CN209263200U - A kind of new type of compression condensation structure - Google Patents

A kind of new type of compression condensation structure Download PDF

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Publication number
CN209263200U
CN209263200U CN201821625103.7U CN201821625103U CN209263200U CN 209263200 U CN209263200 U CN 209263200U CN 201821625103 U CN201821625103 U CN 201821625103U CN 209263200 U CN209263200 U CN 209263200U
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section
compression condensation
fluid reservoir
interface
compressor
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CN201821625103.7U
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林礼建
温承坤
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Fuzhou Pengfei Refrigeration Equipment Co Ltd
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Fuzhou Pengfei Refrigeration Equipment Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/56Heat recovery units

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Abstract

The utility model relates to a kind of air-conditioning system structures, in particular to a kind of new type of compression condensation structure, a kind of new type of compression condensation structure, including air inlet unit and exhaust fan unit, unit is entered the wind by fresh inlet end to fresh air outlet end and is arranged in sequence with fresh air section, initial effect filtering section, heat pipe table cold and heat recovery section, evaporator section, heat pipe secondary exhausting section, surface cooling section, bringing-up section, condensing units section, medium efficiency filtration section and humidifier section;Exhaust fan unit is arranged in sequence with air draft initial effect filtering section, washing spray section, heat pipe by air draft input end to wind exhausting outlet end and once recycles exhausting section, oxidation sterilizing section, active carbon fillter section, compression condensation section and exhaust blower section, the utility model will eliminate outer machine, compression condensation section is added in exhaustion section, eliminate cooling fan structure, volume reduces one third compared to original outer machine, no longer by the interference of extraneous factor, is conducive to the temperature kept constant, greatly increases Energy Efficiency Ratio.

Description

A kind of new type of compression condensation structure
Technical field
The utility model relates to a kind of air-conditioning system structure, in particular to a kind of new type of compression condensation structure.
Background technique
In recent years, air-conditioning market competition was more and more fierce, and the requirement to air-conditioning regulation performance is also higher and higher, air conditioning Main control include air quality, air themperature, air humidity and wind speed etc..
The control of air quality is compared from however effective method is to be set using outdoor fresh air to room air It changes or dilutes, that is, sucking outdoor fresh air, indoor exhaust air is discharged.For being under high humidity environment in existing aeration device Fresh air, the general moisture by condensing tube condensation fresh air achievees the purpose that fresh air dehumidification, and dehumidification by condensation can make newly The temperature of wind declines to a great extent, generally can be lower than indoor required preference temperature, to need using electric heating or other heating sides Formula enters back into interior after the fresh air after dehumidification by condensation to be heated to suitable temperature, using exhaust fan unit that indoor exhaust gas is direct Discharge is outdoor, does not carry out effective recycling and reusing to indoor exhaust gas, there are problems that high energy consumption.
Utility model content
In order to overcome the defects of the prior art described above, the technical problem to be solved by the utility model is to provide a kind of new The problem of type compression condensation structure, existing outdoor machine of air-conditioner is in high temperature or low temperature environment, has lost a large amount of Energy Efficiency Ratio.
In order to solve the above-mentioned technical problem, the technical solution adopted in the utility model are as follows: a kind of new type of compression condensation structure, Including air inlet unit and exhaust fan unit;
The air inlet unit includes along the sequentially connected fresh air section of fresh inlet end to fresh air outlet extreme direction, primarily efficient filter Section, heat pipe table cold and heat recovery section, evaporator section, maintenance section, heat pipe secondary heat-recovery section, surface cooling section, bringing-up section, condensing units Section, medium efficiency filtration section and humidifier section;
The exhaust fan unit includes along air draft input end to the sequentially connected initial effect filtering section in wind exhausting outlet end, washing spray Section, heat-recovery section of heat pipe, oxidation sterilizing section, active carbon fillter section, compression condensation section and exhaust blower section;
The compression condensation section includes compressor, fluid reservoir and compression condensation coil pipe, and the fluid reservoir is set there are two interface, The compressor is set there are two interface, and one interface of fluid reservoir connects with the compression condensation coil pipe input end and surface cooling section respectively It connects, another interface of fluid reservoir is connect with one interface of compressor, another interface of compressor and the maintenance Duan Lian It connects, the outlet end of the compression condensation coil pipe is connect with the maintenance section.
The utility model has the beneficial effects that: providing system to unit in the prior art using the work of the outer machine of unit Cryogen is cooled down by the external machine of cooling fan, and the utility model will eliminate outer machine, and compression condensation is added in exhaustion section Section, eliminates cooling fan structure, and volume reduces one third compared to original outer machine, reduces the interference of extraneous factor, have Conducive to the temperature kept constant, Energy Efficiency Ratio is greatly increased.
Detailed description of the invention
Fig. 1 show a kind of structural schematic diagram of new type of compression condensation structure;
Fig. 2 show a kind of partial enlarged view of the air inlet unit heat pipe secondary heat-recovery section of new type of compression condensation structure;
Fig. 3 show a kind of partial enlarged view of the air inlet unit evaporator section of new type of compression condensation structure;
Label declaration:
1, unit is entered the wind;11, fresh air section;
12, initial effect filtering section;121, primary filter;
13, heat pipe table cold and heat recovery section;
14, evaporator section;141, mouth is crimped in refrigerant;142, refrigerant low-voltage interface;143, device for drying and filtering;144, electric Sub- expansion valve;
15, heat pipe secondary heat-recovery section;151, check valve;152, ethylene glycol outlet end;153, ethylene glycol input end;154, Electronic ratio triple valve;155, check valve;
16, surface cooling section;161, chilled water water return outlet;162, refrigerant high pressure interface;
17, bringing-up section;
18, condensing units section;181, check valve;
19, fan section;110, medium efficiency filtration section;111, humidifier section;112, wind outlet section;113, medium effeciency filter;
2, exhaust fan unit;21, initial effect filtering section;
22, spray section is washed;221, spray pump is washed;
23, heat-recovery section of heat pipe;231, ethylene glycol solution pumps;
24, oxidation sterilizing section;25, active carbon filtration section;26, active carbon filtration section;
27, compression condensation section;271, electric expansion valve;272, compressor;273, check valve;
28, exhaust blower section;
29, exhaustion section;
3, heat pipe liquid back pipe;
4, heat pipe liquid supply pipe.
Specific embodiment
For technology contents, the objects and the effects that the utility model is described in detail, below in conjunction with embodiment and match Attached drawing is closed to be explained.
The design of the utility model most critical is: cancelling original outdoor machine of air-conditioner structure, by new type of compression condensation structure It adds in exhaust fan unit, solves the problems, such as compression refrigeration efficiency than a large amount of losses.
It please refers to shown in Fig. 1 to Fig. 3, a kind of new type of compression condensation structure, including air inlet unit and exhaust fan unit;
The air inlet unit 1 includes along fresh inlet end to fresh air outlet extreme direction sequentially connected fresh air section 11, just effect 12 sections of filtering, heat pipe table cold and heat recovery section 13, evaporator section 14, maintenance section, heat pipe secondary heat-recovery section 15, surface cooling section 16, heating Section 17, condensing units section 18, medium efficiency filtration section 110 and humidifier section 111;
The exhaust fan unit 2 includes along air draft input end to the sequentially connected initial effect filtering section 21 in wind exhausting outlet end, washing Spray section 22, heat-recovery section 23 of heat pipe, oxidation sterilizing section 24, active carbon fillter section 25, compression condensation section 27 and exhaust blower Section 28;
The compression condensation section 27 includes compressor 272, fluid reservoir and compression condensation coil pipe, there are two the fluid reservoir is set Interface, the compressor 272 are set there are two interface, one interface of fluid reservoir respectively with the compression condensation coil pipe input end and Surface cooling section 16 connects, and another interface of fluid reservoir is connect with 272 1 interface of compressor, and the compressor 272 is another to be connect Mouth is connect with the maintenance section, and the outlet end of the compression condensation coil pipe is connect with the maintenance section.
A kind of working principle of above-mentioned new type of compression condensation structure: outdoor high humidity fresh air is inhaled by above-mentioned fresh air section 11 Enter, after entering the wind the filtering of initial effect filtering section 12, into heat pipe table cold and heat recovery section 13 and heat pipe table cold and heat recovery section 13 into Then evaporator section 14 is passed through in row heat exchange, since evaporation coil input end connects condensing units coil outlets end, condensation heat is returned High-pressure refrigerant in closing quotation pipe, which is evaporated under reduced pressure when entering evaporation coil by decompressor, to absorb heat, and drops evaporative coil temperature It is low, the evaporation coil moment condensation of the contact with moisture low temperature in outdoor high humidity fresh air, to have the function that fresh air dehumidification.
As can be seen from the above description, the utility model has the beneficial effects that: utilizing the work of the outer machine of unit in the prior art Make, provides refrigerant to unit, cooled down by the external machine of cooling fan, the utility model will eliminate outer machine, in air draft Compression condensation section 27 is added in section, eliminates cooling fan structure, volume reduces one third compared to original outer machine, no longer By the interference of extraneous factor, is conducive to the temperature kept constant, greatly increases Energy Efficiency Ratio.
Further, one interface of fluid reservoir is set to the fluid reservoir top, and another interface of fluid reservoir is set to institute Fluid reservoir lower part is stated, 272 1 interface of compressor is set to the top of the compressor 272, and another interface of compressor is set In the lower part of the compressor 272, the compression condensation coil pipe input end is set to the top of the compression condensation section, the compression Condenser coil outlet end is set to the lower part of the compression condensation coil pipe.
As can be seen from the above description, being convenient for compression condensation by the inlet end and an outlet end of distribution interface and coil pipe in an orderly manner The stringing of section is more reasonable.
Further, the quantity of the compressor is two, and an interface of two compressors is connected by pipeline, two Another interface of a compressor is connected by pipeline.
As can be seen from the above description, by the way that two compressors are linked together use, convenient for transferring out more refrigerants.
Further, the junction of an interface and the compression condensation coil pipe input end is swollen equipped with electronics on the fluid reservoir Swollen valve 271, the junction of an interface and the surface cooling section is equipped with electric expansion valve 271 on the fluid reservoir.
As can be seen from the above description, by the way that electric expansion valve is arranged in junction, convenient for control refrigerant output quantity.
Further, the outlet end of the compression condensation coil pipe is equipped with check valve 273.
As can be seen from the above description, by the way that check valve is arranged in outlet end, convenient for preventing refrigerant from flowing back to compression condensation disk Pipe.
Further, the fluid reservoir is located at relative to the compression condensation coil pipe close to the one of active carbon filtration section 25 Side, the compression condensation coil pipe are located at relative to the accumulator tank close to exhaust blower section side, and the compressor 272 is located at liquid storage Between tank and compression condensation coil pipe.
As can be seen from the above description, by sequential installation fluid reservoir, compressor and compression condensation coil pipe, convenient for alleviating pressure The vibration and noise that contracting machine generates when working.
It please refers to shown in Fig. 1 to Fig. 3, the embodiments of the present invention one are as follows:
A kind of new type of compression condensation structure, including air inlet unit 1 and exhaust fan unit 2;
The air inlet unit 1 includes along fresh inlet end to fresh air outlet extreme direction sequentially connected fresh air section 11, just effect Fillter section 12, heat pipe table cold and heat recovery section 13, evaporator section 14, maintenance section, heat pipe secondary heat-recovery section 15, surface cooling section 16, heating Section 17, condensing units section 18, medium efficiency filtration section 110, humidifier section 111 and wind outlet section 112;
The fresh air section 11 is used to sucking extraneous fresh air into air inlet unit 1, described new to adjust the ratio of fresh air and return air Wind section 11 is equipped with air-valve;
The initial effect filtering section 12 is used to carry out fresh air primary filtration, and the initial effect filtering section 12 is equipped with primary filter 121, it can select and just imitate bag filter, the medium efficiency filtration section is equipped with medium effeciency filter 113;
Differential pressure control switch and differential manometer can be configured as required, changed with the resistance of monitor filter;
The surface cooling section 16 connects central air conditioner system, the adjusting for new air temperature;
The heat pipe table cold and heat recovery section 13, heat pipe secondary heat-recovery section 15, heat pipe heat-recovery section 23 are interconnected, It is recycled for heat in exhaust fan unit 2 and air inlet unit 1;
The heat pipe table cold and heat recovery section 13 is equipped with heat pipe coil pipe and refrigerant, and the heat pipe secondary heat-recovery section 15 is set There are ethylene glycol input end 153, ethylene glycol outlet end 154, second heat pipe dish pipe and secondary heat pipe straight trip pipe, the heat pipe once hot Exhausting section 23 is equipped with a heat pipe coil pipe and a heat pipe straight trip pipe;The heat pipe coil pipe, second heat pipe dish pipe, secondary heat pipe Filled with ethylene glycol solution in straight trip pipe, a heat pipe coil pipe and a heat pipe straight trip pipe, a heat pipe coil pipe is equipped with second Glycol solution pump 231, the ethylene glycol solution is exported by heat pipe liquid supply pipe 3, flows back to 4 by ethylene glycol liquid back pipe;
The top in heat pipe secondary heat-recovery section 15, the second heat pipe dish is arranged in the second heat pipe dish pipe input end Pipe outlet end is arranged in the lower part in heat pipe secondary heat-recovery section 15, the heat pipe secondary heat-recovery section 15 be equipped with straight trip pipe into The top in heat pipe secondary heat-recovery section 15 is arranged in mouth end, and the straight trip pipe outlet end on the heat pipe secondary heat-recovery section 15 connects Connect secondary heat recovery coil outlet end;The second heat pipe dish pipe outlet end is equipped with check valve 151, the heat pipe secondary recuperation of heat Top in section 15 is equipped with electronic ratio triple valve 154, and electronic 154 input end of ratio triple valve is connected primary by pipeline Heat pipe coil outlets end, electronic 154 first exit end of ratio triple valve connects second heat pipe dish pipe input end, described electronic 154 second outlet end of ratio triple valve connects secondary recuperation of heat straight trip pipe input end, and the straight trip pipe is equipped with check valve 155;
The evaporator section 14 is equipped with evaporation coil, and mouth 141 is crimped in refrigerant low-voltage interface 142 and refrigerant, described The lower part of evaporator section 14 is arranged in the input end of evaporation coil, and the top of evaporator section is arranged in the outlet end of the evaporation coil, The condensing units straight trip pipe outlet end connects evaporation coil input end, the condensing units straight trip pipe outlet by pipeline End and the junction of evaporation coil input end are equipped with device for drying and filtering 143 and electric expansion valve 144, the evaporation coil outlet end Refrigerant low-voltage interface 142 is connected by pipeline;
The surface cooling section 16 is equipped with chilled water water return outlet 161 and copper tube wears the freezing water coil of aluminium fin composition, is used for Connect central air-conditioning;
The evaporator section 14 is used for the cool-down dehumidification of fresh air, the condensing units section 18 and bringing-up section 17 for fresh air Heating;The bringing-up section 17 is equipped with electrical auxiliary heater, small in size using stainless steel structure, and land occupation is few;It was imitated in the air inlet Filter the further filtering that section 110 is used for fresh air;The humidifier section 111 is used to adjust the humidity of fresh air;
The exhaust fan unit includes along air draft input end to the sequentially connected initial effect filtering section 21 in wind exhausting outlet end, water washing spray Drench section 22, heat-recovery section of heat pipe, oxidation sterilizing section, active carbon fillter section 25, active carbon fillter section 26, compression condensation section 27 With exhaust blower section 28;
The harmful substances such as amine, the nitrogen that the air draft initial effect filtering section 21, washing spray section 22 are used to go to contain in removing exhaust gas; The oxidation sterilizing section 24, active carbon fillter section 25, active carbon fillter section 26 and exhaust blower section 28 are used for the purification of exhaust gas, compression Condensation segment 27 is used to provide refrigerant to whole device;
The compression condensation section 27 includes compressor 272, fluid reservoir and compression condensation coil pipe, there are two the fluid reservoir is set Interface, the compressor 272 are set there are two interface, one interface of fluid reservoir respectively with the compression condensation coil pipe input end and Surface cooling section connection, another interface of fluid reservoir connect with one interface of compressor, another interface of compressor with it is described Section connection is overhauled, the outlet end of the compression condensation coil pipe is connect with the maintenance section;
One interface of fluid reservoir is set to the fluid reservoir top, and another interface of fluid reservoir is set under the fluid reservoir Portion, one interface of compressor are set to the top of the compressor, and another interface of compressor is set under the compressor Portion, the compression condensation coil pipe input end are set to the top of the compression condensation section, and compression condensation coil outlets end is set to The lower part of the compression condensation coil pipe;
The quantity of the compressor is two, and an interface of two compressors is connected by pipeline, two pressures Another interface of contracting machine is connected by pipeline;
The junction of an interface and the compression condensation coil pipe input end is equipped with electric expansion valve 271 on the fluid reservoir, The junction of an interface and the surface cooling section is equipped with electric expansion valve 271 on the fluid reservoir;
The outlet end of the compression condensation coil pipe is equipped with check valve 273;
The fluid reservoir is located at relative to the compression condensation coil pipe close to the side of active carbon filtration section, and the compression is cold Solidifying coil pipe is located at relative to the accumulator tank close to exhaust blower section side, and the compressor is located at fluid reservoir and compression condensation coil pipe Between.
The variation of the temperature of fresh air is specific as follows in above-mentioned new type of compression condensation structure:
Such as summer outdoor fresh air temperature is 36 DEG C, it is cold by initial effect filtering section 12 and heat pipe table into after air inlet unit 1 After heat-recovery section 13, the temperature of fresh air is down to 26 DEG C;After 14 dehumidification by condensation of evaporator section, new air temperature is down to 12 DEG C;By After heat pipe secondary heat-recovery section 15, new air temperature rises to 17 DEG C;After bringing-up section 17 and condensing units section 18, new air temperature Rise to 21 DEG C;Indoor new air temperature is finally putting at 22~23 DEG C;
Such as indoor exhaust gas temperature is 23~25 DEG C, into after exhaust fan unit 2, is sprayed by initial effect filtering section and washing Section, the temperature of exhaust gas are down to 18~21 DEG C, and after heat-recovery section of superheater tube and oxidation sterilizing section, the temperature of exhaust gas rises to 25 ~29 DEG C, finally discharge is outdoor.
The variation of ethylene glycol temperature in above-mentioned new type of compression condensation structure is specific as follows:
The ethylene glycol temperature of heat-recovery section 21 of heat pipe outflow is flowed out at 21~23 DEG C from heat pipe secondary heat-recovery section 15 Ethylene glycol temperature at 17~21 DEG C, flow into heat pipe table cold and heat recovery section 13 ethylene glycol temperature at 17~23 DEG C, flow back to heat pipe The ethylene glycol temperature of heat-recovery section 21 is at 24~28 DEG C.
In conclusion the utility model provides a kind of new type of compression condensation structure, outer machine is eliminated, is added and presses in exhaustion section Contracting condensation segment eliminates cooling fan structure, and volume reduces one third compared to original outer machine, no longer by extraneous factor Interference, is conducive to the temperature kept constant, greatly increases Energy Efficiency Ratio.
The above description is only the embodiments of the present invention, and therefore it does not limit the scope of the patent of the utility model, all Equivalents made based on the specification and figures of the utility model are applied directly or indirectly in relevant technology neck Domain is also included in the patent protection scope of the utility model.

Claims (6)

1. a kind of new type of compression condensation structure, which is characterized in that including air inlet unit and exhaust fan unit;
The air inlet unit include along fresh inlet end to the sequentially connected fresh air section of fresh air outlet extreme direction, initial effect filtering section, Heat pipe table cold and heat recovery section, evaporator section, maintenance section, heat pipe secondary heat-recovery section, surface cooling section, bringing-up section, condensing units section, in Imitate fillter section and humidifier section;
The exhaust fan unit include along air draft input end to the sequentially connected initial effect filtering section in wind exhausting outlet end, washing spray section, Heat-recovery section of heat pipe, oxidation sterilizing section, active carbon fillter section, compression condensation section and exhaust blower section;
The compression condensation section includes compressor, fluid reservoir and compression condensation coil pipe, and the fluid reservoir sets that there are two interfaces, described Compressor is set there are two interface, and one interface of fluid reservoir is connect with the compression condensation coil pipe input end and surface cooling section respectively, Another interface of fluid reservoir is connect with one interface of compressor, and another interface of compressor is connect with the maintenance section, The outlet end of the compression condensation coil pipe is connect with the maintenance section.
2. new type of compression condensation structure according to claim 1, which is characterized in that one interface of fluid reservoir is set to described Fluid reservoir top, another interface of fluid reservoir are set to the fluid reservoir lower part, and one interface of compressor is set to the compression The top of machine, another interface of compressor are set to the lower part of the compressor, and the compression condensation coil pipe input end is set to institute The top of compression condensation section is stated, compression condensation coil outlets end is set to the lower part of the compression condensation coil pipe.
3. new type of compression condensation structure according to claim 1, which is characterized in that the quantity of the compressor is two, One interface of two compressors is connected by pipeline, and another interface of two compressors is connected by pipeline.
4. new type of compression condensation structure according to claim 1, which is characterized in that on the fluid reservoir interface with it is described The junction of compression condensation coil pipe input end is equipped with electric expansion valve, the connection of an interface and the surface cooling section on the fluid reservoir Place is equipped with electric expansion valve.
5. new type of compression condensation structure according to claim 1, which is characterized in that the outlet end of the compression condensation coil pipe Equipped with check valve.
6. new type of compression condensation structure according to claim 1, which is characterized in that the fluid reservoir is located at relative to described Close to the side of active carbon filtration section, the compression condensation coil pipe is located at relative to the fluid reservoir close to row compression condensation coil pipe Fan section side, the compressor are located between fluid reservoir and compression condensation coil pipe.
CN201821625103.7U 2018-10-08 2018-10-08 A kind of new type of compression condensation structure Active CN209263200U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821625103.7U CN209263200U (en) 2018-10-08 2018-10-08 A kind of new type of compression condensation structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821625103.7U CN209263200U (en) 2018-10-08 2018-10-08 A kind of new type of compression condensation structure

Publications (1)

Publication Number Publication Date
CN209263200U true CN209263200U (en) 2019-08-16

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Application Number Title Priority Date Filing Date
CN201821625103.7U Active CN209263200U (en) 2018-10-08 2018-10-08 A kind of new type of compression condensation structure

Country Status (1)

Country Link
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