CN205403009U - Increase substantially hot exchange capacity's of air conditioner superconductive heat fan - Google Patents

Increase substantially hot exchange capacity's of air conditioner superconductive heat fan Download PDF

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Publication number
CN205403009U
CN205403009U CN201620161740.8U CN201620161740U CN205403009U CN 205403009 U CN205403009 U CN 205403009U CN 201620161740 U CN201620161740 U CN 201620161740U CN 205403009 U CN205403009 U CN 205403009U
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China
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fan
heat
air conditioner
fan body
conducting strip
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Withdrawn - After Issue
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CN201620161740.8U
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Chinese (zh)
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郭振
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Individual
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Individual
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Abstract

The utility model discloses an increase substantially hot exchange capacity's of air conditioner superconductive heat fan, the evaporimeter of air conditioner, the heat exchange of condenser are accomplished by superconductive heat fan, and this superconductive heat fan is fanned internal portion and is equipped with cold source hookup pipeline, damping sheet, heat conduction agent and conducting strip including the fan body that is equipped with the hollow shaft, cold source hookup pipeline passes to be established at the internal damping sheet of fan, rethread sealed bearing and the fan body and the hookup of outside cold source pipeline, and conducting strip and fan wall connection fans external portion and are equipped with the flabellum, and the cold source links heat exchange between pipeline and the conducting strip and links through the heat conduction agent and realize. This superconductive heat hot conducting power of follow, hot exchange area, this three aspect of hot switching speed have obtained substantive leap, can increase substantially the hot exchange capacity of air conditioner. Make the air conditioner product realize miniaturized 15 of the existing product that is 1 10, not only save raw and other materials, improve work efficiency, can also reduce operating noise to and production and use cost, it not only is technical innovation, but the revolution of air conditioner industry.

Description

A kind of heat superconducting fan increasing substantially air conditioner heat exchange capacity
Technical field
The utility model relates to the heat-exchange device of air conditioner, a kind of air conditioner heat exchange capacity that increases substantially Heat superconducting is fanned.
Background technology
Air-conditioning is that the temperature to air is adjusted, and meets people's production, the equipment of living needs.Air-conditioning generally uses Cold-producing medium is freon.In the prior art, air conditioner refrigerating is by indoor evaporimeter heat absorption, outdoor condenser heat rejection, from And realize room air cooling, the purpose of outdoor heat radiation.When heating, it is to make cold-producing medium in condenser and steaming by magnetic valve switching The flow direction sending out device is contrary with when freezing, so what the when of heating, outdoor blew is cold wind, what indoor were blown is hot blast.Air-conditioning Operating efficiency depends primarily on heat-exchange capacity, and the size of heat-exchange capacity depends on three aspects: 1. capacity of heat transmission;2. Heat exchange area;3. rate of heat exchange.
In prior art, the heat exchange of air-conditioning makes air flowing carry out with evaporimeter, condenser by fan, due to The heat-conduction value of air is the lowest, about 0.03 W/m.K.In order to realize the temperature regulating power of certain space scope, its evaporimeter, The volume of condenser need to be made very big, as a complete humidity control system, also relates to refrigeration source, fan, pipeline The auxiliary facility that waits need to increase accordingly, the cumulative volume of such system increases, and material resources loss is big, manufactures and application cost is high.
CN103528143A method improving air conditioner refrigerating efficiency, the utility model utilizes A/C evaporator to condense Condenser is cooled down by waste water, accelerates air heat exchange in condenser, improves refrigerating efficiency, improves heat exchange effect simultaneously Rate.But the limited extent that the method heat exchanger effectiveness improves.
CN105258406A air-conditioning condenser system, the utility model air-conditioning condenser system includes condenser, spray Pouring system, water charging system, by the optimization to part, carry out pipeline reasonable Arrangement by air-conditioning condenser system, make condenser system System overall structure is the compactest, improves heat exchange property, reduces drag losses, is additionally arranged spray system, water charging system can be to cold Condenser system carries out auxiliary temperature-reducing device, such that it is able to make the operating temperature of condenser reduce to improve the refrigeration of whole refrigeration machine Coefficient and operating efficiency, the problem overcoming the heat-sinking capability difference of conventional domestic air-conditioning and air conditioning for automobiles air-cooled condensation unit. This system improves coefficient of refrigerating performance and the operating efficiency of whole refrigeration machine, but has had more again a part of accessory system, to system simultaneously The demand that the loss of cumulative volume, material resources, manufacture and application cost decline still can not meet.
Utility model content
The purpose of this utility model is for the deficiencies in the prior art, and provides one to increase substantially air conditioner heat exchange energy The heat superconducting fan of power, its simple in construction, volume is little, low cost.
The technical scheme realizing the utility model purpose is:
A kind of heat superconducting fan increasing substantially air conditioner heat exchange capacity, unlike the prior art: the evaporation of air-conditioning Device, the heat exchange of condenser have been fanned by heat superconducting, and this heat superconducting fan includes being provided with the fan body of hollow shaft, is provided with inside fan body Low-temperature receiver connecting pipeline, damping sheet, thermal conducting agent and conducting strip;Low-temperature receiver connecting pipeline passes through the damping sheet in fan body, then passes through Sealing bearing to couple with fan body and external source pipeline, conducting strip is connected with fan wall, is provided with flabellum, low-temperature receiver connecting tube outside fan body Heat exchange between road with conducting strip is coupled by thermal conducting agent and realizes.
Described fan body is connected with motor.
Described thermal conducting agent is the mixture of liquid and graphite powder, and graphite powder is the 1000 above fine powders of mesh, graphite in mixture Powder content is 5%-50%, matching principle be based on the mobility not affecting mixture under add graphite powder.
Described liquid is machine oil that mobility is high, lubricating oil, water etc..
Described low-temperature receiver connecting pipeline, conducting strip, fan wall and flabellum are high-termal conductivity material or metal material is made.
The utility model heat superconducting is fanned, and with the heat exchange of room air, low-temperature receiver is transmitted into the interior space by flabellum Speed exceedes velocity of sound, and its rate of heat exchange exceedes velocity of sound, admittedly can be described as supersonic speed heat conduction fan, is called for short heat superconducting fan.
Operation principle of the present utility model is:
The external source that compressor of air conditioner or semiconductor chilling plate produce is joined with the low-temperature receiver in heat superconducting fan body by pipeline Adapter road couples, and will be delivered to the inside that heat superconducting fan is closed by low-temperature receiver, and in operation of air conditioner, thermal conducting agent is under the drive of conducting strip Agitation, i.e. defines the heat exchange from low-temperature receiver → low-temperature receiver connecting pipeline → thermal conducting agent → conducting strip → fan wall → flabellum at a high speed Journey.
When low-temperature receiver is delivered to the fan wall of heat superconducting fan, flabellum, meet and get along well mutually condensation (low-temperature receiver) with Indoor Thermal air, to relatively The airtight interior space cools down, the condensation (low-temperature receiver) the most about 1 kilogram during its heat exchange work, and diel is no less than 5 Kilogram.This condensation will be got rid of into the interior space with repeatability spray regime rapidly as emission bullet by flabellum and directly change sky Between temperature, be equivalent to from heat superconducting fan A point to the interior space launch the area of coverage arbitrary B point, have following relation A cold be B cold, Its speed exceedes existing makes air flowing (wind speed 2~3m/s) carry out with fixing evaporimeter, condenser by universal fan 100 times of rate of heat exchange.This low-temperature receiver is original air humidity in space, therefore, has not both interfered with the space after cooling wet Degree, it is not required that efflux wastewater is affected outdoor environment.Outdoor heat exchange is identical with interior heat exchange, the most outdoor cold What source connecting pipeline flow through is thermal source.I.e. indoor heat superconducting fan absorbing and cooling temperature, outdoor heat superconducting fan exotherm, in turn with i.e. For " heating ".
In the prior art, a large amount of globules condensed that heat exchange produces become unnecessary discarded object, need to set up water conservancy diversion Groove and drainpipe discharge it outdoor, or set up auxiliary equipment for assisting off-premises station to lower the temperature.And the utility model be by fan wall, The condensation (low-temperature receiver) of flabellum is got rid of into the interior space with repeatability spray regime rapidly as emission bullet and directly changes space Temperature.Condensation essence is water, and the heat-conduction value of water is 20 times of air heat-conduction value, thus realize from low-temperature receiver → heat superconducting fan → The high speed heat exchanging process of the interior space.
The beneficial effects of the utility model are:
The function of the utility model heat superconducting fan is to be got rid of into straight to the interior space with repeatability spray regime rapidly by low-temperature receiver Connect change space temperature;Its heat exchange area is that the fan blade area of heat superconducting fan is multiplied by rotating speed, when using 50Hz AC synchronous electricity During machine, the heat exchange area that in the unit interval, (per second) heat superconducting fan provides is equivalent to (the evaporation of the prior art of equal volume Device, condenser) 10-20 times of heat exchange area.
The utility model heat superconducting fan obtains in terms of capacity of heat transmission, heat exchange area, rate of heat exchange these three Substantial leap, can increase substantially air conditioner heat exchange capacity.Its hot swapping will make Air Conditioning Industry face since the dawn of human civilization Maximum change, fundamentally changes Air Conditioning Industry present situation, makes air-conditioning products realize the small-sized 1/5-1/10 turning to existing product, Not only save raw material, improve operating efficiency, moreover it is possible to reducing and run noise, and produce and use cost, it is not only Technological innovation, but the revolution of Air Conditioning Industry.
Accompanying drawing explanation
Fig. 1 is the front view of the utility model heat superconducting fan;
Fig. 2 is the left side view of Fig. 1;
Fig. 3 is the use schematic diagram that low-temperature receiver made by the utility model heat superconducting fan at semiconductor cooling device.
In figure: 1. external source pipeline 2. low-temperature receiver connecting pipeline 3. thermal conducting agent 4. conducting strip 5. flabellum 6. fans wall 7. Motor 8. damping sheet 9. seals bearing 10. fan body 11. semiconductor chilling plate.
Detailed description of the invention
With embodiment, the utility model content is further described below in conjunction with the accompanying drawings, but is not to the utility model Restriction.
With reference to Fig. 1,2, a kind of heat superconducting fan increasing substantially air conditioner heat exchange capacity, the evaporimeter of air-conditioning, condenser Heat exchange fanned by heat superconducting, this heat superconducting fan includes being provided with the fan body 10 of hollow shaft, and fan body 10 is internal is provided with low-temperature receiver Connecting pipeline 2, damping sheet 8, thermal conducting agent 3 and conducting strip 4;Low-temperature receiver connecting pipeline 2 passes through the damping sheet in fan body 10, then leads to Crossing sealing bearing 9 to couple with fan body 10, external source pipeline 1, conducting strip 4 is connected with fan wall 6, and fan body 10 is outside is provided with flabellum 5, Heat exchange between low-temperature receiver connecting pipeline 2 with conducting strip 4 is coupled by thermal conducting agent 3 and realizes.
Described fan body 10 is connected with motor 7.
Described thermal conducting agent 3 is the mixture of liquid and graphite powder.Liquid selects machine oil that mobility is high, lubricating oil, water etc., stone Ink powder is the 1000 above fine powders of mesh, and in mixture, graphite powder content is 5%-50%, and the matching principle of mixture is not affect it Graphite powder is added under based on mobility.
Described low-temperature receiver connecting pipeline 2, conducting strip 4, fan wall 6 and outer flabellum 5 are high-termal conductivity material or metal material.
The utility model heat superconducting is fanned in the occupation mode making low-temperature receiver with semiconductor cooling device:
Low-temperature receiver connecting pipeline in heat superconducting fan is disconnected as shown in Figure 3, forms the import that thermal conducting agent couples with external source And outlet.During fabrication, the angle design of conducting strip is, the direction of the thermal conducting agent flowing making to be stirred when rotating and exporter To identical.Thermal conducting agent is coupled by inlet and outlet with external source (i.e. semiconductor chilling plate) and circulates under conducting strip drives Flowing i.e. completes the heat exchange of heat superconducting fan and external source.
Semiconductor chilling plate obtains low-temperature receiver by heat exchange water cold head and thermal source is supplied respectively to indoor, outdoor heat superconducting Fan.The positive and negative electrode reversal connection of semiconductor chilling plate only can need to be realized by indoor, outdoor refrigeration, the conversion heated with switch.

Claims (4)

1. the heat superconducting fan increasing substantially air conditioner heat exchange capacity, is characterized in that: the evaporimeter of air-conditioning, the heat of condenser Exchange fanned by heat superconducting, this heat superconducting fan include being provided with the fan body of hollow shaft, be provided with inside fan body low-temperature receiver connecting pipeline, Damping sheet, thermal conducting agent and conducting strip;Low-temperature receiver connecting pipeline passes through the damping sheet in fan body, then by sealing bearing and fan body And external source pipeline couples, conducting strip is connected with fan wall, is provided with flabellum, between low-temperature receiver connecting pipeline and conducting strip outside fan body Heat exchange coupled by thermal conducting agent and realize.
Heat superconducting the most according to claim 1 is fanned, and it is characterized in that: described fan body is connected with motor.
Heat superconducting the most according to claim 1 is fanned, and it is characterized in that: described thermal conducting agent is the mixture of liquid and graphite powder, Graphite powder is the 1000 above fine powders of mesh, and in mixture, graphite powder content is 5%-50%, and matching principle is not affecting mixture Graphite powder is added under based on mobility.
Heat superconducting the most according to claim 3 is fanned, and it is characterized in that: described liquid be machine oil that mobility is high, lubricating oil and Water.
CN201620161740.8U 2016-03-03 2016-03-03 Increase substantially hot exchange capacity's of air conditioner superconductive heat fan Withdrawn - After Issue CN205403009U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620161740.8U CN205403009U (en) 2016-03-03 2016-03-03 Increase substantially hot exchange capacity's of air conditioner superconductive heat fan

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620161740.8U CN205403009U (en) 2016-03-03 2016-03-03 Increase substantially hot exchange capacity's of air conditioner superconductive heat fan

Publications (1)

Publication Number Publication Date
CN205403009U true CN205403009U (en) 2016-07-27

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CN201620161740.8U Withdrawn - After Issue CN205403009U (en) 2016-03-03 2016-03-03 Increase substantially hot exchange capacity's of air conditioner superconductive heat fan

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105588246A (en) * 2016-03-03 2016-05-18 郭振 Superconducting heat fan for substantially improving heat exchange ability of air conditioner

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105588246A (en) * 2016-03-03 2016-05-18 郭振 Superconducting heat fan for substantially improving heat exchange ability of air conditioner
CN105588246B (en) * 2016-03-03 2018-05-18 郭振 A kind of heat superconducting fan for increasing substantially air-conditioning heat-exchange capacity

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AV01 Patent right actively abandoned

Granted publication date: 20160727

Effective date of abandoning: 20180518

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