CN205090480U - Noiseless air conditioner low temperature radiation control module - Google Patents

Noiseless air conditioner low temperature radiation control module Download PDF

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Publication number
CN205090480U
CN205090480U CN201520718725.4U CN201520718725U CN205090480U CN 205090480 U CN205090480 U CN 205090480U CN 201520718725 U CN201520718725 U CN 201520718725U CN 205090480 U CN205090480 U CN 205090480U
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China
Prior art keywords
valve
heat pump
capillary
heat
heat transfer
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CN201520718725.4U
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Chinese (zh)
Inventor
陈源侨
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Wo Yi new energy technology (Jiangsu) Co., Ltd.
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Suzhou Meiyu Cooling And Heating Equipment Engineering Co Ltd
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Abstract

The utility model relates to a noiseless air conditioner low temperature radiation control module, including heat pump outlet pipe, heat pump inlet tube, capillary heat transfer net bars, be equipped with first valve on the heat pump outlet pipe, be equipped with the second valve on the heat pump inlet tube, heat pump outlet pipe and heat pump inlet tube and heat transfer board intercommunication, the export of second valve is equipped with the third valve, and the import of second valve is equipped with four valves, and the pipeline of first valve export is equipped with the water pump, and heat pump inlet tube end is equipped with a temperature sensor, and capillary heat transfer net bars delivery port is equipped with the 2nd temperature sensor, capillary heat transfer net bars delivery port is equipped with pressure sensor. The utility model discloses the utilization adopts the heat pump directly to supply water when the higher temperature, simple structure, and the temperature is easily controlled, does benefit to comprehensive energy -conservation, the heat transfer of indoor capillary heat transfer net bars is given to warm water in changing into with the heat transfer board through the low warm water of heat pump when indoor capillary heat transfer demand is great to reach noiseless air conditioner capillary system's requirement and security, utilize pressure sensor to prevent that pipeline pressure from transshipping.

Description

A kind of Noiseless air conditioner low-temp radiating control module
Technical field
The utility model relates to Heating, Ventilation and Air Conditioning (HVAC) Technology field, particularly a kind of Noiseless air conditioner low-temp radiating control module.
Background technology
Current Chinese technical specification and technical data be not about the correlation technique data of low-temp radiating Noiseless air conditioner technology, only have small part company to adopt the control technology of buffer tank second time heat transfer technology realization to capillary water temperature, do not have type to become system equipment in the application of this technical field.Water tank stage space is very large, and water temperature is difficult to accurate control, is that the capillary that begins in most source mixes water management standing-meeting and causes Condensation serious because dew point transducer is malfunctioning.
Utility model content
For the deficiencies in the prior art, the purpose of this utility model is to provide a kind of Noiseless air conditioner low-temp radiating control module.
The utility model solves the technical scheme that its technical problem adopts: a kind of Noiseless air conditioner low-temp radiating control module, comprise heat pump outlet pipe, heat pump water inlet pipe, capillary heat exchange net grid, described heat pump outlet pipe is communicated with described capillary heat exchange net grating system water inlet, described heat pump water inlet pipe is communicated with capillary heat exchange net grid delivery port, described heat pump outlet pipe is provided with the first valve, described heat pump water inlet pipe is provided with the second valve, described heat pump outlet pipe and heat pump water inlet pipe are all communicated with the first heat exchanging chamber of heat exchanger plates, the 3rd valve is provided with between the pipeline of described second valve export and described heat exchanger plates, the 4th valve is provided with between the pipeline of the second valve inlet and the second heat exchanging chamber of heat exchanger plates, water pump is provided with between the pipeline of the first valve export and the second heat exchanging chamber of heat exchanger plates, described heat pump water inlet pipe end is provided with the first temperature sensor, described first temperature sensor and the first valve, second valve, 3rd valve, 4th valve interlock, first temperature sensor detected temperatures higher than design temperature, the first valve and the second valve opening, the 3rd valve and the 4th valve closing, first temperature sensor detected temperatures lower than design temperature, the first valve and the second valve closing, the 3rd valve and the 4th valve opening, described capillary heat exchange net grid delivery port is provided with the second temperature sensor, described second temperature sensor and starting mode of pump circuit, the 4th valve link, second temperature sensor detected temperatures higher than design temperature, starting mode of pump, the 4th valve opening, on the contrary water pump close, the 4th valve closing, described capillary heat exchange net grid delivery port is provided with pressure sensor.
Utilize in above-mentioned design and adopt heat pump directly to supply water when higher temperature, structure is simple, and temperature is easy to control, and is beneficial to comprehensively energy-conservation; In being changed into by heat pump water at low temperature and heat exchanger plates when indoor capillary heat exchange demand is larger, warm water gives the heat exchange of indoor capillary heat exchange net grid, to reach requirement and the security of Noiseless air conditioner capillary system, utilizes pressure sensor to prevent pipeline pressure from transshipping.
As the further improvement of the design, between described 4th valve and described heat exchanger plates, be connected with check-valves.Anti-sealing adverse current enters heat exchanger plates, causes the failure of heat exchange.
The beneficial effects of the utility model are: the utility model utilizes and adopts heat pump directly to supply water when higher temperature, and structure is simple, and temperature is easy to control, and is beneficial to comprehensively energy-conservation; In being changed into by heat pump water at low temperature and heat exchanger plates when indoor capillary heat exchange demand is larger, warm water gives the heat exchange of indoor capillary heat exchange net grid, to reach requirement and the security of Noiseless air conditioner capillary system, utilizes pressure sensor to prevent pipeline pressure from transshipping.
Accompanying drawing explanation
Below in conjunction with drawings and Examples, the utility model is further illustrated.
Fig. 1 is system architecture schematic diagram of the present utility model.
1. heat pump outlet pipe, 2. heat exchanger plates, 3. the first valve in the drawings, 4. water pump, 5. capillary heat exchange net grid, 6. the second temperature sensor, 7. the 4th valve, 8. check-valves, 9. the second valve, 10. the 3rd valve, 11. first temperature sensors, 12. heat pump water inlet pipes, 13. first heat exchanging chambers, 14. second heat exchanging chambers, 15. pressure sensors.
Detailed description of the invention
The utility model is described in detail, illustrative examples wherein and illustrate and be only used for explaining the utility model below in conjunction with accompanying drawing and specific embodiment, but not as to restriction of the present utility model.
Embodiment: a kind of Noiseless air conditioner low-temp radiating control module, comprise heat pump outlet pipe 1, heat pump water inlet pipe 12, capillary heat exchange net grid 5, described heat pump outlet pipe 1 is communicated with described capillary heat exchange net grid 5 system water inlet, described heat pump water inlet pipe 12 is communicated with capillary heat exchange net grid 5 delivery port, described heat pump outlet pipe 1 is provided with the first valve 3, described heat pump water inlet pipe 12 is provided with the second valve 9, described heat pump outlet pipe 1 and heat pump water inlet pipe 12 are all communicated with the first heat exchanging chamber 13 of heat exchanger plates 2, the 3rd valve 10 is provided with between the pipeline that described second valve 9 exports and described heat exchanger plates 2, the 4th valve 7 is provided with between the pipeline of the second valve 9 import and the second heat exchanging chamber 14 of heat exchanger plates 2, water pump 4 is provided with between the pipeline that first valve 3 exports and the second heat exchanging chamber 14 of heat exchanger plates 2, described heat pump water inlet pipe 12 end is provided with the first temperature sensor 11, described first temperature sensor 11 and the first valve 3, second valve 9, 3rd valve 10, 4th valve 7 links, first temperature sensor 11 detected temperatures is higher than design temperature, and the first valve 3 and the second valve 9 are opened, and the 3rd valve 10 and the 4th valve 7 are closed, first temperature sensor 11 detected temperatures is lower than design temperature, and the first valve 3 and the second valve 9 are closed, and the 3rd valve 10 and the 4th valve 7 are opened, described capillary heat exchange net grid 5 delivery port is provided with the second temperature sensor 6, described second temperature sensor 6 links with water pump 4 start-up circuit, the 4th valve 7, second temperature sensor 6 detected temperatures is higher than design temperature, water pump 4 starts, the 4th valve 7 is opened, otherwise water pump 4 cuts out, the 4th valve 7 is closed, described capillary heat exchange net grid 5 delivery port is provided with pressure sensor 15.
Utilize in above-mentioned design and adopt heat pump directly to supply water when higher temperature, structure is simple, and temperature is easy to control, and is beneficial to comprehensively energy-conservation; In being changed into by heat pump water at low temperature and heat exchanger plates 2 when indoor capillary heat exchange demand is larger, warm water gives the heat exchange of indoor capillary heat exchange net grid 5, to reach requirement and the security of Noiseless air conditioner capillary system, utilizes pressure sensor 15 to prevent pipeline pressure from transshipping.
As the further improvement of the design, between described 4th valve 7 and described heat exchanger plates 2, be connected with check-valves 8.Anti-sealing adverse current enters heat exchanger plates 2, causes the failure of heat exchange.
The foregoing is only embodiment of the present utility model; not thereby the scope of the claims of the present utility model is limited; every utilize the utility model description and accompanying drawing content to do equivalent structure or equivalent flow process conversion; or be directly or indirectly used in other relevant technical fields, be all in like manner included in scope of patent protection of the present utility model.

Claims (2)

1. a Noiseless air conditioner low-temp radiating control module, comprise heat pump outlet pipe, heat pump water inlet pipe, capillary heat exchange net grid, described heat pump outlet pipe is communicated with described capillary heat exchange net grating system water inlet, described heat pump water inlet pipe is communicated with capillary heat exchange net grid delivery port, described heat pump outlet pipe is provided with the first valve, described heat pump water inlet pipe is provided with the second valve, described heat pump outlet pipe and heat pump water inlet pipe are all communicated with the first heat exchanging chamber of heat exchanger plates, the 3rd valve is provided with between the pipeline of described second valve export and described heat exchanger plates, the 4th valve is provided with between the pipeline of the second valve inlet and the second heat exchanging chamber of heat exchanger plates, water pump is provided with between the pipeline of the first valve export and the second heat exchanging chamber of heat exchanger plates, described heat pump water inlet pipe end is provided with the first temperature sensor, described first temperature sensor and the first valve, second valve, 3rd valve, 4th valve interlock, described capillary heat exchange net grid delivery port is provided with the second temperature sensor, and described second temperature sensor and starting mode of pump circuit, the 4th valve link, described capillary heat exchange net grid delivery port is provided with pressure sensor.
2. a kind of Noiseless air conditioner low-temp radiating control module according to claim 1, is characterized in that, be connected with check-valves between described 4th valve and described heat exchanger plates.
CN201520718725.4U 2015-09-17 2015-09-17 Noiseless air conditioner low temperature radiation control module Active CN205090480U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520718725.4U CN205090480U (en) 2015-09-17 2015-09-17 Noiseless air conditioner low temperature radiation control module

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520718725.4U CN205090480U (en) 2015-09-17 2015-09-17 Noiseless air conditioner low temperature radiation control module

Publications (1)

Publication Number Publication Date
CN205090480U true CN205090480U (en) 2016-03-16

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520718725.4U Active CN205090480U (en) 2015-09-17 2015-09-17 Noiseless air conditioner low temperature radiation control module

Country Status (1)

Country Link
CN (1) CN205090480U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20160517

Address after: Kunshan City Qingfeng West Road, Suzhou city Jiangsu province 215000 No. 639 Gu Chi Industrial Park Room 201

Patentee after: Wo Yi new energy technology (Jiangsu) Co., Ltd.

Address before: Kunshan City Qingfeng West Road, Suzhou city Jiangsu province 215300 No. 639 room 1 Room 201

Patentee before: SUZHOU MEIYU COOLING AND HEATING EQUIPMENT ENGINEERING CO., LTD.