CN212870012U - Air conditioning system - Google Patents

Air conditioning system Download PDF

Info

Publication number
CN212870012U
CN212870012U CN202021642233.9U CN202021642233U CN212870012U CN 212870012 U CN212870012 U CN 212870012U CN 202021642233 U CN202021642233 U CN 202021642233U CN 212870012 U CN212870012 U CN 212870012U
Authority
CN
China
Prior art keywords
heat exchanger
outdoor heat
indoor
humidification
water
Prior art date
Legal status (The legal status 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 status listed.)
Active
Application number
CN202021642233.9U
Other languages
Chinese (zh)
Inventor
陈禹贵
李德鹏
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Hisense Shandong Air Conditioning Co Ltd
Original Assignee
Hisense Shandong Air Conditioning Co Ltd
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 Hisense Shandong Air Conditioning Co Ltd filed Critical Hisense Shandong Air Conditioning Co Ltd
Priority to CN202021642233.9U priority Critical patent/CN212870012U/en
Application granted granted Critical
Publication of CN212870012U publication Critical patent/CN212870012U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Air Humidification (AREA)

Abstract

The utility model discloses an air conditioning system, air conditioning system includes: the cooling circulation loop comprises a compressor, a four-way valve, a first outdoor heat exchanger, a first restrictor and an indoor heat exchanger; a humidification cycle, the humidification cycle comprising: the compressor, the second outdoor heat exchanger and the third outdoor heat exchanger; a humidification processing device, the humidification processing device comprising: water collector, water treatment spare and wind channel subassembly. Therefore, the air conditioning system can selectively open the humidification circulation loop according to the indoor humidity on the premise that the cooling circulation loop controls the indoor temperature, the humidification circulation loop can form condensed water outdoors, and the condensed water is vaporized or atomized and conveyed indoors through the humidification processing device to improve the indoor humidity.

Description

Air conditioning system
Technical Field
The utility model belongs to the technical field of the air conditioner technique and specifically relates to an air conditioning system is related to.
Background
With the development of science and technology and the improvement of the living standard of people, the air conditioner is generally popularized with the characteristic that the air conditioner can make the indoor warm in winter and cool in summer, but the humidity of the indoor air can be reduced when the air conditioner adjusts the indoor temperature.
In the related art, the air conditioner is additionally provided with the humidifying device to improve the indoor humidity, but due to the arrangement, a user needs to artificially add water to the humidifying device to enable the humidifying device to exert a humidifying effect, so that the humidifying efficiency of the humidifying device is reduced, and the use experience of the user is reduced.
SUMMERY OF THE UTILITY MODEL
The utility model discloses aim at solving one of the technical problem that exists among the prior art at least. Therefore, an object of the present invention is to provide an air conditioning system, which can not only adjust the indoor humidity while adjusting the temperature, but also adjust the humidity automatically without human intervention.
According to the utility model discloses an air conditioning system, include: the cooling circulation loop comprises a compressor, a four-way valve, a first outdoor heat exchanger, a first restrictor and an indoor heat exchanger, wherein the compressor, the four-way valve, the first outdoor heat exchanger, the first restrictor and the indoor heat exchanger are connected in series, and the indoor heat exchanger is also connected with the four-way valve; a humidification circulation loop, the humidification circulation loop comprising: the compressor, the second outdoor heat exchanger and the third outdoor heat exchanger are connected in series; a humidification processing device, comprising: the water receiving disc is arranged at the third outdoor heat exchanger, the water treatment piece is arranged at the water receiving disc, the air inlet of the air duct component corresponds to the water treatment piece, and the air outlet of the air duct component is communicated with an indoor unit provided with the indoor heat exchanger.
From this, air conditioning system's cooling circulation circuit can adjust indoor temperature, but also can reduce the humidity of indoor air simultaneously, so air conditioning system can add when cooling circulation system during operation and establish humidification circulation circuit, humidification circulation circuit can form the comdenstion water outdoor, the comdenstion water vaporization or the atomizing that rethread humidification processing apparatus formed humidification circulation circuit, and leading-in indoor air humidity that improves, so can realize that air conditioning system is automatic for indoor humidification, need not artificial interference and can make indoor humiture maintain in comfortable region, thereby promote user's use experience and user comfort.
In some examples of the present invention, the second outdoor heat exchanger is disposed at one side of the first outdoor heat exchanger to constitute a heat exchanger assembly with the first outdoor heat exchanger.
In some examples of the invention, the humidification cycle further comprises: a shutoff valve connected between the compressor and the second outdoor heat exchanger.
In some examples of the present invention, the humidification processing device further includes: indoor humidity transducer, indoor humidity transducer is used for monitoring indoor air humidity, humidity transducer with the stop valve electricity is connected, with indoor humidity transducer monitor when indoor air humidity reaches the predetermined value to the stop valve is sent and is opened or close the instruction.
In some examples of the invention, the humidification cycle further comprises: a second restrictor connected between the second outdoor heat exchanger and the third outdoor heat exchanger.
In some examples of the invention, the water pan comprises: the water receiving tray comprises a bottom plate, side frames and a partition plate, wherein the side frames surround the edge of the bottom plate and extend upwards, the partition plate is isolated between the side frames so as to separate a water receiving space and a water treatment space in the water receiving tray, water through holes for connecting the water receiving space and the water treatment space are formed in the partition plate, the third outdoor heat exchanger is arranged above the water receiving space, and the water treatment piece is arranged in or above the water treatment space.
In some examples of the present invention, the water treatment member is a heating member or an atomizing member, and the heating member or the atomizing member is disposed in the water treatment space.
In some examples of the present invention, the water treatment member is a wet film, and the wet film is vertically disposed above the water treatment space.
In some examples of the invention, the air duct assembly comprises: wind channel and fan, the wind channel have the air intake with the air outlet, the fan is located outside the water collector and includes: the motor is in power transmission with the fan, and the fan is arranged in the air channel.
The utility model discloses an in some examples, first outdoor heat exchanger the second outdoor heat exchanger with the third outdoor heat exchanger sets up in outdoor casing, outdoor casing has the attacker, the below of attacker is provided with the through-hole, the pipeline in wind channel is worn to establish the through-hole.
Additional aspects and advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention.
Drawings
The above and/or additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
fig. 1 is a schematic diagram of an air conditioning system according to an embodiment of the present invention;
fig. 2 is a schematic diagram of an air conditioning system according to an embodiment of the present invention;
fig. 3 is a schematic view of an outdoor unit according to an embodiment of the present invention;
fig. 4 is a schematic diagram of an air conditioning system according to an embodiment of the present invention.
Reference numerals:
100-an air conditioning system;
10-a cooling circulation loop; 11-a compressor; 111-input terminal; 112-an output terminal; 12-a four-way valve; 13-a first outdoor heat exchanger; 14-a first choke; 15-indoor heat exchanger;
20-a humidification circulation loop; 21-a second outdoor heat exchanger; 22 a third outdoor heat exchanger;
30-a humidification processing device; 31-a water pan; 311-a backplane; 312-side frame; 313-a spacer; 32-a water treatment member; 34-a stop valve; 35-a second choke; 36-water through holes;
40-an air duct assembly; 41-air duct; 411-an air inlet; 412-an air outlet; 42-a fan; 43-a pipeline;
50-an indoor unit;
60-outdoor unit, 61-outdoor machine shell; 62-a handle; 63-through holes.
Detailed Description
Embodiments of the present invention are described in detail below, and the embodiments described with reference to the drawings are exemplary.
An air conditioning system 100 according to an embodiment of the present invention is described below with reference to fig. 1 to 4.
As shown in fig. 1 and 2, an air conditioning system 100 according to an embodiment of the present invention may include: the cooling circulation loop 10 can adjust the indoor temperature to make the indoor temperature in a proper interval, but the cooling circulation loop 10 can reduce the indoor air humidity while adjusting the indoor air, therefore, the humidifying circulation loop 20 can selectively work together with the cooling circulation loop 10 according to the value of the indoor air humidity, condensed water can be formed outdoors when the humidifying circulation loop 20 works, the condensed water formed outdoors by the humidifying circulation loop 20 is vaporized or atomized by the humidifying treatment device 30, and the vaporized or atomized condensed water is guided into the room to improve the indoor air humidity, so the arrangement can not only realize automatic humidification without human interference, but also the humidifying circulation loop 20 can be opened and closed according to the indoor air humidity, under the prerequisite of guaranteeing that indoor air humidity is in suitable interval, also can prevent that indoor humidity is too high, not only can promote user's use and experience, can avoid the waste of the energy moreover.
Further, as shown in fig. 1 and 2, the cooling circulation circuit 10 includes: the refrigerant circulation cooling device comprises a compressor 11, a four-way valve 12, a first outdoor heat exchanger 13, a first throttle 14 and an indoor heat exchanger 15, wherein the compressor 11, the four-way valve 12, the first outdoor heat exchanger 13, the first throttle 14 and the indoor heat exchanger 15 are connected in series, then the indoor heat exchanger 15 is connected with the four-way valve 12, a cooling circulation loop 10 can be formed, the refrigerant can circularly flow in the cooling circulation loop 10, and the indoor temperature is adjusted through the heat exchange effect of the compressor 11, the first outdoor heat exchanger 13, the first throttle 14 and the indoor heat exchanger 15 on the refrigerant, so that the recycling of the refrigerant can be realized, the normal work of the cooling circulation loop 10 can be ensured, and the work efficiency of the cooling circulation loop 10 can be improved.
When the cooling circulation loop 10 heats the indoor space and raises the indoor temperature, the refrigerant flows out of the compressor 11, enters the indoor heat exchanger 15 and the first throttler 14 through the four-way valve 12, then enters the first outdoor heat exchanger 13, and then flows into the compressor 11 through the four-way valve 12; correspondingly, when the cooling circulation loop 10 refrigerates the indoor and reduces the indoor temperature, the refrigerant flows out of the compressor 11, firstly enters the first outdoor heat exchanger 13 and the first throttling device 14 through the four-way valve 12, then enters the indoor heat exchanger 15, and then flows into the compressor 11 through the four-way valve 12, so that the adjustment of the indoor temperature is changed by changing the flow direction of the refrigerant in the cooling circulation loop 10, no additional loop is needed, the production can be simplified, and the process design can be optimized.
In addition, as shown in fig. 1, the compressor 11 may mainly include an input end 111 and an output end 112, the four-way valve 12 has a plurality of ports, and the refrigerant may flow out from the output end 112 of the compressor 11, sequentially enter other components of the cooling cycle loop 10 through one of the ports of the four-way valve 12, and finally enter the input end 111 of the compressor 11 through the other port of the four-way valve 12, so that the cooling cycle may be implemented, and thus, by skillfully arranging the four-way valve 12, not only the flow direction of the refrigerant may be controlled, the cooling cycle of the refrigerant may be implemented, but also the structure of the air conditioning system 100 may be simplified, and the process design may. Wherein the input 111 of the compressor 11 may be provided with a gas-liquid separator.
As shown in fig. 1 and 2, the humidification cycle 20 may include: the compressor 11, the second outdoor heat exchanger 21, and the third outdoor heat exchanger 22 may be connected in series, and the third outdoor heat exchanger 22 is connected to the compressor 11, so that the humidification cycle loop 20 may be formed.
That is, the humidification cycle circuit 20 and the cooling cycle circuit 10 need to share the same compressor 11, and when the indoor humidity is low and the humidification cycle circuit 20 needs to operate, a part of the refrigerant flowing out of the compressor 11 enters the cooling cycle circuit 10 to adjust the temperature, and the other part of the refrigerant flowing out of the compressor 11 enters the humidification cycle circuit 20 to adjust the humidity.
Specifically, when the refrigerant circularly flows in the humidification circulation loop 20, the refrigerant can form condensed water on the surface of the third outdoor heat exchanger 22 under the heat exchange action of the second outdoor heat exchanger 21 and the third outdoor heat exchanger 22, so as to raise the humidity of the indoor air, and thus, the humidification circulation loop 20 and the cooling circulation loop 10 share one compressor 11, which not only can make the structure of the humidification circulation loop 20 simple and reduce the production cost, but also the normal operation of the cooling circulation loop 10 is not affected by the operation of the humidification circulation loop 20, and the relative independence between the loops can be ensured, thereby improving the structural reliability of the air conditioning system 100.
Wherein, third outdoor heat exchanger 22 can be the evaporimeter, and the refrigerant vaporization needs the heat absorption in the evaporimeter, can lead to the exothermic liquefaction of evaporimeter surrounding air to form the comdenstion water on the evaporimeter surface, so, can make full use of the moisture in the third outdoor heat exchanger 22 surrounding air, need not artificial watering, can optimize structural design like this, can promote user's use and experience.
In addition, as shown in fig. 1 and fig. 2, in the humidification cycle loop 20, the refrigerant flowing out of the compressor 11, entering the third outdoor heat exchanger 22 through the second outdoor heat exchanger 21, and then flowing out of the third outdoor heat exchanger 22 may enter the compressor 11 together with the refrigerant that will flow into the input end 111 of the compressor 11 after passing through the four-way valve 12 in the cooling cycle loop 10, wherein the refrigerant flowing out of the third outdoor heat exchanger 22 does not pass through the four-way valve 12, so that not only the relative independence between the humidification cycle loop 20 and the cooling cycle loop 10 may be further ensured, but also unnecessary flow paths of the refrigerant in the humidification cycle loop 20 may be reduced, the humidification efficiency of the humidification cycle loop 20 may be improved, and the process design may be optimized.
As shown in fig. 3 and 4, the humidification processing device 30 may mainly include: water collector 31, water treatment spare 32 and wind channel subassembly 40, water collector 31 set up in third outdoor heat exchanger 22 department and lie in the below of third outdoor heat exchanger 22, so the comdenstion water on third outdoor heat exchanger 22 surface alright with in the water collector 31 of drippage through the action of gravity of self, need not to design other conduction modes with the leading-in water collector 31 of comdenstion water, design benefit can simplify the technology design, improves production efficiency.
In addition, the water treatment member 32 is disposed at the water pan 31, the air inlet 411 of the air duct assembly 40 corresponds to the water treatment member 32, and the air outlet 412 is communicated with the indoor unit 50 having the indoor heat exchanger 15 disposed in the indoor space, the water treatment member 32 can vaporize or atomize the condensed water in the water pan 31 into small particles, then the condensed water enters the air duct assembly 40 through the air inlet 411 of the air duct assembly 40, and then the condensed water flows into the indoor unit 50 having the indoor heat exchanger 15 disposed therein through the air outlet 412 of the air duct assembly 40, so as to improve the indoor air humidity, so that not only can automatic humidification be realized without artificial water addition, but also the loss of the condensed water vaporized or atomized into small particles in the indoor process can be reduced, the work efficiency of the humidification processing device 30 can be improved, and the process design can be optimized.
Therefore, because the cooling circulation circuit 10 of the air conditioning system 100 can adjust the indoor temperature, but at the same time, the humidity of the indoor air can also be reduced, the air conditioning system 100 can additionally arrange the humidification circulation circuit 20 when the cooling circulation circuit 10 works, the humidification circulation circuit 20 can start to work together with the cooling circulation circuit 10 when the indoor humidity reaches a certain value, the humidification circulation circuit 20 can form condensed water outdoors, the condensed water formed by the humidification circulation circuit 20 is vaporized or atomized by the humidification processing device 30 and is led indoors to improve the indoor air humidity, so that the air conditioning system 100 can automatically humidify the indoor, the structure design can be optimized without artificial interference, and the use experience of users can be improved.
As shown in fig. 1 and 2, the second outdoor heat exchanger 21 is disposed at one side of the first outdoor heat exchanger 13 to form a heat exchanger assembly with the first outdoor heat exchanger 13, and specifically, the second outdoor heat exchanger 21 and the first outdoor heat exchanger 13 are not in the same loop, but the working principle therebetween is the same, so that the second outdoor heat exchanger 21 is disposed at one side of the first outdoor heat exchanger 13, and the second outdoor heat exchanger 21 and the first outdoor heat exchanger 13 form a heat exchanger assembly, so that the installation and installation of the second outdoor heat exchanger 21 and the first outdoor heat exchanger 13 can be facilitated without mutual interference between the cooling circulation loop 10 and the humidification circulation loop 20, the installation process can be simplified, and the space occupied by the second outdoor heat exchanger 21 and the first outdoor heat exchanger 13 can be reduced, thereby improving the space utilization rate of the air conditioning system 100, the process design can be optimized. Both the second outdoor heat exchanger 21 and the first outdoor heat exchanger 13 may be condensers, and the two condensers together form a condenser assembly or form an integral condenser, and one part of the condenser is used as the second outdoor heat exchanger 21, and the other part is used as the first outdoor heat exchanger 13.
As shown in fig. 1, the humidification cycle 20 may further include: and a cut-off valve 34, the cut-off valve 34 being connected between the compressor 11 and the second outdoor heat exchanger 21, the cut-off valve 34 being opened or closed according to the humidity of the indoor air to control the opening and closing of the humidification cycle 20.
Specifically, when the cooling circulation circuit 10 adjusts the indoor temperature to reduce the indoor air humidity to a certain value, and the humidification circulation circuit 20 needs to operate, the stop valve 34 is opened, at this time, a part of the refrigerant flowing out of the compressor 11 enters the cooling circulation circuit 10 to adjust the indoor temperature, and another part of the refrigerant flowing out of the compressor 11 sequentially enters other parts of the humidification circulation circuit 20 through the opened stop valve 34 to perform a heat exchange function, so that condensed water is formed on the surface of the third outdoor heat exchanger 22, and is processed by the humidification processing device to improve the indoor air humidity.
Correspondingly, when the humidification cycle 20 and the humidification processing device 30 increase the humidity of the room air to a certain value and the humidity of the room air does not need to be increased, the stop valve 34 is closed, and the refrigerant flowing out of the compressor 11 cannot enter other parts of the humidification cycle 20 due to the closing of the stop valve 34, that is, the humidification cycle 20 stops operating, and the refrigerant enters the cooling cycle 10 completely to adjust the temperature of the room.
So set up, humidification circulation circuit 20 can be less than the work of opening when the indoor air humidity is less than the definite value, stop work when the indoor air humidity is higher than the definite value, thereby make the indoor air humidity keep making human comfortable interval in, but not humidification circulation circuit 20 is in operating condition always, so not only can prevent that the indoor air humidity is too high, influence user's use experience, and can realize automatic accuse wet, can be under the prerequisite that guarantees that the indoor air humidity is in making human comfortable interval, avoid air conditioning system 100 unnecessary energy consumption extravagant, can optimize process structure.
As shown in fig. 1, the humidification processing device 30 may further include: an indoor humidity sensor (not shown) for monitoring the indoor air humidity in real time, and the humidity sensor may be electrically connected to the cut-off valve 34 to send an opening or closing command to the cut-off valve 34 when the indoor humidity sensor monitors that the indoor air humidity reaches a predetermined value.
Specifically, when the cooling circulation circuit 10 performs temperature adjustment, the indoor air humidity is continuously reduced, and when the indoor humidity sensor monitors that the indoor humidity reaches a predetermined minimum value, the indoor humidity sensor sends an opening instruction to the stop valve 34, so that the indoor humidity sensor controls the opening of the stop valve 34, the humidification circulation circuit 20 can start to work, the indoor air humidity can rise, and the use experience of a user can be improved.
Further, the humidity of the indoor air will be continuously increased due to the humidification of the humidification loop 20 and the humidification device 30, and when the humidity of the indoor air detected by the humidity sensor reaches a predetermined maximum value, the humidity sensor sends a closing instruction to the stop valve 34, so that the humidity sensor controls the stop valve 34 to close, and the humidification loop 20 can stop working, and the humidity of the indoor air does not rise.
So through setting up indoor humidity transducer, not only can realize air conditioning system 100's automatic accuse is wet, can make air conditioning system 100 control indoor air humidity more accurate moreover, can improve air conditioning system 100's structural reliability, can further promote user's use and experience.
As shown in fig. 1, the humidification cycle 20 may further mainly include: the second restrictor 35, the second restrictor 35 is connected between the second outdoor heat exchanger 21 and the third outdoor heat exchanger 22, the second restrictor 35 can play a role in throttling the refrigerant flowing out of the second outdoor heat exchanger 21, and can reduce the pressure and temperature of the refrigerant flowing out of the second outdoor heat exchanger 21, so that the third outdoor heat exchanger 22 can conveniently perform heat exchange treatment on the refrigerant, in addition, the second restrictor 35 can enable the humidification circulation loop 20 to form a high-low pressure region, ensure that the refrigerant can normally flow in the humidification circulation loop 20, and can improve the structural reliability of the humidification circulation loop 20. The second restrictor 35 may be an expansion valve or a capillary tube.
As shown in fig. 3, the water tray 31 includes: bottom plate 311, side frame 312 and baffle 313, side frame 312 surrounds the edge of bottom plate 311 and upwards extends, and bottom plate 311 can prescribe a limit to the water receiving space with side frame 312 cooperation, can make water collector 31 catch more water as far as, avoids water to spill over from water collector 31 to can improve the reliability and the fault-tolerant rate of water collector 31 structure.
Furthermore, a partition 313 is separated between the side frames 312 to separate a water receiving space and a water processing space in the water receiving tray 31, a water through hole 36 is formed on the partition 313 to connect the water receiving space and the water processing space, the water through hole 36 has a certain height relative to the bottom plate 311, such that when the water level of the water in the water receiving space is higher than the height of the water through hole 36, the water in the water receiving space higher than the height of the water through hole 36 will enter the space, the third outdoor heat exchanger 22 is disposed above the water receiving space, the outflow condensed water in the third outdoor heat exchanger 22 will directly enter the water receiving space, when the water level of the water in the water receiving space is higher than the height of the water through hole 36, the water in the water receiving space higher than the height of the water through hole 36 will enter the water processing space, such that the humidification processing device 30 will not use the water in the water receiving tray 31 after humidification is completed, some water is always stored in the water receiving tray 31, so that the time required for the water level of the water flow in the water receiving space to be higher than the height of the water through hole 36 is reduced after the humidification processing device 30 starts to work next time, the efficiency of the humidification processing device 30 can be improved, and the use experience and the comfort of a user can be improved.
As shown in fig. 3, the water treatment member 32 may be a heating member or an atomizing member, which is disposed in the water treatment space, the heating member may heat and vaporize water in the water treatment space into water vapor for increasing the humidity of the indoor air, the heating member may vaporize the water more quickly, can improve the working efficiency of the humidification device 30, the atomization piece can atomize the water in the water treatment space into small particles so as to improve the indoor air humidity, the atomization piece atomizes the water into the small particles more stably and reliably, and the atomization component can reduce the energy consumption of the humidification processing device 30, the area of the water processing space is smaller than that of the water receiving space, thus, the area of the water processing component 32 for processing water in unit time can be reduced, thus, the time required for the water treatment member 32 to vaporize or atomize the water can be reduced, and the operation efficiency of the humidification processing device 30 can be further improved. The heating member may be a heating wire, and the atomizing member may be an atomizing sheet.
Further, the water treatment member 32 is a wet film, the wet film is vertically arranged above the water treatment space, the wet film has good water absorbability and evaporability, the wet film is vertically arranged above the water treatment space, more water can be uniformly absorbed on the surface of the wet film, and the contact area between the wet film and the air can be increased, so that the speed of water on the surface evaporated by the wet film can be increased, and the working efficiency of the humidification treatment device 30 can be improved. In addition, the wet film is used as the water treatment member 32, so that energy consumption can be reduced, the good self-cleaning capability, acid and alkali resistance, mould resistance and other excellent characteristics of the wet film can ensure the cleanness and health of water vapor, and the use experience and the comfort of a user can be improved.
As shown in connection with fig. 3, the air duct assembly 40 may mainly include: wind channel 41 and fan 42, wind channel 41 has air intake 411 and air outlet 412, and fan 42 is located outside water collector 31, and fan 42 includes: motor and fan, motor and fan power transmission, the fan sets up in wind channel 41, and the velocity of flow of vapor in the water treatment space can be accelerated to the fan, makes vapor flow to air outlet 412 from air intake 411 faster to faster and then in the indoor space, so set up, can reduce the loss of vapor at the in-process that flows into indoor, can improve humidification treatment device 30's humidification efficiency.
As shown in fig. 4, the first, second and third outdoor heat exchangers 13, 21 and 22 are disposed in the outdoor casing 61, the outdoor casing 61 is made of a relatively hard material, a relatively closed space exists inside the outdoor casing 61, the first, second and third outdoor heat exchangers 13, 21 and 22 are disposed in the space inside the outdoor casing 61, the outdoor casing 61 can protect the first, second and third outdoor heat exchangers 13, 21 and 22 from being damaged by external impacts, the outdoor casing 60 can also prevent external foreign objects from entering the space inside the outdoor casing 61 and damaging the first, second and third outdoor heat exchangers 13, 21 and 22, the service lives of the first, second and third outdoor heat exchangers 13, 21 and 22 can be prolonged, so that the reliability of the air conditioning system 100 can be ensured.
Further, as shown in fig. 4, the outdoor unit casing 61 has a buckle 62, a through hole 63 is disposed below the buckle 62, and a pipe of the air duct 41 passes through the through hole 63, the buckle 62 not only facilitates the transportation of the outdoor unit 60, but also enables the maintenance and replacement of corresponding components by opening the buckle 62, and the pipe of the air duct 41 can extend into the indoor unit 50 together with other pipes of the outdoor unit 60 through the through hole 63 passing through the lower portion of the buckle 62, so that the condensed water treated by the water treatment member 32 can be delivered into the room, thereby improving the indoor air humidity, simplifying the pipe, reducing the loss of the condensed water, and further improving the working efficiency of the humidification processing device 30.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", and the like, indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only 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, should not be construed as limiting the present invention.
In the description of the present invention, "a plurality" means two or more.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an illustrative embodiment," "an example," "a specific example," or "some examples" or the like mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example.
While embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that: various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.

Claims (10)

1. An air conditioning system, comprising:
a cooling circulation loop comprising: the heat exchanger comprises a compressor, a four-way valve, a first outdoor heat exchanger, a first restrictor and an indoor heat exchanger, wherein the compressor, the four-way valve, the first outdoor heat exchanger, the first restrictor and the indoor heat exchanger are connected in series, and the indoor heat exchanger is also connected with the four-way valve;
a humidification circulation loop, the humidification circulation loop comprising: the compressor, the second outdoor heat exchanger and the third outdoor heat exchanger are connected in series;
a humidification processing device, comprising: the water receiving disc is arranged at the third outdoor heat exchanger, the water treatment piece is arranged at the water receiving disc, the air inlet of the air duct component corresponds to the water treatment piece, and the air outlet of the air duct component is communicated with an indoor unit provided with the indoor heat exchanger.
2. The air conditioning system as claimed in claim 1, wherein the second outdoor heat exchanger is disposed at one side of the first outdoor heat exchanger to constitute a heat exchanger assembly with the first outdoor heat exchanger.
3. The air conditioning system of claim 1, wherein the humidification cycle further comprises: a shutoff valve connected between the compressor and the second outdoor heat exchanger.
4. The air conditioning system of claim 3, wherein the humidification processing device further comprises: indoor humidity transducer, indoor humidity transducer is used for monitoring indoor air humidity, humidity transducer with the stop valve electricity is connected, with indoor humidity transducer monitor when indoor air humidity reaches the predetermined value to the stop valve is sent and is opened or close the instruction.
5. The air conditioning system of claim 1, wherein the humidification cycle further comprises: a second restrictor connected between the second outdoor heat exchanger and the third outdoor heat exchanger.
6. The air conditioning system of claim 1, wherein the drip tray comprises: the water receiving tray comprises a bottom plate, side frames and a partition plate, wherein the side frames surround the edge of the bottom plate and extend upwards, the partition plate is isolated between the side frames so as to separate a water receiving space and a water treatment space in the water receiving tray, water through holes for connecting the water receiving space and the water treatment space are formed in the partition plate, the third outdoor heat exchanger is arranged above the water receiving space, and the water treatment piece is arranged in or above the water treatment space.
7. The air conditioning system of claim 6, wherein the water treatment member is a heating member or an atomizing member, the heating member or the atomizing member being disposed in the water treatment space.
8. The air conditioning system of claim 6, wherein the water treatment member is a wet film disposed vertically above the water treatment space.
9. The air conditioning system of claim 1, wherein the air duct assembly comprises: wind channel and fan, the wind channel have the air intake with the air outlet, the fan is located outside the water collector and includes: the motor is in power transmission with the fan, and the fan is arranged in the air channel.
10. The air conditioning system of claim 9, wherein the first outdoor heat exchanger, the second outdoor heat exchanger, and the third outdoor heat exchanger are disposed in an outdoor enclosure, the outdoor enclosure having a handle, a through hole disposed below the handle, and a duct of the air duct passing through the through hole.
CN202021642233.9U 2020-08-07 2020-08-07 Air conditioning system Active CN212870012U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021642233.9U CN212870012U (en) 2020-08-07 2020-08-07 Air conditioning system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021642233.9U CN212870012U (en) 2020-08-07 2020-08-07 Air conditioning system

Publications (1)

Publication Number Publication Date
CN212870012U true CN212870012U (en) 2021-04-02

Family

ID=75220975

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021642233.9U Active CN212870012U (en) 2020-08-07 2020-08-07 Air conditioning system

Country Status (1)

Country Link
CN (1) CN212870012U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113834140A (en) * 2021-08-31 2021-12-24 青岛海尔空调电子有限公司 Control method and system of air conditioner

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113834140A (en) * 2021-08-31 2021-12-24 青岛海尔空调电子有限公司 Control method and system of air conditioner

Similar Documents

Publication Publication Date Title
CN112128854A (en) Air conditioning system and control method
CN102278799B (en) Air conditioner with water-evaporation-type cooling fan linked function and control method thereof
CN207975797U (en) The air cabinet of air conditioner control system of terminal regional air conditioner environment self-adaption
CN110748970A (en) Air conditioning system and control method thereof
CN110748969A (en) Air conditioning system and control method thereof
CN209165656U (en) Silkworm room environmental control
CN110748974A (en) Air conditioning system and air conditioning system control method
CN112325384A (en) Air conditioner indoor unit, control method and air conditioner
CN212870012U (en) Air conditioning system
CN113587221B (en) Cabinet air conditioner and humidity regulation and control method thereof
CN107270448A (en) A kind of capillary radiation air-conditioning system and its control method
CN213300270U (en) Air conditioning system
CN206755419U (en) Humidification device and air conditioner
CN215295203U (en) Temperature and humidity processing integrated air conditioning system
CN212644762U (en) Humidification device and air conditioning system
CN213931188U (en) Machine and air conditioner in air conditioning
CN211011626U (en) Heat pump type stepless temperature-adjustable dehumidifying unit
CN114353198A (en) Dehumidification system with temperature-adjusting fresh air dehumidifier and control method thereof
CN208124531U (en) A kind of electric water one air-conditioning heating hot wind unit of fully-automatic intelligent manipulation
CN107238190A (en) A kind of air-conditioning
CN220871012U (en) Outdoor unit of household air conditioner
CN205351531U (en) Air conditioner of taking a breath
CN215723753U (en) Air conditioning system
CN210951540U (en) Air conditioner
CN219222652U (en) Fresh air indoor unit

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant