CN101806477A - Fresh air atomization temperature and humidity regulating split air conditioner - Google Patents

Fresh air atomization temperature and humidity regulating split air conditioner Download PDF

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Publication number
CN101806477A
CN101806477A CN 201010137732 CN201010137732A CN101806477A CN 101806477 A CN101806477 A CN 101806477A CN 201010137732 CN201010137732 CN 201010137732 CN 201010137732 A CN201010137732 A CN 201010137732A CN 101806477 A CN101806477 A CN 101806477A
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China
Prior art keywords
air
air conditioner
humidity regulating
atomization temperature
split
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CN 201010137732
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Chinese (zh)
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CN101806477B (en
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万建红
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Individual
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Individual
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Priority to CN2010101377327A priority Critical patent/CN101806477B/en
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Publication of CN101806477B publication Critical patent/CN101806477B/en
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Abstract

The invention relates to a fresh air atomization temperature and humidity regulating split air conditioner. In the air conditioner, a heat pump 19 is connected with an automatic water-filling tank 18, a water pipe 16 is connected with an atomizing chamber 17, and a blast pipe is connected with a fresh air atomization temperature and humidity regulating split air conditioner indoor machine a. A whole-heat fin heat exchanger is used as the indoor machine, and cold/heat medium water is atomized to be used as mass transfer. The cost is reduced, water is evaporated to increase the heat exchange efficiency, and the moisture-permeable film is used to regulate indoor humidity and introduce fresh air.

Description

The fresh air atomization temperature and humidity regulating split-type air conditioner
Affiliated field;
The present invention relates to that but the split-type air conditioner field is especially a kind of can introduce the adjustable wet split-type air conditioner of new wind temperature adjustment.
Background technology;
Split-type air conditioner known today is cold/and heat energy is to reach through heat-transfer pipe to adopt the indoor set and the room air of coil exchanger to carry out cold and hot exchange, and mass transfer is divided into two kinds in special-purpose cold-producing medium and water.More than two kinds of air-conditionings can only temperature adjustment, damping and draw new wind and all need to add in addition the equipment cost height.
Summary of the invention;
In order to overcome above deficiency, the invention provides a kind of fresh air atomization temperature and humidity regulating split-type air conditioner, the full hot plate wing heat exchanger principle that adopts corrugation aluminium foil and moisture permeable membrane adhesion to form some air channels is made the fresh air atomization temperature and humidity regulating indoor split-type air conditioner, adopt cold/heat medium water through atomizing as mass transfer, indoor set through adopting full hot plate wing heat exchanger and the cold and hot exchange of room air are regulated indoor humidity by moisture permeable membrane.
The invention has the beneficial effects as follows and adopt full hot plate wing heat exchanger to reduce cost, utilize water evaporation and heat-exchange efficient to be improved, can regulate indoor humidity, can introduce new wind by moisture permeable membrane.
Description of drawings;
Fig. 1 is a fresh air atomization temperature and humidity regulating split-type air conditioner schematic diagram
Fig. 2 fresh air atomization temperature and humidity regulating indoor split-type air conditioner vertical view
Fig. 3 is a fresh air atomization temperature and humidity regulating indoor split-type air conditioner a-b face cutaway view
Fig. 4 is a fresh air atomization temperature and humidity regulating indoor split-type air conditioner side view
Fig. 5 is a vertical view after the moulding of S type aluminium foil
Fig. 6 is a c-d face cutaway view after the aluminium foil moulding
Fig. 7 is a vertical view after the moulding of U type aluminium foil
Concrete enforcement;
With aluminium foil is the 8 corrugation aluminium foil plates that have 9 saturating wet holes on S type or U type and the 15 corrugation male and fomale(M﹠F)s by mould molding; By four with the positive desuperposition of 8 corrugation aluminium foil plates, to separate and adhesion by 6 moisture permeable membranes in the middle of the 9 saturating wet hole consistencies from top to bottom, form up and down 5 wind output channels that separate by 6 moisture permeable membranes and 7 new wind return airways, 13 new wind inlets, 10 return air inlet, the outlet of 4 air-conditioning wind, 12 spray chamber interfaces, 1 wind exhausting outlet, assemble 14 return air fans, 3 new wind fans, 2 air ejector fan peripheries are made 11 shell systems of insulation material fresh air atomization temperature and humidity regulating indoor split-type air conditioner.
The fresh air atomization temperature and humidity regulating split-type air conditioner is to connect 18 automatic water supplement water tanks by 19 heat pumps to be connected with 17 spray chambers by airduct and a fresh air atomization temperature and humidity regulating indoor split-type air conditioner by 16 water pipes and to connect to form, and 16 water pipes add heat-insulation layer outward.
17 spray chambers are that interior dress atomizer has the keeping warmth space that connects a fresh air atomization temperature and humidity regulating indoor split-type air conditioner interface and the sealing of air draft interface.
Provide cold/hot water to 18 automatic water supplement water tank to be delivered to 17 spray chambers atomizings by 19 heat pumps, carry the cold/heat medium water of atomizing through 21 filters, 17 spray chambers by 2 air ejector fan ejectment wind and carry out heat through 12 spray chamber interfaces of a fresh air atomization temperature and humidity regulating indoor split-type air conditioner, 5 wind output channels new wind, the return air by 6 moisture permeable membranes, 9 saturating wet holes and 7 new wind return airways and wet that to exchange discharge outdoor by the cold/heat energy of 19 heat pumps recovery through 16 water pipes, 20 water pumps.
3 new wind fans, 14 return air fans draw new wind and return air and go into to enter cold/heat medium water that 7 new wind and return airway atomize in by 6 moisture permeable membranes, 9 saturating wet holes and 5 wind output channels with 10 return air inlet and carry out heat and wet and exchange to the indoor air-conditioning wind that provides through 13 new wind.
Regulate 19 heat pump refrigeratings, hot water temperature by Circuits System, regulate atomizer atomization quantity in 17 spray chambers, regulate M return air rotation speed of the fan and finish the air conditioning process jointly.

Claims (6)

1. a fresh air atomization temperature and humidity regulating split-type air conditioner is characterized in that connecting 18 automatic water supplement water tanks by 19 heat pumps is connected with 17 spray chambers by airduct and a fresh air atomization temperature and humidity regulating indoor split-type air conditioner by 16 water pipes and connects to form, what a fresh air atomization temperature and humidity regulating indoor split-type air conditioner adopted is that full hot plate wing heat exchanger principle is made, adopt cold/heat medium water through atomizing, carry out full heat exchange by moisture permeable membrane and room air as mass transfer.
2. cold/hot water to the 18 automatic water supplement water tank that provides according to right 1 described a kind of fresh air atomization temperature and humidity regulating split-type air conditioner 19 heat pumps is delivered to the atomizing of 17 spray chambers through 16 water pipes, 20 water pumps, is carried the cold/heat medium water of atomizing by 2 air ejector fan ejectment wind through 21 filters, 17 spray chambers and carries out heat through the 12 air drafts inlet of a fresh air atomization temperature and humidity regulating indoor split-type air conditioner, 5 wind output channels new wind, the return air by 6 moisture permeable membranes, 9 saturating wet holes and 7 new wind return airways and wet and exchange that discharge is outdoor reclaims hot and cold energy by 19 heat pumps.
3. introducing new wind and return air according to right 1 described a kind of fresh air atomization temperature and humidity regulating split-type air conditioner by 14 return air fans, 3 new wind fans goes into to enter cold/heat medium water that 7 new wind and return airway atomize in by 6 moisture permeable membranes, 9 saturating wet holes and wind output channel with 10 return air inlet and carry out heat and wet and exchange to the indoor air-conditioning wind that provides through 13 new wind.
4. be to regulate 19 heat pump refrigeratings/hot water temperature according to right 1 described a kind of fresh air atomization temperature and humidity regulating split-type air conditioner, regulate atomizer atomization quantity in 17 spray chambers, regulate 14 return air rotation speeds of the fan and finish the air conditioning process jointly by Circuits System.
5. be by by the positive desuperposition of 8 corrugation aluminium foil plates that has 9 saturating wet holes on four above S types or U type and the 15 corrugation male and fomale(M﹠F)s according to right 1 described a kind of its feature of fresh air atomization temperature and humidity regulating split-type air conditioner a fresh air atomization temperature and humidity regulating indoor split-type air conditioner, to separate and adhesion by 6 moisture permeable membranes in the middle of the 9 saturating wet hole consistencies from top to bottom, form 5 wind output channels and the 7 new wind return airways that separate by 6 moisture permeable membranes up and down, 13 new wind inlets, 10 return air inlet, the outlet of 4 air-conditioning wind, 12 air drafts inlet, 1 wind exhausting outlet assembles 14 return air fans, 3 new wind fans, 11 shell systems are done with plastic material in 2 air ejector fan peripheries.
6. be that interior dress atomizer has the keeping warmth space that connects a fresh air atomization temperature and humidity regulating indoor split-type air conditioner interface and the sealing of air draft interface according to right 1 its feature 17 spray chambers of described a kind of fresh air atomization temperature and humidity regulating split-type air conditioner.
CN2010101377327A 2010-04-01 2010-04-01 Fresh air atomization temperature and humidity regulating split air conditioner Expired - Fee Related CN101806477B (en)

Priority Applications (1)

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CN2010101377327A CN101806477B (en) 2010-04-01 2010-04-01 Fresh air atomization temperature and humidity regulating split air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010101377327A CN101806477B (en) 2010-04-01 2010-04-01 Fresh air atomization temperature and humidity regulating split air conditioner

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CN101806477A true CN101806477A (en) 2010-08-18
CN101806477B CN101806477B (en) 2012-09-05

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104214856A (en) * 2014-07-23 2014-12-17 冯留建 High-efficiency and energy-saving water cooling air conditioner
CN113465059A (en) * 2021-05-31 2021-10-01 华为技术有限公司 Evaporative cooling unit and data center

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2370327Y (en) * 1999-04-06 2000-03-22 金苏敏 Split hot pump cool and heat household air conditioner with air conditioner condensation recovering and utilizing system
CN1862121A (en) * 2006-06-15 2006-11-15 清华大学 Temp and moisture independent control type air-conditioning system using solution as auxiliary working substance
JP2008057861A (en) * 2006-08-31 2008-03-13 Matsushita Electric Ind Co Ltd Air conditioner

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2370327Y (en) * 1999-04-06 2000-03-22 金苏敏 Split hot pump cool and heat household air conditioner with air conditioner condensation recovering and utilizing system
CN1862121A (en) * 2006-06-15 2006-11-15 清华大学 Temp and moisture independent control type air-conditioning system using solution as auxiliary working substance
JP2008057861A (en) * 2006-08-31 2008-03-13 Matsushita Electric Ind Co Ltd Air conditioner

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104214856A (en) * 2014-07-23 2014-12-17 冯留建 High-efficiency and energy-saving water cooling air conditioner
CN113465059A (en) * 2021-05-31 2021-10-01 华为技术有限公司 Evaporative cooling unit and data center
CN113465059B (en) * 2021-05-31 2023-02-03 华为数字能源技术有限公司 Evaporative cooling unit and data center
US11898773B2 (en) 2021-05-31 2024-02-13 Huawei Digital Power Technologies Co., Ltd. Evaporative cooling unit and data center

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Granted publication date: 20120905

Termination date: 20130401