CN211650693U - Air conditioner condensate water energy-saving device - Google Patents
Air conditioner condensate water energy-saving device Download PDFInfo
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- CN211650693U CN211650693U CN201922307403.1U CN201922307403U CN211650693U CN 211650693 U CN211650693 U CN 211650693U CN 201922307403 U CN201922307403 U CN 201922307403U CN 211650693 U CN211650693 U CN 211650693U
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- water
- air conditioner
- water pump
- storage tank
- level sensor
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Abstract
The utility model discloses an air conditioner comdenstion water economizer only needs simply to install an additional system additional, just can in time collect the comdenstion water that indoor unit discharged to on the reasonable spouting outdoor unit heat exchanger fin, the condensate pipe of general domestic air conditioner originally just lies in near the outdoor unit, consequently need not change the design of original indoor unit, only to the comdenstion water collect with the management can, the implementation degree of difficulty of scheme is not big. The liquid water is sprayed onto the fins of the outdoor unit, and after the liquid water and the fins exchange heat effectively, gaseous water vapor is formed and is pumped out by a circulating fan of the air conditioning unit and is discharged into the air. Because the liquid-gas phase change is added in the process, the latent heat of vaporization of condensed water can be increased and utilized, so that the heat exchange efficiency of the condenser is improved, the pressure of a refrigerant in an outdoor unit pipeline is reduced, and the purpose of reducing the power consumption of an air conditioner compressor is finally realized.
Description
Technical Field
The utility model belongs to domestic split type air conditioner field, concretely relates to air conditioner comdenstion water economizer.
Background
The design scheme of utilizing liquid residual cold of condensed water is commonly used, and is mainly applied to a large-scale central air-conditioning system. After the liquid condensate water of the indoor unit of the air conditioner is collected, the liquid condensate water is injected back into a cooling system of the outdoor unit, so that only the liquid residual cold of the indoor condensate water is utilized, meanwhile, higher requirements are provided for the total amount of the condensate water of the indoor unit, and if the condensate water is less, the pipelines are increased, and no benefit is obtained. At present, in a household split air conditioning unit, a small-sized energy-saving design scheme for collecting and managing the condensed water is not available.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: in order to solve the defects of the prior art, the utility model provides an air conditioner condensate water energy-saving device. And collecting and storing condensed water of the indoor heat exchanger, and spraying fins of the outdoor heat exchanger by adopting a proper method.
The technical scheme is as follows: an energy-saving device for condensed water of an air conditioner comprises an indoor heat exchanger of the air conditioner, a condensed water collecting pipe, a heat preservation type liquid storage tank, heat exchange fins of an outdoor unit and a spraying pipe;
condensed water is collected into the heat preservation type liquid storage tank in the indoor heat exchanger of the air conditioner through a condensed water collecting pipe and then flows into the spray pipes from the heat preservation type liquid storage tank, and the spray pipes are arranged on heat exchange fins of the outdoor unit.
As an optimization: the condensate water is pumped into the spray pipe from the heat preservation type liquid storage tank through the miniature electric water pump.
As an optimization: the water pump electric control box receives a signal from the humidity sensor through a humidity sensor wire, and stops the miniature electric water pump through a water pump power line if the humidity value exceeds a certain set humidity value.
As an optimization: the miniature electric water pump also comprises a liquid level sensor, and when the liquid level sensor is lower than a certain set value, the miniature electric water pump can be directly started; when the liquid level sensor is higher than a certain set value, the liquid level sensor is transmitted to the water pump electric control box through a liquid level sensor wire, the water pump electric control box outputs signals, and the miniature electric water pump is started through a water pump power line.
As an optimization: the liquid storage tank is characterized by further comprising an auxiliary liquid feeding pipe, wherein the auxiliary liquid feeding pipe is arranged on the heat-preservation liquid storage tank and used for discharging condensed water.
Has the advantages that: the utility model discloses only need simply install an additional system additional, just can in time collect the comdenstion water that indoor unit discharged to on the reasonable spouting outdoor unit heat exchanger fin, the condensate pipe of general domestic air conditioner just lies in near the outdoor unit originally, consequently need not change the design of original indoor unit, only to the comdenstion water collect with the management can, the implementation degree of difficulty of scheme is not big. The liquid water is sprayed onto the fins of the outdoor unit, and after the liquid water and the fins exchange heat effectively, gaseous water vapor is formed and is pumped out by a circulating fan of the air conditioning unit and is discharged into the air. Because the liquid-gas phase change is added in the process, the latent heat of vaporization of condensed water can be increased and utilized, so that the heat exchange efficiency of the condenser is improved, the pressure of a refrigerant in an outdoor unit pipeline is reduced, and the purpose of reducing the power consumption of an air conditioner compressor is finally realized.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is another schematic structural diagram of the present invention;
wherein: 1-indoor heat exchanger of air conditioner, 2-condensate collecting pipe, 3-heat preservation liquid storage tank, 4-outdoor heat exchange fin, 5-spray pipe, 6-minitype electric water pump, 7-water pump electric cabinet, 8-humidity sensor, 9-humidity sensor wire, 10-water pump power line, 11-auxiliary liquid feeding pipe, 12-liquid level sensor, 13-liquid level sensor wire.
Detailed Description
Detailed description of the preferred embodiment 1
The embodiment is a utilization scheme of condensed water energy saving of a wall-mounted split air conditioner, and as shown in fig. 1, the condensed water energy saving device of the air conditioner comprises an indoor heat exchanger 1 of the air conditioner, a condensed water collecting pipe 2, a heat preservation type liquid storage tank 3, heat exchange fins 4 of an outdoor unit, a spray pipe 5 and an auxiliary liquid adding pipe 11. Condensed water is collected into the heat preservation type liquid storage tank 3 in the indoor heat exchanger 1 of the air conditioner through the condensed water collecting pipe 2 and then flows into the spray pipe 5 from the heat preservation type liquid storage tank 3, and the spray pipe 5 is installed on the heat exchange fins 4 of the outdoor unit. The auxiliary liquid feeding pipe 11 is arranged on the heat preservation type liquid storage tank 3 and discharges condensed water.
In the embodiment, the liquid level of the liquid storage tank is matched with the size and the number of the openings of the spray pipes, so that liquid water is dripped onto the fins of the heat exchanger, and complete vaporization is realized.
Specific example 2
The embodiment is a utilization scheme of energy saving of condensed water of a cabinet air conditioner, and as shown in fig. 2, the energy saving device of the condensed water of the air conditioner comprises an indoor heat exchanger 1 of the air conditioner, a condensed water collecting pipe 2, a heat preservation type liquid storage tank 3, an outdoor heat exchange fin 4, a spraying pipe 5, a micro electric water pump 6, a water pump electric cabinet 7, a humidity sensor 8, a humidity sensor lead 9, a water pump power supply line 10, an auxiliary liquid adding pipe 11, a liquid level sensor 12 and a liquid level sensor lead 13. Condensed water is collected into a heat preservation type liquid storage tank 3 in an indoor heat exchanger 1 of the air conditioner through a condensed water collecting pipe 2, and then is pumped into a spray pipe 5 from the heat preservation type liquid storage tank 3 through a miniature electric water pump 6, and the spray pipe 5 is arranged on a heat exchange fin 4 of an outdoor unit. The auxiliary liquid feeding pipe 11 is arranged on the heat preservation type liquid storage tank 3 and discharges condensed water.
The condensed water is pumped into the spray pipe 5 from the heat preservation type liquid storage tank 3 through the miniature electric water pump 6. The humidity sensor 8 is arranged on the other side of the outdoor heat exchanger and used for detecting whether the sprayed liquid water is completely vaporized, the electric control box 7 of the water pump receives a signal from the humidity sensor 8 through a humidity sensor lead 9, and if the humidity value exceeds a certain set humidity value, the miniature electric water pump 6 is stopped through a water pump power supply line 10.
When the liquid level sensor 12 is lower than a certain set value, the micro electric water pump 6 can be directly started; when the liquid level sensor 12 is higher than a certain set value, the signal is transmitted to the water pump electric control box 7 through the liquid level sensor wire 13, the water pump electric control box 7 outputs a signal, and the micro electric water pump 6 is started through the water pump power line 10.
The utility model discloses only need simply install an additional system additional, just can in time collect the comdenstion water that indoor unit discharged to on the reasonable spouting outdoor unit heat exchanger fin, the condensate pipe of general domestic air conditioner just lies in near the outdoor unit originally, consequently need not change the design of original indoor unit, only to the comdenstion water collect with the management can, the implementation degree of difficulty of scheme is not big. The liquid water is sprayed onto the fins of the outdoor unit, and after the liquid water and the fins exchange heat effectively, gaseous water vapor is formed and is pumped out by a circulating fan of the air conditioning unit and is discharged into the air. Because the liquid-gas phase change is added in the process, the latent heat of vaporization of condensed water can be increased and utilized, so that the heat exchange efficiency of the condenser is improved, the pressure of a refrigerant in an outdoor unit pipeline is reduced, and the purpose of reducing the power consumption of an air conditioner compressor is finally realized.
The foregoing will clearly and completely describe the technical solutions in the embodiments of the present invention, so that those skilled in the art can better understand the advantages and features of the present invention, thereby making a more clear definition of the protection scope of the present invention. The described embodiments of the present invention are only some embodiments, but not all embodiments, and all other embodiments obtained by the person skilled in the art without creative work belong to the scope protected by the present invention based on the embodiments of the present invention.
Claims (5)
1. The utility model provides an air conditioner comdenstion water economizer which characterized in that: comprises an indoor heat exchanger (1) of an air conditioner, a condensed water collecting pipe (2), a heat preservation type liquid storage tank (3), an outdoor heat exchange fin (4) and a spray pipe (5);
condensed water is collected into the heat preservation type liquid storage tank (3) in the indoor heat exchanger (1) of the air conditioner through the condensed water collecting pipe (2), and then flows into the spraying pipe (5) from the heat preservation type liquid storage tank (3), and the spraying pipe (5) is installed on the heat exchange fins (4) of the outdoor unit.
2. An air conditioner condensate water economizer as claimed in claim 1 wherein: the device also comprises a micro electric water pump (6), and the condensed water is pumped into the spray pipe (5) from the heat preservation type liquid storage tank (3) through the micro electric water pump (6).
3. An air conditioner condensate water economizer as claimed in claim 2 wherein: still include water pump electric cabinet (7) and humidity transducer (8), humidity transducer (8) are installed at the another side of outdoor heat exchanger for whether detect the liquid water that sprays vaporize completely, water pump electric cabinet (7) receive the signal that comes from humidity transducer (8) through humidity transducer wire (9), if exceed a certain settlement humidity value, then stop miniature electric water pump (6) through water pump power cord (10).
4. An air conditioner condensate water economizer as claimed in claim 3 wherein: the device also comprises a liquid level sensor (12), and when the liquid level sensor (12) is lower than a certain set value, the micro electric water pump (6) can be directly started; when the liquid level sensor (12) is higher than a certain set value, the liquid level sensor is transmitted to the water pump electric control box (7) through the liquid level sensor wire (13), the water pump electric control box (7) outputs signals, and the miniature electric water pump (6) is started through the water pump power line (10).
5. An air conditioner condensate water saving device according to any one of claims 1 to 4, characterized in that: the device also comprises an auxiliary liquid feeding pipe (11), wherein the auxiliary liquid feeding pipe (11) is arranged on the heat-preservation liquid storage tank (3) and discharges condensed water.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922307403.1U CN211650693U (en) | 2019-12-20 | 2019-12-20 | Air conditioner condensate water energy-saving device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922307403.1U CN211650693U (en) | 2019-12-20 | 2019-12-20 | Air conditioner condensate water energy-saving device |
Publications (1)
Publication Number | Publication Date |
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CN211650693U true CN211650693U (en) | 2020-10-09 |
Family
ID=72697547
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201922307403.1U Expired - Fee Related CN211650693U (en) | 2019-12-20 | 2019-12-20 | Air conditioner condensate water energy-saving device |
Country Status (1)
Country | Link |
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CN (1) | CN211650693U (en) |
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2019
- 2019-12-20 CN CN201922307403.1U patent/CN211650693U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20201009 Termination date: 20211220 |