CN211400081U - Air conditioner - Google Patents

Air conditioner Download PDF

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Publication number
CN211400081U
CN211400081U CN201922312122.5U CN201922312122U CN211400081U CN 211400081 U CN211400081 U CN 211400081U CN 201922312122 U CN201922312122 U CN 201922312122U CN 211400081 U CN211400081 U CN 211400081U
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China
Prior art keywords
water
heat exchanger
outdoor
fan
outdoor heat
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CN201922312122.5U
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Chinese (zh)
Inventor
刘洋
宋旭彤
徐亚男
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Qingdao Hisense Hitachi Air Conditioning System Co Ltd
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Qingdao Hisense Hitachi Air Conditioning System Co Ltd
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Priority to CN201922312122.5U priority Critical patent/CN211400081U/en
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Publication of CN211400081U publication Critical patent/CN211400081U/en
Priority to PCT/CN2020/116589 priority patent/WO2021120743A1/en
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Abstract

The utility model discloses an air conditioner, include: a housing configured with an air inlet and an air outlet; an outdoor heat exchanger disposed in the housing; the outdoor fan comprises a motor and a fan, the fan is arranged on a rotating shaft of the motor, and a water spraying part for spraying water to the outdoor heat exchanger is arranged on the fan; and the electromagnetic heating assembly is used for selectively heating air before heat exchange with the outdoor heat exchanger when the outdoor fan rotates reversely. The device can automatically remove dirt on the surface of the outdoor heat exchanger, and can be adaptive to the external environment state, so that the heat exchange efficiency of the outdoor heat exchanger is improved, and the energy consumption of an air conditioner is reduced.

Description

Air conditioner
Technical Field
The utility model relates to the technical field of household appliances, especially, relate to an air conditioner.
Background
Air conditioners are household appliances commonly used in daily life, and are classified into wall-mounted air conditioners and cabinet air conditioners. Among them, the air conditioner generally includes an indoor unit installed at an indoor side and an outdoor unit installed at an outdoor side.
An outdoor unit of an air conditioner generally includes a casing, and a compressor, an outdoor heat exchanger, and an outdoor fan provided in the casing. In the practical use process, the outdoor unit is arranged in the outdoor environment, on one hand, external wind dust particles are easy to adhere to the surface of the outdoor heat exchanger to cause the blockage of the outdoor heat exchanger, on the other hand, the blockage of the outdoor heat exchanger can be caused due to frosting in winter, and therefore the wind resistance of the outdoor heat exchanger is increased and the heat exchange efficiency is reduced. Meanwhile, the heat exchange efficiency of the outdoor heat exchanger is also affected by the outside temperature, and the heat exchange efficiency of the outdoor heat exchanger is reduced under the condition of too low temperature or too high temperature.
In view of this, how to design a technique that can the external environment state of self-adaptation and improve outdoor heat exchanger's heat exchange efficiency in order to reduce the air conditioner energy consumption is the utility model discloses the technical problem that will solve.
SUMMERY OF THE UTILITY MODEL
For solving among the prior art problem that the air conditioner blows directly and leads to user experience nature poor, the utility model provides an air conditioner realizes can the automatic clear outdoor heat exchanger surface the dirt to can the external environment state of self-adaptation, with the heat exchange efficiency who improves outdoor heat exchanger, reduce the air conditioner energy consumption.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model provides an air conditioner, include:
a housing configured with an air inlet and an air outlet;
an outdoor heat exchanger disposed in the housing;
the outdoor fan comprises a motor and a fan, the fan is arranged on a rotating shaft of the motor, and a water spraying part for spraying water to the outdoor heat exchanger is arranged on the fan;
and the electromagnetic heating assembly is used for selectively heating air before heat exchange with the outdoor heat exchanger when the outdoor fan rotates reversely.
Further, under the air conditioner refrigeration mode, if the external environment temperature is higher than the set maximum temperature value, the outdoor fan reverses, and meanwhile, water output by the water spraying part is thrown onto the outdoor heat exchanger.
Further, in the heating mode of the air conditioner, if the external environment temperature is lower than the set minimum temperature value, the outdoor fan is reversed, and meanwhile, the electromagnetic heating assembly is electrified to heat the air before exchanging heat with the outdoor heat exchanger.
Further, when the wind resistance generated by the outdoor heat exchanger is larger than the set wind resistance value, the outdoor fan rotates reversely, meanwhile, water output by the water spraying part is thrown onto the outdoor heat exchanger, and/or the electromagnetic heating assembly is electrified to heat air before exchanging heat with the outdoor heat exchanger.
Further, the electromagnetic heating assembly includes:
the electromagnetic coil is used for generating a magnetic field when being electrified.
Further, the electromagnetic heating assembly further comprises:
a metal induction heating member located in a magnetic field formed by the electromagnetic coil.
Further, the fan comprises a hub and a plurality of blades, the blades are arranged on the hub, a water storage part is arranged on the hub, water flow channels are arranged on the blades, and the water flow channels are communicated with the water storage part to form the water spraying part;
the air conditioner further includes:
a water supply assembly for supplying water to the water storage portion.
Furthermore, the water supply assembly comprises a water storage tank and a water pump, a water inlet of the water pump is communicated with the inside of the water storage tank, and water output by the water pump is supplied to the water storage part.
Further, the water flow channel is a diversion water channel arranged on the surface of the blade; or the water flow channel is a diversion water pipe arranged on the blade.
Further, the front surface of the shell is provided with the air outlet, the side surface and/or the back surface of the shell is provided with the air inlet, the outdoor fan and the outdoor heat exchanger are arranged side by side, and the electromagnetic heating assembly is positioned between the outdoor fan and the outdoor heat exchanger;
or the top surface of the shell is provided with the air outlet, the side surface of the shell is provided with the air inlet, the outdoor fan and the outdoor heat exchanger are arranged up and down, and the electromagnetic heating assembly is located below the outdoor fan.
The technical scheme of the utility model prior art relatively has following technological effect: the water spraying part for spraying water to the outdoor heat exchanger is arranged on the fan, when the outdoor heat exchanger needs to be cleaned, the water supply assembly supplies water to the water spraying part, water in the water spraying part is thrown out of the fan under the action of centrifugal force in the rotating operation process of the fan, and the thrown water is finally sprayed on the outdoor heat exchanger, so that the outdoor heat exchanger is automatically cleaned, the phenomenon of large air resistance and low heat exchange efficiency caused by dirt blockage of the outdoor heat exchanger due to scaling is reduced, the energy efficiency of the air conditioner is improved, and the energy consumption is reduced; simultaneously, under the circumstances of external high temperature, through to the upper trickle of outdoor heat exchanger, be favorable to reducing the temperature of outdoor heat exchanger to improve the radiating efficiency, and under the circumstances of external microthermal, the heat that electromagnetic heating subassembly produced can provide supplementary heat to outdoor heat exchanger again, with the requirement that satisfies air conditioner normal operating under the low temperature environment, make the air conditioner can self-adaptation external environment state, in order to improve user experience nature.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic structural view of an outdoor unit in an embodiment of an air conditioner of the present invention;
FIG. 2 is a top view of FIG. 1;
fig. 3 is a schematic structural view of a fan in an embodiment of the air conditioner of the present invention;
FIG. 4 is a sectional view taken along line A-A of FIG. 3;
fig. 5 is one of assembling views of the outdoor fan and the electromagnetic heating assembly according to the embodiment of the present invention;
fig. 6 is a second assembly view of the outdoor fan and the electromagnetic heating element according to the embodiment of the present invention;
fig. 7 is a third assembly view of the outdoor fan and the electromagnetic heating element according to the embodiment of the present invention;
fig. 8 is a second schematic structural view of an outdoor unit in an embodiment of the present invention;
fig. 9 is a partial structural view of fig. 8.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the description of the present invention, it is to be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on those shown in the drawings, and are merely for convenience of description and simplicity of description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, are not to be construed as limiting the present invention.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art. In the foregoing description of embodiments, the particular features, structures, materials, or characteristics may be combined in any suitable manner in any one or more embodiments or examples.
The terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless otherwise specified.
The utility model provides a pair of air conditioner includes indoor set and off-premises station usually, and indoor set and off-premises station are connected through refrigerant pipe and cable.
The outdoor unit is generally provided with a casing, and a compressor, an outdoor heat exchanger, a throttling device, an outdoor fan, an electric control box and other components arranged in the casing, while the indoor unit is generally provided with a casing, an indoor heat exchanger, an indoor fan, a control panel and other components, and the compressor, the outdoor heat exchanger, the throttling device and the indoor heat exchanger are connected through refrigerant pipelines to form a refrigeration loop.
In addition, under the action of the indoor fan, indoor air enters the indoor unit to exchange heat with the indoor heat exchanger and then is output to the outside so as to adjust the indoor temperature.
In the outdoor unit, the following modifications are made to the outdoor unit in order to automatically clean the outdoor heat exchanger after a long time use, and the details will be described with reference to the drawings.
As shown in fig. 1 to 9, the outdoor unit of the present invention generally includes: the air conditioner comprises a shell 1, an outdoor heat exchanger 2, an outdoor fan 3, an electromagnetic heating assembly 4 and a water supply assembly 6.
The housing 1 is provided with an intake opening 101 and an outtake opening 102. In a heating or cooling mode of the air conditioner, outside air enters the shell 1 only through the air inlet 101, exchanges heat with the outdoor heat exchanger 2 and is output through the air outlet 102.
The outdoor heat exchanger 2 is disposed in the casing 1, and the outdoor heat exchanger 2 is used for heat exchange with the outside air.
The outdoor fan 3 is disposed in the casing 1 and is configured to drive outside air to enter the casing 1 through the air inlet 101, exchange heat with the outdoor heat exchanger 2, and then discharge the heat to the outside of the casing 1 through the air outlet 102. The outdoor fan 3 includes a motor 31 and a fan 32, the fan 32 is disposed on a rotating shaft of the motor 31, and a water spraying portion 33 for spraying water to the outdoor heat exchanger 2 is disposed on the fan 32.
The electromagnetic heating assembly 4 is used for selectively heating the air before heat exchange with the outdoor heat exchanger 2 when the outdoor fan 3 rotates reversely.
The water supply unit 6 itself can store a certain amount of water and supply the stored water to the shower unit 33 as needed.
In the actual use process, the outdoor unit is installed outdoors, and is influenced by external environmental factors in the operation process, wherein the external environmental factors mainly comprise the ambient temperature, dust pollution, frosting and the like. The following description deals with a solution specially designed for the influence of different environmental factors on the operation of the outdoor unit.
In view of the influence of the outdoor ambient temperature on the operation of the outdoor unit, the heat exchange efficiency of the outdoor heat exchanger 2 is generally reduced due to high temperature in summer or due to low temperature in winter.
For this reason, the air conditioner performs a cooling mode under a high temperature environment. If the external environment temperature is higher than the set maximum temperature value, the outdoor fan 3 rotates reversely, and meanwhile, water output by the water spraying part 33 is thrown onto the outdoor heat exchanger 2. Specifically, the water output by the water spraying part 33 is thrown onto the outdoor heat exchanger 2, so that the temperature of the outdoor heat exchanger 2 can be reduced, and the heat exchange efficiency of the outdoor heat exchanger 2 is improved, so that the energy efficiency of the air conditioner is improved.
And the air conditioner performs a heating mode in a low temperature environment. If the external environment temperature is lower than the set lowest temperature value, the outdoor fan 3 is reversely rotated, and meanwhile, the electromagnetic heating assembly 4 is electrified to heat air before exchanging heat with the outdoor heat exchanger. Specifically, the electromagnetic heating assembly 4 is electrified to heat the air in the shell 1, and under the reverse rotation action of the outdoor fan 3, the heated air in the shell 1 is blown to the outdoor heat exchanger 2 to assist in heating the outdoor heat exchanger 2, so that the heat exchange efficiency of the outdoor heat exchanger 2 is improved, and the energy efficiency of the air conditioner is improved.
In view of the influence of outdoor environment dust and sand pollution on the operation of the outdoor unit, a layer of dust is usually adhered to the surface of the outdoor heat exchanger 2 after the air conditioner is operated for a period of time, so that the wind resistance of the outdoor heat exchanger 2 is increased.
For this, water may be supplied into the water spray part 33 through the water supply assembly 6, and the water in the water spray part 33 is output outward by centrifugal force during the rotation of the fan 32 and finally sprayed on the surface of the outdoor heat exchanger 2 to clean the outdoor heat exchanger 2.
Specifically, after the water supply unit 6 supplies the cleaning water to the water spray unit 33, the water in the water spray unit 33 is thrown out to the outside of the fan 32 by centrifugal force as the fan 32 rotates at a high speed. And the thrown water moves toward the outdoor heat exchanger 2 and finally hits the outdoor heat exchanger 2.
Utilize the water of throwing away at a high speed, can wash the scale deposit on 2 surfaces of outdoor heat exchanger through the striking on the one hand, on the other hand also can effectual sanitization to the stubborn dirt in 2 fins of outdoor heat exchanger to effectual reduction outdoor heat exchanger 2's windage has improved outdoor heat exchanger 2's heat exchange efficiency.
The frosting on the surface of the outdoor heat exchanger 2 can cause large wind resistance aiming at the influence of frosting on the operation of the outdoor unit in winter.
For this reason, it is necessary to perform a defrosting process on the surface of the outdoor heat exchanger 2. In the defrosting process, the electromagnetic heating assembly 4 is electrified, the electromagnetic heating assembly 4 generates an electromagnetic heating effect by using alternating current, and the electromagnetic heating efficiency is high and the heat generation amount is large. The heat generated by the electromagnetic heating assembly 4 can heat the air before exchanging heat with the outdoor heat exchanger 2.
Like this, the air is heated by electromagnetic heating element 4 back and is exchanged heat with outdoor heat exchanger 2 again, can melt the heating of frosting on outdoor heat exchanger 2 surface on the one hand, and on the other hand outdoor heat exchanger 2 can absorb the heat that the heated air contains to improve outdoor heat exchanger 2 heat transfer performance.
In some embodiments, to enable the water supply assembly 6 to supply water as needed. The water supply assembly 6 includes a water storage tank 61 and a water pump 62, the water inlet of the water pump 62 is communicated with the inside of the water storage tank 61, and the water output from the water pump 62 is supplied to the water spray part 33.
Specifically, the water storage tank 61 can store a certain amount of water and deliver the water to the water shower 33 by the water pump 62. For the water in the water storage tank 61, the user may periodically fill the water storage tank 61 with water, or may use condensed water generated during the operation of the air conditioner, which is not limited and described herein.
In the process of cleaning the outdoor heat exchanger 2, the fan 32 rotates in the reverse direction to drive the water in the water spraying portion 33 to be output and thrown onto the outdoor heat exchanger 2.
Specifically, when the air conditioner is in normal operation, the motor 31 drives the fan 32 to rotate forward, so that the outside air enters the casing 1 through the air inlet 101, and the air is driven by the outdoor fan 3 to be output from the air outlet 102 after being subjected to heat exchange through the outdoor heat exchanger.
When the outdoor heat exchanger 2 needs to be cleaned, the motor 31 drives the fan 32 to rotate reversely, and meanwhile, the water supply assembly 6 supplies water to the water spraying part 33. Because the fan 32 rotates reversely, the air flow accelerated and processed by the fan 32 flows toward the outdoor heat exchanger 2, and simultaneously, the water in the water spraying part 33 moves toward the outdoor heat exchanger 2 along with the air flow under the action of centrifugal force, so that the cleaning is thrown onto the outdoor heat exchanger 2.
Thus, under the dual actions of the air flow and the water, the outdoor heat exchanger 2 can be cleaned more thoroughly and efficiently. Meanwhile, the fan 32 is rotated reversely, so that the impurities stuck between the fins of the outdoor heat exchanger 2 can be more easily separated from the fins.
In some embodiments, the fan 32 generally includes a hub 321 and a plurality of blades 322, the blades 322 are disposed on the hub 321, the hub 321 is provided with a water storage portion 331, the blades 322 are provided with water flow passages 332, and the water flow passages 332 are communicated with the water storage portion 331 and form the water spraying portion 33; the water supply assembly 6 is used to supply water to the water storage portion 331.
Specifically, the water storage unit 331 is provided on the hub 321, and the space occupied by the hub 321 can be fully utilized to store water. The water flow passage 332 of each blade 322 can guide the water flowing out of the water reservoir 331, and at the same time, the water flows rapidly in the water flow passage 332 under the action of centrifugal force and is finally thrown out to the outside.
The water flow passage 332 may be a guide water groove provided on the surface of the blade 322, the guide water groove being formed on the surface of the blade 322, and the water flowing out of the water storage portion 331 flows through the guide water groove and is finally thrown out.
Or, the water flow passage 332 is a diversion water pipe disposed on the blade 322, the diversion water pipe may be embedded in the blade 322, one port of the diversion water pipe communicates with the water storage portion 331, and the other port of the diversion water pipe is disposed at the edge of the blade 322.
In addition, the water flow passages 332 have an arc-shaped configuration and are distributed along the surface of the blades 322 such that the water flow passages 332 match the curved shape of the blades 322.
And for the electromagnetic heating assembly 4, it usually comprises an electromagnetic coil, which is used for energizing to generate a magnetic field, and the electromagnetic coil can generate the magnetic field after being energized, and meanwhile, the energized electromagnetic coil can release heat. In addition, in order to improve the heating efficiency, the electromagnetic heating assembly 4 further comprises a metal induction heating part, the metal induction heating part is located in the magnetic field formed by the electromagnetic coil, the metal induction heating part generates eddy current in the magnetic field, and the eddy current can be used for generating a heat effect. There are various ways to embody the electromagnetic heating element 4 and its installation, as exemplified below.
In some embodiments, as shown in fig. 5, the housing of the motor 31 is a metal housing, the housing of the motor 31 serves as a metal induction heating member, and the electromagnetic coil is a first electromagnetic coil 41 wound around the outside of the motor 31.
Specifically, the housing of the motor 31 may be made of aluminum or iron, and the first electromagnetic coil 41 is wound around the housing of the motor 31 to form the electromagnetic heating assembly 4. In actual use, when defrosting is needed, the first electromagnetic coil 41 is energized, the electromagnetic effect generated by the first electromagnetic coil 41 heats the housing of the motor 31, and the heat generated by the housing is driven by the airflow generated by the outdoor fan 3 to blow to the outdoor heat exchanger 2.
On one hand, the first electromagnetic coil 41 is energized, and current flows through the coil, so that the coil itself generates heat, and on the other hand, the shell made of aluminum or iron and the alternating magnetic field applied in the first electromagnetic coil 41 generate an eddy current effect to generate heat rapidly, thereby further improving the heating efficiency.
In some embodiments, as shown in fig. 6, the electromagnetic heating assembly 4 includes a metal sleeve 42, the metal sleeve 42 serves as a metal induction heating member, and the electromagnetic coil is a second electromagnetic coil 43 wound around the metal sleeve 42.
Specifically, the electromagnetic heating assembly 4 is composed of a second electromagnetic coil 43 and a metal sleeve 42, the metal sleeve 42 serves as a bearing member, and the second electromagnetic coil 43 is wound thereon. In actual use, when defrosting is required, the second electromagnetic coil 43 is energized, and the electromagnetic effect generated by the second electromagnetic coil 43 will heat the metal sleeve 42. The metal sleeve 42 will heat the surrounding air and the air flow through the inside and outside thereof. The air in the casing 1 is driven to flow by matching with the outdoor fan 3, the air is heated by the inner wall and the outer wall of the metal sleeve 42, and then the heated air carries out heating defrosting treatment on the outdoor heat exchanger 2.
Preferably, the metal sleeve 42 is further provided with a plurality of hollow-out vent holes (not shown), and specifically, in the process of heating air through the metal sleeve 42, the hollow-out vent holes enable air inside and outside the metal sleeve 42 to flow rapidly, so as to improve the heating efficiency of the air.
In some embodiments, as shown in fig. 7, a fan bracket 5 is disposed in the housing 1, the fan bracket 5 is made of a metal material, the fan bracket 5 is used as a metal induction heating part, and the electromagnetic coil is a third electromagnetic coil 44 wound on the fan bracket 5.
Specifically, for the outdoor fan 3, the fan bracket 5 is usually adopted for installation and fixation, so that the outdoor fan 3 is firmly and reliably installed in the casing 1. And the fan support 5 made of a metal material may be wound with the third electromagnetic coil 44 thereon to mount the third electromagnetic coil 44 through the fan support 5. The material of the fan support 5 may be iron or aluminum, and is not limited or described herein.
In actual use, when defrosting is required, the third electromagnetic coil 44 is energized, and the electromagnetic effect generated by the third electromagnetic coil 44 heats the fan bracket 5. The fan support 5 will heat the surrounding air. And the air in the shell 1 is driven to flow by matching with the outdoor fan 3, so that the heated air is used for heating and defrosting the outdoor heat exchanger 2.
Preferably, the fan bracket 5 includes a mounting seat 51 and two metal rods 52, the mounting seat 51 is disposed between the two metal rods 52, the metal rods 52 are disposed in the casing 1, and the outdoor fan 3 is disposed on the mounting seat 51; the third electromagnetic coil 44 is wound on the metal rod 52.
Specifically, two metal rods 52 are fixedly installed in the housing 1, and the mounting seat 51 is correspondingly installed between the two metal rods 52. Thus, the outdoor fan 3 can be mounted and fixed to the mount base 51. And the third electromagnetic coil 44 is wound on the metal rod 52 to generate heat through the metal rod 52.
In addition, in order to increase the amount of electromagnetic heat generation, the third electromagnetic coils 44 are provided at both end portions of the metal rod 52, respectively. The four third electromagnetic coils 44 are distributed around the outdoor fan 3, and the outdoor fan 3 drives air to flow so as to be heated by the end of the metal rod 52.
Likewise, in other embodiments, the outdoor heat exchanger 2 made of metal may also be used, for example: the outdoor heat exchanger 2 adopts a fin type heat exchanger, and the fin type heat exchanger is generally composed of copper pipes and aluminum fins. Correspondingly, the electromagnetic heating assembly 4 is a fourth electromagnetic coil (not shown) wound around the outer circumference of the outdoor heat exchanger 2. When defrosting, fourth solenoid can produce electromagnetic effect to whole outdoor heat exchanger 2 for 2 self of outdoor heat exchanger are whole to generate heat, with quick defrosting.
The outdoor unit may be constructed in a vertical or horizontal type.
In some embodiments, as shown in fig. 1 and 2, the outdoor unit has a vertical structure, the top of the casing 1 is provided with an air outlet 102, the side of the casing 1 is provided with an air inlet 101, and the motor 31 is vertically arranged; the reservoir 331 is a reservoir having an opening facing upward.
Specifically, the outdoor fan 3 is located on the upper portion of the outdoor heat exchanger 2, and when the outdoor heat exchanger works normally, the outdoor fan 3 blows air upwards. And when needs wash outdoor heat exchanger 2, then outdoor fan 3 bloies towards shell 1 inside, like this, on can making water get rid of and beat outdoor heat exchanger 2.
For the convenience of water supply, the water supply assembly 6 is configured with a first water pipe 63 for conveying water, and a water outlet of the first water pipe 63 is located above the water storage tank. Specifically, during the cleaning of the outdoor heat exchanger 2, the water in the water reservoir 61 is output via the water pump 62 and transported in the first water transport tube 63, and finally the first water transport tube 63 transports the water into the water reservoir.
Since the opening of the water storage tank is upward, the water output from the first water pipe 63 directly flows into the water storage tank below.
Preferably, in order to avoid water overflowing from the upper opening of the reservoir during rotation, an annular collar (not shown) may be added to the opening of the reservoir, which can shield the edge of the reservoir and thus prevent water from overflowing from the opening.
Meanwhile, the outdoor fan 3 and the outdoor heat exchanger 2 are arranged up and down, the electromagnetic heating assembly 4 is positioned below the outdoor fan 3, and the outdoor heat exchanger 2 is arranged around the electromagnetic heating assembly 4.
In other embodiments, as shown in fig. 8 and 9, the outdoor unit is in a horizontal type structure, the front surface of the casing 1 is provided with an air outlet 102, the side surface and/or the back surface of the casing 1 is provided with an air inlet 101, the outdoor fan 3 and the outdoor heat exchanger 2 are arranged side by side, and the motor 31 is arranged in a horizontal direction; the reservoir 331 is a reservoir formed in the hub 321.
Specifically, the outdoor fan 3 is located at one side of the outdoor heat exchanger 2, and for this reason, a relatively closed water reservoir is formed in the hub 321 to prevent leakage of the injected water. When the outdoor heat exchanger works normally, the outdoor fan 3 blows air in the direction opposite to the direction of the outdoor heat exchanger 2. And when needs wash outdoor heat exchanger 2, then outdoor fan 3 bloies towards 2 directions of outdoor heat exchanger, like this, alright get rid of with the water and beat on outdoor heat exchanger 2.
Preferably, in order to supply water to the water storage tank in the hub 321, the rotary joint 333 is disposed on the end surface of the hub 321, the water supply assembly 6 is configured with a second water pipe (not shown) for conveying water, the rotary water spraying part of the rotary joint 333 is communicated with the water storage tank 61, and the fixed water spraying part of the rotary joint 333 is communicated with the second water pipe.
Specifically, the rotary joint 333 is capable of allowing the hub 321 to rotate, and meanwhile, may be connected to the second water pipe which is fixed. During the rotation of the fan 32 driven by the motor 31, the water in the water storage tank 61 can be stably supplied through the second water supply pipe. For the specific structural form of the rotary joint 333, a joint having a function of rotatably connecting water supply in the conventional technology may be adopted, which is not limited or described herein.
In order to improve the stability and reliability of the installation, the fan bracket 5 is further provided with an auxiliary bracket 50, and the fixed water spraying part of the rotary joint 333 is arranged on the auxiliary bracket 50.
Specifically, the fan bracket 5 can mount the fixed motor 31, so that the outdoor fan 3 is securely and reliably mounted in the casing 1. The rotary joint 333 of the hub 321 is supported and mounted by the auxiliary bracket 50 to improve the mounting reliability.
Meanwhile, the electromagnetic heating assembly 4 is located between the outdoor fan 3 and the outdoor heat exchanger 2. Specifically, the outdoor fan 3 is disposed at one side of the outdoor heat exchanger 2, and the electromagnetic heating unit 4 is disposed between the outdoor fan 3 and the outdoor heat exchanger 2.
In the foregoing description of embodiments, the particular features, structures, materials, or characteristics may be combined in any suitable manner in any one or more embodiments or examples.
The above is only a specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope of the present invention should be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (10)

1. An air conditioner, comprising:
a housing configured with an air inlet and an air outlet;
an outdoor heat exchanger disposed in the housing;
the outdoor fan comprises a motor and a fan, the fan is arranged on a rotating shaft of the motor, and a water spraying part for spraying water to the outdoor heat exchanger is arranged on the fan;
and the electromagnetic heating assembly is used for selectively heating air before heat exchange with the outdoor heat exchanger when the outdoor fan rotates reversely.
2. The air conditioner according to claim 1, wherein in the cooling mode of the air conditioner, if the external environment temperature is higher than a set maximum temperature value, the outdoor fan is reversely rotated, and simultaneously, the water output from the water spraying part is thrown onto the outdoor heat exchanger.
3. The air conditioner according to claim 1, wherein in the heating mode of the air conditioner, if the external environment temperature is lower than a set minimum temperature value, the outdoor fan is rotated reversely, and the electromagnetic heating assembly is energized to heat air before exchanging heat with the outdoor heat exchanger.
4. The air conditioner according to claim 1, wherein when the wind resistance generated by the outdoor heat exchanger is greater than a set wind resistance value, the outdoor fan is rotated reversely, and simultaneously, the water output by the water spraying part is thrown onto the outdoor heat exchanger, and/or the electromagnetic heating assembly is electrified to heat the air before exchanging heat with the outdoor heat exchanger.
5. The air conditioner of claim 1, wherein the electromagnetic heating assembly comprises:
the electromagnetic coil is used for generating a magnetic field when being electrified.
6. The air conditioner of claim 5, wherein the electromagnetic heating assembly further comprises:
a metal induction heating member located in a magnetic field formed by the electromagnetic coil.
7. The air conditioner as claimed in claim 1, wherein the fan comprises a hub and a plurality of blades, the blades are arranged on the hub, a water storage part is arranged on the hub, a water flow passage is arranged on the blades, and the water flow passage is communicated with the water storage part and forms the water spraying part;
the air conditioner further includes:
a water supply assembly for supplying water to the water storage portion.
8. The air conditioner according to claim 7, wherein the water supply assembly includes a water reservoir and a water pump, a water inlet of the water pump is communicated with the inside of the water reservoir, and water output from the water pump is supplied to the water reservoir.
9. The air conditioner according to claim 7, wherein the water flow passage is a guide water groove provided on a surface of the blade; or the water flow channel is a diversion water pipe arranged on the blade.
10. The air conditioner according to any one of claims 1 to 9, wherein the front surface of the housing is provided with the air outlet, the side surface and/or the back surface of the housing is provided with the air inlet, the outdoor fan and the outdoor heat exchanger are arranged side by side, and the electromagnetic heating assembly is located between the outdoor fan and the outdoor heat exchanger;
or the top surface of the shell is provided with the air outlet, the side surface of the shell is provided with the air inlet, the outdoor fan and the outdoor heat exchanger are arranged up and down, and the electromagnetic heating assembly is located below the outdoor fan.
CN201922312122.5U 2019-12-20 2019-12-20 Air conditioner Active CN211400081U (en)

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Application Number Priority Date Filing Date Title
CN201922312122.5U CN211400081U (en) 2019-12-20 2019-12-20 Air conditioner
PCT/CN2020/116589 WO2021120743A1 (en) 2019-12-20 2020-09-21 Air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922312122.5U CN211400081U (en) 2019-12-20 2019-12-20 Air conditioner

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Publication Number Publication Date
CN211400081U true CN211400081U (en) 2020-09-01

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021120743A1 (en) * 2019-12-20 2021-06-24 青岛海信日立空调系统有限公司 Air conditioner

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021120743A1 (en) * 2019-12-20 2021-06-24 青岛海信日立空调系统有限公司 Air conditioner

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