heat exchange module, the heat exchange air passage and the The air handling ducts are set independently of each other.
  • the air conditioning indoor heat exchange module is disposed in a vertical manner, the air processing module is disposed at a bottom end of the air conditioning indoor heat exchange module, and the air processing air outlet is disposed at a bottom of the air processing module .
  • two cross-flow wind wheels are disposed in the heat exchange air passage, and two heat exchange air outlets are disposed, and the heat exchange air inlet is disposed on a front surface of the air conditioning indoor heat exchange module, and two The heat exchange air outlets are respectively disposed on two sides of the air conditioning indoor heat exchange module.
  • the air conditioner is a wall hanging machine.
  • the air treatment module and the air conditioner provided by the invention provide an air treatment air duct in the air treatment module, and an air treatment assembly is arranged in the air treatment air passage, so that the air in the air treatment air passage is entered from the air treatment air inlet, It will be treated by the air treatment module and then discharged from the air treatment outlet to the air treatment module to achieve effective adjustment of air quality.
  • the air treatment assembly and the fan are not disposed along the axial direction of the fan, thereby facilitating the design of the air treatment module and the air conditioner to be relatively thin.
  • the setting of the air processing module does not affect the normal operation of the heat exchange function of the air conditioner itself, and thus does not affect the heat exchange function of the air conditioner. In the case of achieving improved air quality.
  • FIG. 1 is a perspective view of an air conditioner according to Embodiment 1 of the present invention.
  • FIG. 2 is a front plan view of an air conditioner according to Embodiment 1 of the present invention.
  • Figure 3 is a schematic cross-sectional view taken along line A-A of Figure 2;
  • Figure 4 is a schematic cross-sectional view of B-B of Figure 2;
  • Figure 5 is a cross-sectional view taken along line C-C of Figure 2;
  • FIG. 6 is a schematic left side plan view of an air conditioner according to Embodiment 1 of the present invention.
  • FIG. 7 is a schematic overall structural diagram of an air conditioning processing module according to Embodiment 1 of the present invention.
  • FIG. 8 is a schematic structural view of an air conditioning processing module according to Embodiment 1 of the present invention after removing a top portion;
  • FIG. 9 is a schematic top plan view of an air conditioning processing module according to Embodiment 1 of the present invention.
  • FIG. 10 is a schematic diagram showing the internal main structure of an air conditioning processing module according to Embodiment 1 of the present invention.
  • FIG. 11 is a schematic top plan view of an air conditioning processing module according to Embodiment 2 of the present invention.
  • FIGS. 4, 9, 10, and 11 are the flow direction marks of the air.
  • Air handling module 1 shell 11 Air treatment inlet 111 Fresh air inlet 112 Inner circulation air inlet 12 Air treatment outlet 13 Air treatment duct 131 Air inlet 132 Ventilation chamber 133 Air treatment chamber 14 First panel 15 Second panel 16 Third panel 17 Fourth panel 18 End panel 2 Air handling component twenty one Purification filter 211 Air treatment inlet surface twenty two Humidification structure 221 sink 222 Washing wheel 223 Washing motor 224 Humidifying net 3 Fan 31 Centrifugal wind wheel 311 Suction end face 32 motor 33 Guide volute 4 Water tank 5 Electric auxiliary heat unit 200 Indoor heat exchange module 201 Heat exchange air inlet 202 Heat exchange outlet 203 Heat exchange duct 204 Cross flow wind wheel 205 Heat Exchanger
  • first”, “second”, and the like in the present invention are used for the purpose of description only, and are not to be construed as indicating or implying their relative importance or implicitly indicating the number of technical features indicated.
  • features defining “first” and “second” may include at least one of the features, either explicitly or implicitly.
  • the technical solutions between the various embodiments may be combined with each other, but must be based on the realization of those skilled in the art, and when the combination of the technical solutions is contradictory or impossible to implement, it should be considered that the combination of the technical solutions does not exist. It is also within the scope of protection required by the present invention.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • an air processing module 100 is used for an air conditioner, which includes an outer casing 1, an air processing assembly 2, and a fan 3.
  • the outer casing 1 is provided with an air processing air inlet 11, and air treatment.
  • the air outlet 12 and the air treatment air inlet 11 and the air treatment air outlet 12 are disposed independently of the air heat exchange air passage 203 of the air conditioner, and the air blower 3 and the air treatment unit 2 are both disposed on the air treatment duct 13 .
  • the air processing unit 2 is disposed horizontally on the radial side of the fan 3 in the horizontal direction.
  • the air treatment module 100 provides an air treatment duct 13 in the air treatment module 100, and an air treatment assembly 2 is disposed in the air treatment duct 13, so that the air treatment inlet 11 is introduced from the air treatment.
  • the air in the air treatment duct 13 is first processed by the air treatment unit 2 and then discharged from the air treatment outlet 12 to the outside of the air treatment module 100, thereby achieving the purpose of effectively improving the air quality.
  • the air treatment assembly 2 and the fan 3 are not disposed along the axial direction of the fan 3, thereby facilitating the design of the air treatment module 100 and the air conditioner. Thinner.
  • the setting of the air processing module 100 does not affect the normal operation of the heat exchange function of the air conditioner itself, and thus does not affect the air conditioner. In the case of heat exchange function, the effect of improving air quality is achieved.
  • the air treatment duct 13 includes an air inlet chamber 131 communicating with the air processing air inlet 11, an air outlet chamber 132 communicating with the air processing air outlet 12, and an air processing chamber 133 communicating the air inlet chamber 131 and the air outlet chamber 132.
  • the air processing chamber 133 and the air outlet chamber 132 are located on the same side of the air inlet chamber 131.
  • the air processing chamber 133 and the air outlet chamber 132 are arranged side by side and respectively disposed near the two ends of the air inlet chamber 131.
  • the fan 3 is horizontally placed horizontally.
  • the air handling unit 2 is disposed in the air processing chamber 133.
  • the arrangement of the air inlet chamber 131 is to ensure that when a plurality of air treatment air inlets 11 are provided, all the air entering the outer casing 1 from each air treatment air inlet 11 can be discharged through the air treatment unit 2 before being discharged.
  • the effect of the air treatment module 100 to improve air quality is sufficiently ensured.
  • the air processing chamber 133 and the air outlet chamber 132 are disposed on the same side of the air inlet chamber 131, and the air processing chamber 133 and the air outlet chamber 132 are arranged side by side and respectively disposed near the two ends of the air inlet chamber 131, and the structure thereof is relatively compact. It is advantageous to design the air treatment module 100 to be relatively thin.
  • the outer casing 1 includes a first panel 14, a second panel 15, a third panel 16, and a fourth panel 17 which are circumferentially disposed and connected to each other, and the first panel 14 and the third panel 16 are spaced apart from each other, and the second panel
  • the panel 15 and the fourth panel 17 are disposed opposite to each other, and the air inlet chamber 131 is disposed adjacent to the first panel 14.
  • the air processing chamber 133 and the air outlet chamber 132 are disposed between the air inlet chamber 131 and the second panel 15, and the air processing chamber 133 is adjacent to the air.
  • the second panel 15 is disposed, and the fan 3 is disposed adjacent to the fourth panel 17.
  • the first panel 14, the second panel 15, the third panel 16, and the fourth panel 17 are respectively located in four circumferential orientations, and the air inlet chamber 131 extends from the second panel 15 to the fourth panel 17 along the first panel 14, air treatment
  • the cavity 133 and the outlet plenum 132 are sequentially distributed along the third panel 16 from the second panel 15 toward the fourth panel 17.
  • the purpose of designing the air processing module 100 can be achieved.
  • the fan 3 has a suction end surface 311 adjacent to the third panel 16, and the suction end surface 311 is disposed in parallel with the third panel 16, so that the installation and positioning structure of the fan 3 in the wind shell can be relatively easily set, and the fan 3 is provided.
  • the thickness of the mounting housing 1 is also relatively small, which facilitates the thin design of the air handling module 100.
  • the first panel 14 is disposed in parallel with the third panel 16, so that the shape of the outer casing 1 can be relatively regular, easy to manufacture, and favorable for ensuring the aesthetic appearance of the product.
  • the air treatment assembly 2 has an air treatment inlet surface adjacent to the first panel 14, and the air treatment inlet surface is disposed parallel to the first panel 14, such that the space occupied by the air treatment assembly 2 in the thickness direction of the outer casing 1 is Small, thereby facilitating the thin design of the air handling module 100.
  • the air treatment air inlet 11 includes a fresh air inlet 111 communicating with the outdoor air and/or an inner circulation air inlet 112 communicating with the indoor air, that is, the air processing inlet 11 may include only the fresh air inlet 111 and the inner circulation inlet. Any one of 112 may also include a fresh air inlet 111 and an inner circulation inlet 112.
  • the air treatment module 100 When the air treatment air inlet 11 includes only the fresh air inlet 111, the air treatment module 100 only has the effect of treating the outdoor air and introducing into the room; when the air treatment inlet 11 includes only the inner circulation inlet 112, the air treatment module 100 only
  • the utility model has the effects of circulating indoor air to improve the air quality; and when the air processing air inlet 11 includes the fresh air inlet 111 and the inner circulation air inlet 112, the air treatment module 100 simultaneously has the effect of treating the outdoor air and introducing into the room. And the effect of circulating indoor air to improve air quality.
  • the air treatment inlet 11 can be optimized according to the needs of different users.
  • the air treatment air inlet 11 includes a fresh air inlet 111 in communication with outdoor air and an inner circulation inlet 112 in communication with the indoor air.
  • the air treatment module 100 has the functions of treating the outdoor air and introducing into the room and circulating the indoor air to improve the air quality.
  • the air processing module 100 has the functions of being complete, and is suitable for satisfying the user's multifunctional air. The requirements of the processing module 100.
  • the fresh air inlet 111 is provided with a first control damper for controlling the opening of the fresh air inlet 111, and/or a second control damper for controlling the opening of the inner circulation inlet 112 is provided at the inner circulation inlet 112.
  • the fresh air inlet 111 is provided with a first control damper (not shown) for controlling the opening of the fresh air inlet 111
  • the inner circulation inlet 112 is provided for controlling the inner circulation.
  • the second control damper (not shown) of the tuyere 112 switch is such that the switch of the fresh air inlet 111 and the switch of the inner circulation inlet 112 can be effectively controlled.
  • the first control damper when it is required to use the introduction of the outdoor fresh air function of the air treatment module 100, the first control damper is controlled to open the fresh air inlet 111, and the second control damper is closed to close the inner circulation inlet 112; when air treatment is required When the indoor air circulation purification function of the module 100 is performed, the first control damper is controlled to close the fresh air inlet 111, and the second control damper is controlled to open the inner circulation inlet 112; and when the air treatment module 100 is required to be used simultaneously, the outdoor air is introduced. When the function and the indoor air circulation purification function are performed, the first control damper is controlled to open the fresh air inlet 111, and the second control damper is controlled to open the inner circulation inlet 112.
  • the air treatment air inlet 11 includes three fresh air inlets 111 and two inner circulation air inlets 112, and the outer casing 1 includes an end panel 18 and first panels 14 respectively connected to the peripheral edges of the end panels 18 and connected to each other.
  • the second panel 15, the third panel 16, and the fourth panel 17, the first panel 14 and the third panel 16 are oppositely disposed, and the second panel 15 and the fourth panel 17 are oppositely disposed, wherein a fresh air inlet 111 is disposed at On one panel 14, two other fresh air inlets 111 are respectively disposed on the second panel 15 and the fourth panel 17, and two inner circulation air inlets 112 are respectively disposed on the second panel 15 and the fourth panel 17, and the air is processed.
  • the tuyere 12 is provided on the end panel 18.
  • the fresh air inlet 111 is provided with three, which can facilitate the user to control the fresh air volume of the outdoor air introduced by the air processing module 100 according to actual needs.
  • the inner circulation air inlet 112 is provided with two, which can facilitate the user to control the air circulation module 100 to process the internal circulation air volume of the indoor air according to actual needs.
  • the number of fresh air inlets 111 and the number of inner circulation air inlets are not limited thereto.
  • the fan 3 includes a centrifugal wind wheel 31 disposed in the air processing duct 13 and a drive motor 32 mounted in the air processing duct 13 for driving the rotation of the centrifugal wind wheel 31.
  • the centrifugal rotor 31 is a wind turbine that is axially ventilated and radially ventilated.
  • the fan 3 employs a centrifugal wind wheel 31, which is advantageous for reducing the thickness of the air treatment module 100.
  • the centrifugal wind wheel 31 is a forward centrifugal wind wheel
  • the forward centrifugal air wheel cover is provided with a wind guiding volute 33.
  • the forward centrifugal wind wheel is a forward inclined wind wheel. From the radial section of the forward centrifugal wind wheel, the angle between the outer extension line of the blade and the tangential reversal of the rotation direction of the blade at the point is an obtuse angle.
  • the air guiding volute 33 is used to guide the wind that is radially pulled out of the forward centrifugal wind wheel 31 to the air processing air outlet 12.
  • the air treatment assembly 2 includes a purification filter 21 and/or a humidification structure 22, that is, the air treatment assembly 2 may include only one of the purification filter 21 and the humidification structure 22, and may also include the purification filter 21 and humidification. Structure 22.
  • the purification filter 21 is mainly used to filter out particles of a certain volume or more in the air.
  • the humidifying structure 22 is mainly used to increase the humidity of the air.
  • the air treatment module 100 only has the effect of filtering the air suspension particles; when the air treatment assembly 2 includes only the humidification structure 22, the air treatment module 100 only has the effect of increasing the air humidity; When the air treatment assembly 2 includes both the purification filter 21 and the humidification structure 22, the air treatment module 100 has the effect of filtering the air suspension particles and increasing the humidity of the air.
  • the efficiency of the air treatment component 2 can be optimized according to the needs of different users.
  • the air treatment assembly 2 includes a purification filter 21 and a humidification structure 22 disposed between the air treatment air inlet 11 and the humidification structure 22.
  • the air treatment inlet surface 211 is the air inlet surface of the purification filter 21.
  • the air treatment module 100 has the effects of filtering air-suspended particles and increasing the humidity of the air, and the effect of improving the air quality is better, which is favorable for satisfying the user's demand for high-quality air.
  • the purification filter 21 is disposed between the air treatment air inlet 11 and the humidification structure 22, so that the air can flow through the purification filter 21 and then through the humidification structure 22, that is, the humidification structure 22
  • the flow direction of the air in the air treatment duct 13 is located after the purification filter 21, thereby facilitating the prevention of the failure of the purification filter 21 due to the excessive humidity of the purification filter 21, and fully ensuring the efficiency of the air treatment module 2 for filtering the air suspension particles. And increase the effectiveness of air humidity.
  • the humidification structure 22 includes a water tank 221, a water washing wheel 222 rotatably installed in the water tank 221, a water washing motor 223 for driving the washing wheel 222 to rotate, and a humidifying net 224 disposed between the cleaning filter 21 and the water washing wheel 222.
  • the air treatment module 100 also includes a water tank 4 for supplying water into the water tank 221 to maintain the water level in the water tank 221.
  • the washing motor 223 is started, the washing wheel 222 can be driven to rotate, and the rotation of the washing wheel 222 can drive the water splash in the water tank 221, and the splashed water can play the role of washing and purifying the air on the one hand, and the humidifying net 224 can be hit on the other hand.
  • the humidifying net 224 is humidified.
  • the user can effectively realize the switching control of the humidification function of the air processing module 100 by controlling the water washing motor 223.
  • the humidifying structure 22 is not limited thereto.
  • the humidifying structure 22 includes a water tank 221 and a humidifying cotton whose bottom is immersed in the water tank 221, and the air processing module 100 further includes a water in the water tank 221 The water tank 4 that supplies water to maintain the water level in the water tank 221.
  • the air outlet surface of the humidification net 224 is disposed parallel to the air treatment air inlet surface 211, thus facilitating the thin design of the air treatment module 100.
  • an electric auxiliary heat member 5 is further disposed between the air treatment air inlet 11 and the air treatment assembly 2.
  • the electric auxiliary heat component 5 may specifically be a PTC (thermistor) heater, and the PTC heater is specifically composed of a PTC ceramic heating element and an aluminum tube, and is an electric heater with automatic constant temperature, power saving and high safety performance.
  • the electric auxiliary heat component 5 adopts a PTC heater, and has the advantages of small heat resistance, high heat exchange efficiency, and high safety performance.
  • the arrangement of the electric auxiliary heat component 5 is mainly used to heat the cold air entering the air treatment module 100 from the fresh air inlet 111 when the air conditioner is heated in a cold weather environment, thereby preventing the air treatment module 100 from being removed.
  • the excessive cooling of the air blown into the room affects the indoor heating effect, which in turn helps to improve the comfort of the user.
  • the air treatment module 100 in this embodiment can adjust the air parameters (parameters such as cleanliness and humidity) without affecting the normal heat exchange operation of the air conditioner.
  • the humidifying effect is good; and since the humidifying net 224 is placed after the purifying filter 21, it can prevent the purifying and filtering.
  • the net 21 has a problem of potential failure due to excessive humidity; moreover, it is provided by the washing of the motor 223 and the washing wheel 222, so that it is possible to effectively control whether or not the air is humidified.
  • the embodiment further provides an air conditioner, which includes an air conditioning indoor heat exchange module 200 and the air processing module 100, and the air conditioning indoor heat exchange module 200 is provided with a heat exchange air inlet 201 communicating with the indoor, and is connected to the indoor
  • the air treatment module 100 described above since the air treatment module 100 described above is adopted, the effect of improving the air quality can be achieved without affecting the heat exchange function of the air conditioner, thereby improving the overall performance of the air conditioner.
  • the air conditioner is a wall hanging machine.
  • the structure of the air treatment module 100 is relatively compact, and the body shape is relatively small, and is applied to a wall hanging machine, and the effect is good.
  • the air conditioner provided in this embodiment may also be a cabinet machine.
  • the air conditioning indoor heat exchange module 200 is disposed in a vertical manner
  • the air processing module 100 is disposed at a bottom end of the air conditioning indoor heat exchange module 200
  • the air processing air outlet 12 is disposed at a bottom of the air processing module 100.
  • the air processing air outlet 12 is disposed at the bottom of the air processing module 100, so that the air processing module 100 is blown downward from the bottom, which helps prevent the wind blown by the air processing module 100 from directly blowing to the user, thereby improving the comfort of the user. Sex.
  • the heat exchange air channel 203 is provided with a heat exchanger 205 and two cross flow wind wheels 204, and two heat exchange air outlets 202 are provided, and the heat exchange air inlets 201 are disposed on the front surface of the air conditioning indoor heat exchange module 200,
  • the heat exchange air outlets 202 are respectively disposed on both sides of the air conditioning indoor heat exchange module 200.
  • the air-conditioning indoor heat exchange module 200 emits air from both sides, which helps prevent the wind blown by the air-conditioning indoor heat exchange module 200 from directly blowing to the user, thereby facilitating the comfort of the user to use the product.
  • the heat exchange air inlet 201 of the air conditioning indoor heat exchange module 200 and the third panel 16 of the air processing module 100 are located on the front side of the air conditioner;
  • the first panel 14 of the module 100 and a fresh air inlet 111 are located at the back of the air conditioner;
  • the two heat exchange outlets 202 of the air conditioning indoor heat exchange module 200 are respectively disposed on two sides of the air conditioner, and the second panel of the air processing module 100 15 and the fourth panel 17 are respectively located on both sides of the air conditioner;
  • the end panel 18 of the air treatment module 100 is located on the bottom surface of the air conditioner.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • the main difference between the air treatment module 100 and the air conditioner provided in this embodiment is that the relative position relationship between the air suction end surface 311 of the fan 3 and the third panel 16 of the outer casing 1 is as follows: As shown in the first embodiment, the suction end surface 311 is disposed in parallel with the third panel 16; and as shown in FIG. 11, in the present embodiment, the suction end surface 311 is disposed obliquely with respect to the third panel 16.
  • the installation structure of the fan 3 in the wind shell is relatively complicated in this embodiment, and the thickness of the outer casing 1 occupied by the fan 3 is also larger, but the suction effect of the fan 3 is better.
  • the angle X of the suction end surface 311 inclined relative to the third panel 16 is greater than 0° and less than 45°, so as to ensure that the fan 3 has better air suction effect, and the installation of the fan 3 occupies the thickness of the outer casing 1 .
  • the space is not too large, which facilitates the thin design of the air handling module 100 and the air conditioner.
  • the air handling module 100 and other structures of the air conditioner provided in this embodiment can be optimized according to the first embodiment, and will not be described in detail herein.

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Abstract

一种空气处理模块以及一种具有该空气处理模块的空气处理器,其中,空气处理模块包括外壳(1)、空气处理组件(2)和风机(3),外壳(1)设有空气处理进风口(11)、空气处理出风口(12)和连通空气处理进风口(11)与空气处理出风口(12)且相对空调器之换热风道(203)独立设置的空气处理风道(13),风机(3)和空气处理组件(2)都设于空气处理风道(13)内,且风机(3)的轴向呈水平设置,空气处理组件(2)沿水平方向设置于风机(3)的径向旁侧。空气处理组件(2)设置于风机(3)的径向旁侧,这样,可利于将空气处理模块及空调器设计得比较薄。此外,由于空气处理风道(13)与空调器的换热风道(203)是相互独立的,所以空气处理模块的设置不会影响空调器本身换热功能的正常运行,进而可在不影响空调器换热功能的情形下,实现改善空气质量的效果。

Description

空气处理模块及空调器
技术领域
本发明涉及空调器领域,尤其涉及空气处理模块及具有该空气处理模块的空调器。
背景技术
传统技术的空调器一般是通过对房间内的空气进行循环换热以实现制冷或者制热的功能,在密闭的房间内采用这种空调器,虽然可以较好地调节房间内的空气温度,但是,其在长期运行后,会导致房间内的空气质量较差。
为了改善空调器运行环境的空气质量,现有技术提出了一种在空调器内增设置空气处理模块的方案,其具体实现方式为:从室外引进一股新风与空调器的室内循环进风混合并经换热后排向室内。由于其从室外引进了外界新鲜空气,故,能起到改善房间内空气质量的目的。但是,由于该方案中,空气处理模块的风道与空调器本身的换热风道是相连通的,所以,空气处理模块的设置严重影响了空调器本身换热功能的运行。
发明内容
本发明的第一个目的是提供一种空气处理模块,其旨在解决现有技术在空调器内增设空气处理模块而导致空调器本身换热功能受影响的技术问题。
为达到上述目的,本发明提供的方案是:空气处理模块,用于空调器,其包括外壳、空气处理组件和风机,所述外壳设有空气处理进风口、空气处理出风口和连通所述空气处理进风口与所述空气处理出风口且相对所述空调器之换热风道独立设置的空气处理风道,所述风机和所述空气处理组件都设于所述空气处理风道内,且所述风机的轴向呈水平设置,所述空气处理组件沿水平方向设置于所述风机的径向旁侧。
可选地,所述空气处理风道包括与所述空气处理进风口连通的进风腔、与所述空气处理出风口连通的出风腔和连通所述进风腔与所述出风腔的空气处理腔,所述空气处理腔和所述出风腔位于所述进风腔的同一侧,所述空气处理腔和所述出风腔并排设置并分别靠近所述进风腔的两端设置,所述风机以轴向水平放置的方式设置于所述出风腔内,所述空气处理组件设于所述空气处理腔内。
可选地,所述外壳包括沿周向环绕设置且相互连接的第一面板、第二面板、第三面板和第四面板,所述第一面板和所述第三面板间隔相对设置,所述第二面板和所述第四面板间隔相对设置,所述进风腔靠近所述第一面板设置,所述空气处理腔和所述出风腔设于所述进风腔与所述第二面板之间,所述空气处理腔靠近所述第二面板设置,所述风机靠近所述第四面板设置。
可选地,所述风机具有靠近所述第三面板的吸风端面,所述吸风端面相对所述第三面板平行设置或者所述吸风端面相对所述第三面板倾斜设置。
可选地,所述吸风端面相对所述第三面板倾斜的角度大于0°且小于45°。
可选地,所述第一面板相对所述第三面板平行设置;且/或,所述空气处理组件具有靠近所述第一面板的空气处理进风面,所述空气处理进风面平行于所述第一面板设置。
可选地,所述空气处理进风口包括与室外空气连通的新风进风口和/或与室内空气连通的内循环进风口。
可选地,所述新风进风口处设有用于控制所述新风进风口开关的第一控制风门,且/或,所述内循环进风口处设有用于控制所述内循环进风口开关的第二控制风门。
可选地,所述空气处理进风口包括三个所述新风进风口和两个所述内循环进风口,所述外壳包括端部面板和分别设于所述端部面板四周边缘且相互连接的第一面板、第二面板、第三面板、第四面板,所述第一面板和所述第三面板间隔相对设置,所述第二面板和所述第四面板间隔相对设置,其中一个所述新风进风口设于所述第一面板上,另外两个所述新风进风口分别设于所述第二面板和所述第四面板上,两个所述内循环进风口分别设于所述第二面板和所述第四面板上,所述空气处理出风口设于所述端部面板上。
可选地,所述风机包括设于所述空气处理风道内的离心风轮和安装于所述空气处理风道内以用于驱动所述离心风轮转动的驱动电机。
可选地,所述离心风轮为前向式离心风轮,所述前向式离心风轮外罩设有导风蜗壳。
可选地,所述空气处理组件包括净化过滤网和/或加湿结构。
可选地,所述空气处理组件包括净化过滤网和加湿结构,所述净化过滤网设于所述空气处理进风口与所述加湿结构之间。
可选地,所述加湿结构包括水槽、转动安装于所述水槽内的水洗轮、用于驱动所述水洗轮转动的水洗电机和设于所述净化过滤网与所述水洗轮之间的加湿网,所述空气处理模块还包括用于向所述水槽内供水以保持所述水槽内水位的水箱;或者,
所述加湿结构包括水槽和底部浸于所述水槽内的加湿棉,所述空气处理模块还包括用于向所述水槽内供水以保持所述水槽内水位的水箱。
可选地,在所述空气处理进风口与所述空气处理组件之间还设有电辅热部件。
本发明的第二个目的在于提供一种空调器,包括空调室内换热模块和上述的空气处理模块,所述空调室内换热模块设有与室内连通的换热进风口、与室内连通的换热出风口和连通所述换热进风口与所述换热出风口的换热风道,所述空气处理模块设于所述空调室内换热模块的一端,所述换热风道与所述空气处理风道相互独立设置。
可选地,所述空调室内换热模块以竖直方式设置,所述空气处理模块设于所述空调室内换热模块的底端,所述空气处理出风口设于所述空气处理模块的底部。
可选地,所述换热风道内设有两个贯流风轮,所述换热出风口设有两个,所述换热进风口设于所述空调室内换热模块的正面,两个所述换热出风口分别设于所述空调室内换热模块的两侧面。
可选地,所述空调器为壁挂机。
本发明提供的空气处理模块及空调器,通过在空气处理模块内设置空气处理风道,并在空气处理风道内设置空气处理组件,这样,使得从空气处理进风口进入空气处理风道内的空气,会先经过空气处理组件处理后再从空气处理出风口排出空气处理模块外,从而达到有效调节改善空气质量的目的。同时,其通过将空气处理组件并排设置于风机的径向旁侧,这样,空气处理组件和风机不是沿风机轴向设置的,从而利于将空气处理模块及空调器设计得比较薄。此外,由于空气处理风道与空调器本身的换热风道是相互独立的,所以空气处理模块的设置不会影响空调器本身换热功能的正常运行,进而可在不影响空调器换热功能的情形下,实现改善空气质量的效果。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1是本发明实施例一提供的空调器的立体示意图;
图2是本发明实施例一提供的空调器的主视平面示意图;
图3是图2中A-A的剖面示意图;
图4是图2中B-B的剖面示意图;
图5是图2中C-C的剖面示意图;
图6是本发明实施例一提供的空调器的左视平面示意图;
图7是本发明实施例一提供的空调处理模块的整体结构示意图;
图8是本发明实施例一提供的空调处理模块去掉顶部部分后的结构示意图;
图9是本发明实施例一提供的空调处理模块的内部俯视结构简图;
图10是本发明实施例一提供的空调处理模块的内部主视结构简图;
图11是本发明实施例二提供的空调处理模块的内部俯视结构简图。
其中,图4、图9、图10和图11中的虚线箭头为空气的流向标识。
附图标号说明:
标号 名称 标号 名称
100 空气处理模块 1 外壳
11 空气处理进风口 111 新风进风口
112 内循环进风口 12 空气处理出风口
13 空气处理风道 131 进风腔
132 出风腔 133 空气处理腔
14 第一面板 15 第二面板
16 第三面板 17 第四面板
18 端部面板 2 空气处理组件
21 净化过滤网 211 空气处理进风面
22 加湿结构 221 水槽
222 水洗轮 223 水洗电机
224 加湿网 3 风机
31 离心风轮 311 吸风端面
32 驱动电机 33 导风蜗壳
4 水箱 5 电辅热部件
200 室内换热模块 201 换热进风口
202 换热出风口 203 换热风道
204 贯流风轮 205 换热器
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明的一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
需要说明,本发明实施例中所有方向性指示(诸如上、下、左、右、前、后……)仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
还需要说明的是,当元件被称为“固定于”或“设置于”另一个元件上时,它可以直接在另一个元件上或者可能同时存在居中元件。当一个元件被称为是“连接”另一个元件,它可以是直接连接另一个元件或者可能同时存在居中元件。
另外,在本发明中涉及“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本发明要求的保护范围之内。
实施例一:
如图1-10所示,本发明实施例一提供的空气处理模块100,用于空调器,其包括外壳1、空气处理组件2和风机3,外壳1设有空气处理进风口11、空气处理出风口12和连通空气处理进风口11与空气处理出风口12且相对空调器之换热风道203独立设置的空气处理风道13,风机3和空气处理组件2都设于空气处理风道13内,且风机3的轴向呈水平设置,空气处理组件2沿水平方向设置于风机3的径向旁侧。
本发明实施例一提供的空气处理模块100,通过在空气处理模块100内设置空气处理风道13,并在空气处理风道13内设置空气处理组件2,这样,使得从空气处理进风口11进入空气处理风道13内的空气,会先经过空气处理组件2处理后再从空气处理出风口12排出空气处理模块100外,从而达到有效改善空气质量的目的。同时,其通过将空气处理组件2并排设置于风机3的径向旁侧,这样,空气处理组件2和风机3不是沿风机3轴向设置的,从而利于将空气处理模块100及空调器设计得比较薄。此外,由于空气处理风道13与空调器本身的换热风道203是相互独立的,所以空气处理模块100的设置不会影响空调器本身换热功能的正常运行,进而可在不影响空调器换热功能的情形下,实现改善空气质量的效果。
优选地,空气处理风道13包括与空气处理进风口11连通的进风腔131、与空气处理出风口12连通的出风腔132和连通进风腔131与出风腔132的空气处理腔133,空气处理腔133和出风腔132位于进风腔131的同一侧,空气处理腔133和出风腔132并排设置并分别靠近进风腔131的两端设置,风机3以轴向水平放置的方式设置于出风腔132内,空气处理组件2设于空气处理腔133内。进风腔131的设置,利于保证在空气处理进风口11设有多个的情形下,从各空气处理进风口11进入外壳1内的空气都能全部先经过空气处理组件2处理后再排出,充分保证了空气处理模块100改善空气质量的效果。此外,将空气处理腔133和出风腔132设于位于进风腔131的同一侧,空气处理腔133和出风腔132并排设置并分别靠近进风腔131的两端设置,其结构比较紧凑,利于将空气处理模块100设计得比较薄。
优选地,外壳1包括沿周向环绕设置且相互连接的第一面板14、第二面板15、第三面板16和第四面板17,第一面板14和第三面板16间隔相对设置,第二面板15和第四面板17间隔相对设置,进风腔131靠近第一面板14设置,空气处理腔133和出风腔132设于进风腔131与第二面板15之间,空气处理腔133靠近第二面板15设置,风机3靠近第四面板17设置。第一面板14、第二面板15、第三面板16和第四面板17分别位于四个周向方位,进风腔131沿第一面板14从第二面板15延伸至第四面板17,空气处理腔133和出风腔132沿第三面板16从第二面板15朝向第四面板17依次分布。此外,通过对外壳1的结构进行优化设计,并对进风腔131、空气处理腔133和出风腔132的位置分布进行优化设计,可以达到将空气处理模块100设计薄的目的。
优选地,风机3具有靠近第三面板16的吸风端面311,吸风端面311相对第三面板16平行设置,这样,可使得风机3在风壳内的安装定位结构比较容易设置,且风机3安装占用外壳1的厚度空间也会比较小,利于空气处理模块100的薄型化设计。
优选地,第一面板14相对第三面板16平行设置,这样,可使得外壳1的形状比较规则,易于加工制造,且利于保证产品的美观性。
优选地,空气处理组件2具有靠近第一面板14的空气处理进风面,空气处理进风面平行于第一面板14设置,这样,可使得空气处理组件2在外壳1厚度方向占用的空间较小,从而利于空气处理模块100的薄化设计。
优选地,空气处理进风口11包括与室外空气连通的新风进风口111和/或与室内空气连通的内循环进风口112,即空气处理进风口11可只包括新风进风口111和内循环进风口112中的任意一者,也可同时包括新风进风口111和内循环进风口112。当空气处理进风口11只包括新风进风口111时,空气处理模块100只具有对室外空气处理并引入室内的功效;当空气处理进风口11只包括内循环进风口112时,空气处理模块100只具有对室内空气进行循环处理以改善空气质量的功效;而当空气处理进风口11同时包括新风进风口111和内循环进风口112时,空气处理模块100同时具有对室外空气处理并引入室内的功效和对室内空气进行循环处理以改善空气质量的功效。具体应用中,可根据不同用户的需求,对空气处理进风口11进行优化设计。
作为本实施例的一较佳实施方案,空气处理进风口11包括与室外空气连通的新风进风口111和与室内空气连通的内循环进风口112。本实施方案中,空气处理模块100同时具有对室外空气处理并引入室内的功效和对室内空气进行循环处理以改善空气质量的功效,空气处理模块100的功能比较齐全,利于满足用户对多功能空气处理模块100的需求。
优选地,新风进风口111处设有用于控制新风进风口111开关的第一控制风门,且/或,内循环进风口112处设有用于控制内循环进风口112开关的第二控制风门。作为本实施例的一较佳实施方案,新风进风口111处设有用于控制新风进风口111开关的第一控制风门(图未示),且内循环进风口112处设有用于控制内循环进风口112开关的第二控制风门(图未示),这样,使得新风进风口111的开关和内循环进风口112的开关都能得到有效控制。具体应用中,当需要使用空气处理模块100的引入室外新风功能时,则控制第一控制风门开启新风进风口111、并控制第二控制风门关闭内循环进风口112即可;当需要使用空气处理模块100的室内空气循环净化功能时,则控制第一控制风门关闭新风进风口111、并控制第二控制风门开启内循环进风口112即可;而当需要同时使用空气处理模块100的引入室外新风功能和室内空气循环净化功能时,则控制第一控制风门开启新风进风口111、并控制第二控制风门开启内循环进风口112即可。
优选地,空气处理进风口11包括三个新风进风口111和两个内循环进风口112,外壳1包括端部面板18和分别设于端部面板18四周边缘且相互连接的第一面板14、第二面板15、第三面板16、第四面板17,第一面板14和第三面板16间隔相对设置,第二面板15和第四面板17间隔相对设置,其中一个新风进风口111设于第一面板14上,另外两个新风进风口111分别设于第二面板15和第四面板17上,两个内循环进风口112分别设于第二面板15和第四面板17上,空气处理出风口12设于端部面板18上。新风进风口111设有三个,可便于用户根据实际需求控制空气处理模块100引入室外空气的新风量。内循环进风口112设有两个,可便于用户根据实际需求控制空气处理模块100处理室内空气的内循环风量。当然了,具体应用中,新风进风口111的数量和内循环进风口的数量不限于此。
优选地,风机3包括设于空气处理风道13内的离心风轮31和安装于空气处理风道13内以用于驱动离心风轮31转动的驱动电机32。离心风轮31为轴向进风、径向出风的风轮。此处,风机3采用离心风轮31,利于减小空气处理模块100的厚度。
优选地,离心风轮31为前向式离心风轮,前向式离心风轮外罩设有导风蜗壳33。前向式离心风轮即前倾风轮,从前向式离心风轮的径向截面来看,叶片外侧延线和叶片该点转动方向的切线反向之间的夹角为钝角。导风蜗壳33用于将前向式离心风轮31径向甩出的风导引至空气处理出风口12处。
优选地,空气处理组件2包括净化过滤网21和/或加湿结构22,即空气处理组件2可只包括净化过滤网21和加湿结构22中的任意一个,也可同时包括净化过滤网21和加湿结构22。净化过滤网21主要用于滤除空气中一定体积以上的颗粒。加湿结构22主要用于增加空气的湿度。当空气处理组件2只包括净化过滤网21时,空气处理模块100只具有过滤空气悬浮颗粒的功效;当空气处理组件2只包括加湿结构22时,空气处理模块100只具有增加空气湿度的功效;而当空气处理组件2同时包括净化过滤网21和加湿结构22时,空气处理模块100同时具有过滤空气悬浮颗粒和增加空气湿度的功效。具体应用中,可根据不同用户的需求,对空气处理组件2的功效进行优化设计。
作为本实施例的一较佳实施方案,空气处理组件2包括净化过滤网21和加湿结构22,净化过滤网21设于空气处理进风口11与加湿结构22之间。上述空气处理进风面211即为净化过滤网21的进风面。本实施方案中,空气处理模块100同时具有过滤空气悬浮颗粒和增加空气湿度的功效,其改善空气质量的效果比较好,利于满足用户对高质量空气的需求。此外,本实施方案将净化过滤网21设于空气处理进风口11与加湿结构22之间,这样,可使得空气是先流经净化过滤网21再流经加湿结构22的,即加湿结构22沿空气在空气处理风道13内的流向位于净化过滤网21之后,从而利于防止因净化过滤网21湿度过大导致净化过滤网21失效的问题发生,充分保证了空气处理组件2过滤空气悬浮颗粒功效和增加空气湿度功效。
优选地,加湿结构22包括水槽221、转动安装于水槽221内的水洗轮222、用于驱动水洗轮222转动的水洗电机223和设于净化过滤网21与水洗轮222之间的加湿网224,空气处理模块100还包括用于向水槽221内供水以保持水槽221内水位的水箱4。水洗电机223启动时,可以驱动水洗轮222转动,水洗轮222的转动可带动水槽221内的水飞溅,飞溅的水一方面可起到水洗净化空气的作用,另一方面可将加湿网224打湿,使加湿网224起到加湿作用。具体应用中,用户通过对水洗电机223的控制可有效实现对空气处理模块100加湿功能的开关控制。当然了,具体应用中,加湿结构22不限于此,例如作为一个替代的方案,加湿结构22包括水槽221和底部浸于水槽221内的加湿棉,空气处理模块100还包括用于向水槽221内供水以保持水槽221内水位的水箱4。
优选地,加湿网224的出风面平行于空气处理进风面211设置,这样,利于空气处理模块100的薄型化设计。
优选地,在空气处理进风口11与空气处理组件2之间还设有电辅热部件5。电辅热部件5具体可为PTC(热敏电阻)加热器,PTC加热器具体为采用PTC陶瓷发热元件与铝管组成,其是一种自动恒温、省电、安全性能高的电加热器。电辅热部件5采用PTC加热器,具有热阻小、换热效率高、安全性能高的优点。电辅热部件5的设置,主要用于在空调器处于寒冷天气环境下制热时,对从新风进风口111进入空气处理模块100内的冷空气先进行加热,从而可以防止从空气处理模块100吹入室内的空气过冷影响室内制热效果差的情形发生,进而利于提高用户使用产品的舒适性。
本实施例中的空气处理模块100,可对空气参数(清洁度、湿度等参数)进行调节,且不会影响空调器的正常换热工作。本实施例中,由于空气处理模块100中的所有进风全部需要经过加湿网224进行加湿,所以其加湿效果好;同时由于加湿网224置于净化过滤网21之后,故,其可防止净化过滤网21因湿度过大而导致潜在失效的问题发生;此外,其通过水洗电机223和水洗轮222的设置,这样,可以有效控制是否对空气进行加湿处理。
进一步地,本实施例还提供了空调器,其包括空调室内换热模块200和上述的空气处理模块100,空调室内换热模块200设有与室内连通的换热进风口201、与室内连通的换热出风口202和连通换热进风口201与换热出风口202的换热风道203,空气处理模块100设于空调室内换热模块200的一端,换热风道203与空气处理风道13相互独立设置。本实施例提供的空调器,由于采用了上述的空气处理模块100,故,可在不影响空调器换热功能的情形下,实现改善空气质量的效果,从而可提高空调器的综合性能。
优选地,空调器为壁挂机。本实施例中,空气处理模块100的结构比较紧凑,体型比较小,应用于壁挂机上,效果较好。当然了,具体应用中,本实施例提供的空调器也可为柜机。
优选地,空调室内换热模块200以竖直方式设置,空气处理模块100设于空调室内换热模块200的底端,空气处理出风口12设于空气处理模块100的底部。空气处理出风口12设于空气处理模块100的底部,这样,使得空气处理模块100从底部向下吹风,利于防止空气处理模块100吹出的风直接对着用户吹,从而利于提高用户使用产品的舒适性。
优选地,换热风道203内设有换热器205和两个贯流风轮204,换热出风口202设有两个,换热进风口201设于空调室内换热模块200的正面,两个换热出风口202分别设于空调室内换热模块200的两侧面。空调室内换热模块200从两侧出风,利于防止空调室内换热模块200吹出的风直接对着用户吹,从而利于提高用户使用产品的舒适性。
具体地,空调室内换热模块200和空气处理模块100组装安装于室内后,空调室内换热模块200的换热进风口201和空气处理模块100的第三面板16位于空调器的正面;空气处理模块100的第一面板14和一个新风进风口111位于空调器的背面;空调室内换热模块200的两个换热出风口202分别设于空调器的两侧面,空气处理模块100的第二面板15和第四面板17分别位于空调器的两侧面;空气处理模块100的端部面板18位于空调器的底面。
实施例二:
本实施例提供的空气处理模块100及空调器,与实施例一的主要区别在于风机3吸风端面311与外壳1第三面板16之间的相对位置关系,具体体现在:如图1-10所示,实施例一中,吸风端面311相对第三面板16平行设置;而如图11所示,本实施例中,吸风端面311相对第三面板16倾斜设置。与实施例一相比,本实施例中风机3在风壳内的安装结构相对会复杂一点,风机3安装占用外壳1的厚度空间也会大一点,但是风机3的吸风效果会更好。
优选地,吸风端面311相对第三面板16倾斜的角度X大于0°且小于45°,这样,既利于保证风机3具有较好的吸风效果,又利于保证风机3安装占用外壳1的厚度空间不会太大,从而利于空气处理模块100及空调器的薄型化设计。
除了上述不同之外,本实施例提供的空气处理模块100及空调器的其它结构都可参照实施例一进行优化设计,在此不再详述。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是在本发明的发明构思下,利用本发明说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本发明的专利保护范围内。

Claims (20)

  1. 一种空气处理模块,用于空调器,其特征在于,所述空气处理模块包括外壳、空气处理组件和风机,所述外壳设有空气处理进风口、空气处理出风口和连通所述空气处理进风口与所述空气处理出风口且相对所述空调器之换热风道独立设置的空气处理风道,所述风机和所述空气处理组件都设于所述空气处理风道内,且所述风机的轴向呈水平设置,所述空气处理组件沿水平方向设置于所述风机的径向旁侧。
  2. 如权利要求1所述的空气处理模块,其特征在于,所述空气处理风道包括与所述空气处理进风口连通的进风腔、与所述空气处理出风口连通的出风腔和连通所述进风腔与所述出风腔的空气处理腔,所述空气处理腔和所述出风腔位于所述进风腔的同一侧,所述空气处理腔和所述出风腔并排设置并分别靠近所述进风腔的两端设置,所述风机以轴向水平放置的方式设置于所述出风腔内,所述空气处理组件设于所述空气处理腔内。
  3. 如权利要求2所述的空气处理模块,其特征在于,所述外壳包括沿周向环绕设置且相互连接的第一面板、第二面板、第三面板和第四面板,所述第一面板和所述第三面板间隔相对设置,所述第二面板和所述第四面板间隔相对设置,所述进风腔靠近所述第一面板设置,所述空气处理腔和所述出风腔设于所述进风腔与所述第二面板之间,所述空气处理腔靠近所述第二面板设置,所述风机靠近所述第四面板设置。
  4. 如权利要求3所述的空气处理模块,其特征在于,所述风机具有靠近所述第三面板的吸风端面,所述吸风端面相对所述第三面板平行设置或者所述吸风端面相对所述第三面板倾斜设置。
  5. 如权利要求4所述的空气处理模块,其特征在于,所述吸风端面相对所述第三面板倾斜的角度大于0°且小于45°。
  6. 如权利要求3所述的空气处理模块,其特征在于,所述第一面板相对所述第三面板平行设置;且/或,所述空气处理组件具有靠近所述第一面板的空气处理进风面,所述空气处理进风面平行于所述第一面板设置。
  7. 如权利要求1所述的空气处理模块,其特征在于,所述空气处理进风口包括与室外空气连通的新风进风口和/或与室内空气连通的内循环进风口。
  8. 如权利要求7所述的空气处理模块,其特征在于,所述新风进风口处设有用于控制所述新风进风口开关的第一控制风门,且/或,所述内循环进风口处设有用于控制所述内循环进风口开关的第二控制风门。
  9. 如权利要求8所述的空气处理模块,其特征在于,所述空气处理进风口包括三个所述新风进风口和两个所述内循环进风口,所述外壳包括端部面板和分别设于所述端部面板四周边缘且相互连接的第一面板、第二面板、第三面板、第四面板,所述第一面板和所述第三面板间隔相对设置,所述第二面板和所述第四面板间隔相对设置,其中一个所述新风进风口设于所述第一面板上,另外两个所述新风进风口分别设于所述第二面板和所述第四面板上,两个所述内循环进风口分别设于所述第二面板和所述第四面板上,所述空气处理出风口设于所述端部面板上。
  10. 如权利要求1所述的空气处理模块,其特征在于,所述风机包括设于所述空气处理风道内的离心风轮和安装于所述空气处理风道内以用于驱动所述离心风轮转动的驱动电机。
  11. 如权利要求10所述的空气处理模块,其特征在于,所述离心风轮为前向式离心风轮,所述前向式离心风轮外罩设有导风蜗壳。
  12. 如权利要求1所述的空气处理模块,其特征在于,所述空气处理组件包括净化过滤网和/或加湿结构。
  13. 如权利要求12所述的空气处理模块,其特征在于,所述空气处理组件包括净化过滤网和加湿结构,所述净化过滤网设于所述空气处理进风口与所述加湿结构之间。
  14. 如权利要求13所述的空气处理模块,其特征在于,所述加湿结构包括水槽、转动安装于所述水槽内的水洗轮、用于驱动所述水洗轮转动的水洗电机和设于所述净化过滤网与所述水洗轮之间的加湿网,所述空气处理模块还包括用于向所述水槽内供水以保持所述水槽内水位的水箱;或者,
    所述加湿结构包括水槽和底部浸于所述水槽内的加湿棉,所述空气处理模块还包括用于向所述水槽内供水以保持所述水槽内水位的水箱。
  15. 如权利要求1所述的空气处理模块,其特征在于,在所述空气处理进风口与所述空气处理组件之间还设有电辅热部件。
  16. 一种空调器,包括空调室内换热模块,所述空调室内换热模块设有与室内连通的换热进风口、与室内连通的换热出风口和连通所述换热进风口与所述换热出风口的换热风道,其特征在于,所述空调器还包括空气处理模块,所述空气处理模块包括外壳、空气处理组件和风机,所述外壳设有空气处理进风口、空气处理出风口和连通所述空气处理进风口与所述空气处理出风口且相对所述空调器之换热风道独立设置的空气处理风道,所述风机和所述空气处理组件都设于所述空气处理风道内,且所述风机的轴向呈水平设置,所述空气处理组件沿水平方向设置于所述风机的径向旁侧;
    所述空气处理模块设于所述空调室内换热模块的一端,所述换热风道与所述空气处理风道相互独立设置。
  17. 如权利要求16所述的空气处理模块,其特征在于,所述空气处理风道包括与所述空气处理进风口连通的进风腔、与所述空气处理出风口连通的出风腔和连通所述进风腔与所述出风腔的空气处理腔,所述空气处理腔和所述出风腔位于所述进风腔的同一侧,所述空气处理腔和所述出风腔并排设置并分别靠近所述进风腔的两端设置,所述风机以轴向水平放置的方式设置于所述出风腔内,所述空气处理组件设于所述空气处理腔内。
  18. 如权利要求16所述的空调器,其特征在于,所述空调室内换热模块以竖直方式设置,所述空气处理模块设于所述空调室内换热模块的底端,所述空气处理出风口设于所述空气处理模块的底部。
  19. 如权利要求18所述的空调器,其特征在于,所述换热风道内设有两个贯流风轮,所述换热出风口设有两个,所述换热进风口设于所述空调室内换热模块的正面,两个所述换热出风口分别设于所述空调室内换热模块的两侧面。
  20. 如权利要求16所述的空调器,其特征在于,所述空调器为壁挂机。
PCT/CN2018/072690 2017-08-18 2018-01-15 空气处理模块及空调器 WO2019033701A1 (zh)

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