CN210951539U - Indoor unit base and air conditioner - Google Patents

Indoor unit base and air conditioner Download PDF

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Publication number
CN210951539U
CN210951539U CN201921325396.1U CN201921325396U CN210951539U CN 210951539 U CN210951539 U CN 210951539U CN 201921325396 U CN201921325396 U CN 201921325396U CN 210951539 U CN210951539 U CN 210951539U
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China
Prior art keywords
water
indoor unit
unit base
atomizing
air conditioner
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CN201921325396.1U
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Inventor
张再君
于柳
胡阿强
蔡广
谭志凯
黎景宇
吕生森
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Aux Air Conditioning Co Ltd
Ningbo Aux Electric Co Ltd
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Aux Air Conditioning Co Ltd
Ningbo Aux Electric Co Ltd
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Priority to CN201921325396.1U priority Critical patent/CN210951539U/en
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  • Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)

Abstract

The utility model provides an indoor unit base and an air conditioner, which relates to the field of air conditioners, wherein a humidifying device is arranged on a water collecting tank of the indoor unit base, the humidifying device comprises an atomizing device and a condensed water guiding device, the condensed water guiding device guides water in the water collecting tank to the atomizing device, and the atomizing device is used for atomizing the water; the beneficial effects of the utility model are that, the comdenstion water in the make full use of refrigeration subassembly does not need the manual work to add water in addition when the humidification, has realized waste water reuse, has solved the phenomenon of dripping after current air conditioner starts, also makes the room air keep at certain humidity.

Description

Indoor unit base and air conditioner
Technical Field
The utility model relates to an air conditioner field particularly, relates to an indoor unit base and air conditioner.
Background
With the development of socio-economy, air conditioners have become an important part of people's offices and lives. The indoor set of air conditioner generally sets up in user's indoor environment, like bedroom, sitting room, when high temperature and high humidity weather operation refrigeration or dehumidification in summer, indoor heat exchanger's temperature is lower, the steam condensation in the indoor air that will flow through it, and the comdenstion water can flow along indoor heat exchanger's surface to discharge in drippage to the drain pipe, have following two problems:
1) when the air conditioner is cooled, indoor moisture can be continuously taken away, so that indoor air is dry, and users feel uncomfortable with dry throat, thirst and the like when the air conditioner is blown for a long time;
2) the air conditioner can be through the drain pipe drainage to outdoor at the comdenstion water that the in-process of operation produced, because installer does not handle the drain pipe, and the people that pass by downstairs often can be drenched by the discharged water, has caused a lot of inconveniences for people's life.
SUMMERY OF THE UTILITY MODEL
The utility model provides an among the prior art, the air conditioner arouses indoor dry phenomenon easily during operation, and the problem that the drain pipe department of air conditioner produced to drip.
In order to solve the problem, the utility model provides an indoor unit base, be provided with humidification device on the water catch bowl of indoor unit base, humidification device includes atomizing device and comdenstion water guider, the comdenstion water guider leads to atomizing device department with the water in the water catch bowl, atomizing device is used for atomizing water.
The humidifying device is arranged on the indoor unit base, and the condensed water in the water collecting tank is guided to the atomizing device to be atomized through the condensed water guiding device, so that the phenomenon that the condensed water is easy to remain on the indoor unit base is eliminated, and the service life of the indoor unit is prolonged; meanwhile, the condensed water generated during the operation of the air conditioner is utilized, the indoor environment can be humidified, the reuse of the waste water is realized, the water dripping phenomenon after the conventional air conditioner is started is avoided, and the indoor air is kept at a certain humidity.
Furthermore, one end of the water collecting tank is provided with a water outlet, and the condensed water guiding device is arranged at the other end, far away from the water outlet, of the water collecting tank.
The water outlet is arranged on the water collecting tank, and condensed water on the base of the indoor unit can flow out of the indoor unit through the water outlet on the water collecting tank and can also be atomized and humidified through the atomizing device; the condensed water guide device and the water outlet are respectively arranged at two ends of the water collecting tank, the condensed water guide device can blow all water drops attached to the side wall of the water collecting tank to the water outlet, and the problem that the condensed water is remained in the water collecting tank is solved.
Further, atomizing device includes at least one atomising head, be provided with a plurality of atomizing devices on the water catch bowl.
A plurality of atomizing devices are arranged on the water collecting tank, the generated water mist can be sprayed out along different directions of the upper part, the middle part and the lower part, and the indoor environment humidity can be balanced and comfortable.
Furthermore, a rotating mechanism is arranged between the atomizing device and the indoor unit base, and/or a rotating mechanism is arranged between the atomizing head and the atomizing device, and the atomizing head can rotate on the indoor unit base.
The water mist of the spray head can cover most of the air outlet after being adjusted and rotated. The rotation of atomising head can set up to manual regulation, also can set up to electric control, and the user can realize the orientation of different atomising heads through remote control unit, realizes the water smoke of required direction and adjusts.
Furthermore, a sliding device and a first driving mechanism are arranged on the water collecting tank, and the condensed water guiding device can move on the water collecting tank along the sliding device under the driving of the first driving mechanism.
When the condensed water guide device slides on the water collecting tank, the blowing effect of the condensed water on the side wall of the water collecting tank is improved, and the condensed water on the water collecting tank can be completely blown into the atomizing device for atomization or discharged from the water outlet.
Furthermore, a threaded rod is arranged on the water collecting tank, and threads matched with the threaded rod are arranged on the condensed water guiding device.
Set up the threaded rod on the water catch bowl, through rotating the threaded rod, under thread engagement's effect, can realize the lateral shifting of comdenstion water guider in the water catch bowl.
Further, the atomizing device is an ultrasonic atomizer, and the condensed water guide device is a fan or an air pump.
Atomizing the condensed water into ultrafine particles by using an ultrasonic atomizer so as to achieve the aim of atomization; the fan or the air pump is utilized, the occupied space is small, and the effect of blowing off the condensed water can be achieved.
An air conditioner, the air conditioner includes above-mentioned indoor set base.
The application provides an air conditioner, in the refrigeration air current that the indoor set blew out, produce atomizing steam in air outlet department, form the cold air of certain humidity, be favorable to reducing the indoor temperature fast, the mouth of blowing that the steam that produces passes through the air conditioner blows to the room in addition, do not need solitary fan, the function that air conditioning system can refrigerate and can the humidification has been realized, and the interior comdenstion water of make full use of refrigeration subassembly, do not need the manual work to add water in addition when the humidification, the improper problem of air conditioner drain pipe processing has been solved like this again, waste water reuse has been realized, the phenomenon of dripping after the current air conditioner starts has been solved, also make the room air keep at certain humidity.
Further, be provided with on the indoor set base and hold the chamber, the water catch bowl sets up the both sides that hold the chamber.
Set up on indoor set base and hold the chamber, hold the chamber and be used for placing ventilation assembly such as the evaporimeter of air conditioner and cross-flow fan, adnexed comdenstion water can assemble in the water catch bowl that holds the chamber both sides on the evaporimeter, avoids the comdenstion water to ooze the indoor set of air conditioner.
Furthermore, hold and be provided with ventilation assembly in the chamber, atomizing device's atomising head sets up towards ventilation assembly's air outlet.
The ventilation part assembly comprises a cross-flow fan, water mist generated by the atomizing spray head covers the air outlet of the air conditioner and is blown indoors through the cross-flow fan, and the indoor environment humidity can be balanced and comfortable.
Compared with the prior art, indoor unit base and air conditioner have following advantage:
1) condensed water on the indoor unit base is drained to a water drainage port or an atomization device, so that the problem that the condensed water is remained in a water collection tank in the prior art is solved;
2) the air conditioner can refrigerate and can humidify, the condensed water in the refrigeration assembly is fully utilized, and manual additional water adding is not needed during humidification, so that the problem of improper treatment of the air conditioner drain pipe is solved, the waste water recycling is realized, the water dripping phenomenon after the existing air conditioner is started is solved, and the indoor air is kept at a certain humidity.
Drawings
Fig. 1 is a schematic structural view of an indoor unit base of the present invention;
fig. 2 is an exploded view of the air conditioner according to the present invention;
fig. 3 is a schematic structural view of the condensed water guiding device and the sliding device in the first water collecting tank of the present invention;
fig. 4 is a schematic structural view of the condensed water guiding device and the threaded rod in the first water collecting tank of the present invention;
fig. 5 is a schematic view illustrating the coverage adjustment of the atomized water of the air conditioner of the present invention.
Description of reference numerals:
1-indoor machine base, 10-water collecting tank, 101-first water collecting tank, 102-second water collecting tank, 103-third water collecting tank, 11-water discharging port, 12-sliding device, 13-threaded rod, 14-containing cavity, 2-atomizing device, 3-condensed water guiding device, 4-piston, 5-front panel and 6-end cover plate.
Detailed Description
In order to make the aforementioned objects, features and advantages of the present invention more comprehensible, embodiments accompanied with figures are described in detail below.
Example 1
As shown in fig. 1-4, the present application provides an indoor unit base, be provided with humidification device on the water catch bowl 10 of indoor unit base 1, humidification device includes atomizing device 2 and comdenstion water guider 3, and the comdenstion water guider 3 of locating leads the water in the water catch bowl 10 to atomizing device 2 department, atomizes water through atomizing device.
When the air conditioner is operated, especially in a refrigeration state, condensation is easily generated on the evaporator, and when the condensation water is excessive, the condensation water collected in the water collection tank 10 easily causes certain potential safety hazard to the indoor unit. This application is through setting up humidification device on water catch bowl 10, and after atomizing device 2 atomizes the condensate water in water catch bowl 10, water smoke blows to indoorly along with the air outlet of air conditioner, carries out the humidification to the indoor environment. Under the blowing of the condensate guide 3, condensate is prevented from remaining on the side wall of the water collection sump 10.
The humidifying device is arranged on the indoor unit base 1, so that the phenomenon that condensed water is easy to remain on the indoor unit base 1 is eliminated, and the service life of the indoor unit is prolonged; meanwhile, the condensed water generated during the operation of the air conditioner is utilized to humidify the indoor environment.
Preferably, a drain port 11 is provided at one end of the water collection tank 10, and condensed water on the indoor unit base 1 or an evaporator of an air conditioner is collected from the water collection tank 10 to the drain port 11 and is discharged out of the indoor unit through the drain pipe. The condensate guide 3 is arranged at the other end of the water collection sump 10 remote from the drain opening 11,
the comdenstion water guider 3 moves the comdenstion water in the water catch bowl 10 to atomizing device 2 department, comdenstion water guider 3 can be fan or air pump, the air outlet of comdenstion water guider 3 corresponds water catch bowl 10, leads the comdenstion water on the water catch bowl 10 lateral wall to atomizing device 2 departments and atomizes. In the application, the condensed water guide device 3 is arranged at one end of the water collecting tank 10, the atomizing device 2 is arranged at the other end of the water collecting tank, and all the condensed water remained on the indoor unit base 1 is discharged out of the indoor unit.
As shown in fig. 1, in the present embodiment, an accommodating cavity 14 is provided on the indoor unit base 1, the water collecting grooves 10 are provided at both sides of the accommodating cavity 14, the water collecting grooves 10 include a first water collecting groove 101 and a second water collecting groove 102, and a third water collecting groove 103 is provided at an end portion of the water collecting grooves 10. Wherein the first water collecting channel 101 and the second water collecting channel 102 are used for collecting condensed water on the indoor unit base 1, and the third water collecting channel 103 is used for communicating the first water collecting channel 101 with the second water collecting channel 102. A water outlet 11 is provided at an end of the first water collecting tank 101 and/or the second water collecting tank 102, and the water outlet 11 is connected to a water discharge pipe to discharge the condensed water in the water collecting tank 10 to the outside of the indoor unit.
Preferably, the atomizing means 2 comprises at least one spray head, and a plurality of atomizing means are provided on the water collection sump 10. The water mist generated by the atomization device 2 is blown out from an air outlet on the indoor unit base 1 through an atomizing head.
As shown in fig. 1, in the present embodiment, a plurality of atomizing devices 2 are disposed on the first water collecting tank 101 and the second water collecting tank 102, and the mist generated by the atomizing devices 2 is ejected from the air outlet in the up, middle, and down directions.
Preferably, a control module is arranged on the base 1 of the indoor unit, the control module is connected with the plurality of atomization devices 2, and the control module is used for respectively controlling the starting and stopping of the atomizing heads of the atomization devices 2 at different positions, so that the selective generation of multi-directional atomizing at the air outlet in the vertical direction is realized. The water mist generated by the atomizing spray head covers the air outlet of the air conditioner and is blown to the indoor through the cross flow fan, and a user can control the air conditioner to open the atomizing devices 2 at different positions through the remote control device so as to realize humidity sending in a direction and realize balance and comfort of indoor environment humidity.
The type of the atomizing device 2 includes, but is not limited to, an ultrasonic atomizer. The atomization device 2 comprises an inner atomization sheet, and when the atomization device works, the atomization sheet generates high-frequency oscillation to throw water away from the water surface and ionize condensed water into ultra-micro particles, so that the atomization purpose is achieved.
Example 2
The application still provides an air conditioner, the air conditioner includes indoor set and off-premises station, as shown in fig. 2, the indoor set includes front panel 5 and end cover 6 in the indoor set, including in embodiment 1 the indoor set base, be provided with on indoor set base 1 and hold chamber 14, it is provided with ventilation assembly in the chamber 14 to hold, atomizing device 2's atomising head, ventilation assembly includes cross-flow fan, atomizing device 2's atomising head sets up towards ventilation assembly's air outlet. The atomizing device 2 is arranged at the air outlet of the indoor unit, so that air flow can be enhanced, and generated water mist can be brought into a room from the air flow of the air outlet in time.
Preferably, a stopper is provided at the drain opening 11, and the stopper can control the flow of the condensed water in the water collection tank 10. When the air conditioner needs to be humidified, the stop piece is controlled to block the water outlet 11, and at the moment, all the condensed water in the water collecting tank 10 can flow to the atomizing device 2 for atomizing treatment.
The application provides an air conditioner, with humidifier function integration in the air conditioner, utilize the comdenstion water of water catch bowl 10 to become into the water fog through atomizing device 2, through atomising head and through-flow fan with even the blowing of water fog to the indoor space, reach the purpose that increases indoor environment humidity from the face.
When the air conditioner stops operating, the atomization device 2 and the condensed water guide device 3 continue operating, and the air conditioner is automatically closed after all the condensed water remained in the water collecting tank 10 is atomized and blown into the room.
The application provides an air conditioner, in the refrigeration air current that the indoor set blew out, produce atomizing steam in air outlet department, form the cold air of certain humidity, be favorable to reducing the indoor temperature fast, the mouth of blowing that the steam that produces passes through the air conditioner blows to the room in addition, do not need solitary fan, the function that air conditioning system can refrigerate and can the humidification has been realized, and the interior comdenstion water of make full use of refrigeration subassembly, do not need the manual work to add water in addition when the humidification, the improper problem of air conditioner drain pipe processing has been solved like this again, waste water reuse has been realized, the phenomenon of dripping after the current air conditioner starts has been solved, also make the room air keep at certain humidity.
Example 3
In this embodiment, a humidifying device on an indoor unit base 1 is further improved on the basis of embodiments 1 and 2.
In embodiment 1, a plurality of atomizing devices 2 are provided in the water collection tank 10, and humidification processing in different directions is realized by controlling the opening and closing of the atomizing heads of the atomizing devices 2 at different positions.
In the embodiment, a rotating mechanism is arranged between the indoor unit base 1 and the atomizing head, and/or a rotating mechanism is arranged between the atomizing head and the atomizing device 2, and the atomizing head can be adjusted and rotated on the indoor unit base 1.
As shown in fig. 5, the conical water mist generated by the atomizing head is mainly distributed on one side of the air outlet, and after adjustment and rotation, the water mist of the atomizing head can cover most of the area of the air outlet. The rotation of atomising head can set up to manual regulation, also can set up to electric control, is connected with air conditioning system's automatically controlled box, and the user can realize the orientation of different atomising heads through remote control unit, realizes the water smoke of required direction and adjusts.
Preferably, the atomizing spray head can be transversely adjusted and rotated along the direction of the air duct assembly, and can also be adjusted along the air blowing direction, so that the humidification conditions in different indoor directions can be accurately controlled, atomized water is uniformly distributed in a room, and the coverage range of water mist generated by condensed water is further improved.
Example 4
In this embodiment, a sliding device 12 and a first driving mechanism are disposed on the water collection tank 10, and the condensed water guiding device 3 can move on the water collection tank 10 along the sliding device 12 under the driving of the first driving mechanism.
As shown in fig. 3 to 4, the condensed water guide 3 is provided at the right end of the water collection sump 10. In order to improve the treatment of the condensate water attached to the side wall of the water collecting tank 10 by the condensate water guiding device 3, the condensate water guiding device 3 can slide laterally on the water collecting tank 10 along the sliding device 12, and during the sliding process, the condensate water guiding device 3 can blow off condensate water drops on the water collecting tank 10, and all the condensate water on the water collecting tank 10 is blown into the atomizing device 2 for atomization.
Preferably, as shown in fig. 3, the sliding means 12 is a sliding bar or a sliding rail, and the condensed water guide 3 is moved laterally on the water collection sump 10 along the sliding means 12. The condensed water guiding device 3 is matched with an electric control structure of the air conditioner, and a user can realize the movement of the condensed water guiding device 3 through a remote control device.
Further, as shown in fig. 4, a threaded rod 13 may be disposed on the water collection tank 10, a thread engaged with the threaded rod 13 is disposed on the condensed water guide device 3, and the condensed water guide device 3 is in threaded connection with the threaded rod 13. When the threaded rod 13 rotates, the condensate guide 3 is moved laterally.
Example 5
In this embodiment, the condensed water guiding device 3 is a piston provided with a rubber pad, and the piston can move in the water collecting tank 10 from one end of the water collecting tank 10 to the other end. And discharging the condensed water attached to the side wall of the water collecting tank 10 to the atomizing device 2 for atomizing or discharging to the water discharge port 11 for discharging from the indoor unit.
The movement of the piston in the water collection sump 10 is the same as that of embodiment 4, and the lateral movement of the piston in the water collection sump 10 is achieved by a sliding device 12, such as a sliding rod or a sliding rail structure, which will not be described in detail. Without limitation, all structures that can achieve the movement of the piston in the sump 10 can be applied to the indoor unit base or the air conditioner of the present application.
Example 6
In this embodiment, the water collecting tank 10 is detachably disposed on the indoor unit base 1, a second driving mechanism is disposed between the water collecting tank 10 and the indoor unit base 1 at an end away from the water outlet 10, the water collecting tank 10 can be driven by the second driving mechanism, and one end of the water collecting tank 10 is lifted up by a certain angle, so that an inclination angle is formed between the water collecting tank 10 and a horizontal plane, and condensed water attached to a wall of the water collecting tank 10 can automatically flow to the water outlet 11 under the action of gravity. By matching with the atomizing device 2 arranged at the water outlet 10, the condensed water can be blown into the room along with the cross-flow fan through the atomizing device 2, and can also be discharged out of the room through the water outlet 10.
When the air conditioner normally operates, the water collecting tank 10 is horizontally arranged, condensed water is uniformly attached to the indoor machine base 1 and the water collecting tank 10, and the atomization device 2 uniformly generates water mist to humidify the indoor space in a humidification mode of the air conditioner; when the air conditioner stops operating, the water collecting tank 10 is lifted up under the driving of the second driving mechanism, an inclination angle is generated between the water collecting tank 10 and the horizontal plane, and the condensed water on the water collecting tank 10 is discharged to the water outlet 11.
The water collecting tank 10 may also be provided with the air blowing device 3 as in embodiment 1 to further improve the fluidity of the condensed water. Further, the water collection tank 10 may be provided with a sliding structure as in embodiment 5, so as to realize the movement of the air blowing device 3 on the water collection tank 10.
Although the present invention is disclosed above, the present invention is not limited thereto. Various changes and modifications may be effected therein by one of ordinary skill in the pertinent art without departing from the scope or spirit of the present invention, and the scope of the present invention is defined by the appended claims.

Claims (10)

1. The utility model provides an indoor unit base, its characterized in that, be provided with humidification device on water catch bowl (10) of indoor unit base (1), humidification device includes atomizing device (2) and comdenstion water guider (3), comdenstion water guider (3) are with the water direction to atomizing device (2) department in water catch bowl (10), atomizing device (2) are used for atomizing water.
2. Indoor unit base according to claim 1, characterized in that one end of the water collection gutter (10) is provided with a water discharge opening (11), and the condensate guide (3) is arranged at the other end of the water collection gutter (10) remote from the water discharge opening (11).
3. Indoor unit base according to claim 1, characterized in that the atomizing means (2) comprise at least one spray head, and that the water collection sump (10) is provided with a plurality of atomizing means (2).
4. Indoor unit base according to claim 3, characterized in that a rotation mechanism is arranged between the atomizing device (2) and the indoor unit base (1), and/or a rotation mechanism is arranged between the atomizing head and the atomizing device (2), and the atomizing head can rotate on the indoor unit base (1).
5. Indoor unit base according to claim 1, characterized in that the catch basin (10) is provided with a sliding device (12) and a first driving mechanism, and the condensate guide (3) is driven by the first driving mechanism to move along the sliding device (12) on the catch basin (10).
6. Indoor unit base according to claim 1, characterized in that the water collection trough (10) is provided with a threaded rod (13) and the condensate guide (3) is provided with a thread that cooperates with the threaded rod (13).
7. Indoor unit base according to claim 1, characterized in that the atomizing device (2) is an ultrasonic atomizer and the condensate guiding device (3) is a fan or an air pump.
8. An air conditioner characterized in that the air conditioner comprises the indoor unit base of any one of claims 1 to 7.
9. The air conditioner according to claim 8, wherein a receiving cavity (14) is provided on the indoor unit base (1), and the water collecting grooves (10) are provided at both sides of the receiving cavity (14).
10. Air conditioner according to claim 9, characterized in that a ventilation assembly is arranged in the housing chamber (14), the spray head of the atomizing device (2) being arranged towards the outlet opening of the ventilation assembly.
CN201921325396.1U 2019-08-15 2019-08-15 Indoor unit base and air conditioner Active CN210951539U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921325396.1U CN210951539U (en) 2019-08-15 2019-08-15 Indoor unit base and air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921325396.1U CN210951539U (en) 2019-08-15 2019-08-15 Indoor unit base and air conditioner

Publications (1)

Publication Number Publication Date
CN210951539U true CN210951539U (en) 2020-07-07

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CN201921325396.1U Active CN210951539U (en) 2019-08-15 2019-08-15 Indoor unit base and air conditioner

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111780312A (en) * 2020-07-10 2020-10-16 珠海市荣成科技有限公司 Multipoint humidification system and control method thereof
CN112212493A (en) * 2020-09-15 2021-01-12 安徽美博智能科技有限公司 Air conditioner condensate water recycling device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111780312A (en) * 2020-07-10 2020-10-16 珠海市荣成科技有限公司 Multipoint humidification system and control method thereof
CN112212493A (en) * 2020-09-15 2021-01-12 安徽美博智能科技有限公司 Air conditioner condensate water recycling device

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