CN201589462U - Whole-year air source heat pump three-function unit - Google Patents

Whole-year air source heat pump three-function unit Download PDF

Info

Publication number
CN201589462U
CN201589462U CN2010201057589U CN201020105758U CN201589462U CN 201589462 U CN201589462 U CN 201589462U CN 2010201057589 U CN2010201057589 U CN 2010201057589U CN 201020105758 U CN201020105758 U CN 201020105758U CN 201589462 U CN201589462 U CN 201589462U
Authority
CN
China
Prior art keywords
heat exchanger
valve
heat pump
compressor
air source
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2010201057589U
Other languages
Chinese (zh)
Inventor
王凯旋
梁刚
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Zhuhai Boka Cool Source Equipment Co Ltd
Original Assignee
Zhuhai Boka Cool Source Equipment Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Zhuhai Boka Cool Source Equipment Co Ltd filed Critical Zhuhai Boka Cool Source Equipment Co Ltd
Priority to CN2010201057589U priority Critical patent/CN201589462U/en
Application granted granted Critical
Publication of CN201589462U publication Critical patent/CN201589462U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Heat-Pump Type And Storage Water Heaters (AREA)

Abstract

The utility model discloses a whole-year air source heat pump three-function unit capable of satisfying the dynamic requirements of buildings for the cooling and heating of an air conditioning in different seasons, and meeting the water heating dynamic requirements in different time periods of a year. The unit comprises a compressor (15), a fin heat exchanger (2), a dry type evaporator (3), an overheat cooling medium to water heat exchanger (11) and an expansion valve (9 ), wherein one end of the overheat cooling medium to water heat exchanger (11) is communicated with the exit end of the compressor (15), while the other end thereof is divided into two paths; one path is connected to a liquid storage device (4) at the front end of the expansion valve (9), and a first solenoid valve (13) is arranged thereon; and the other path is connected with a four-way valve (10), and a second solenoid valve (12) is arranged thereon. The on/off of the first solenoid valve (13) and the second solenoid valve (12) and the direction change of the four-way valve (10) can be controlled to realize a circulation mode capable of adapting to different seasons.

Description

Entire-year air source heat pump three-way set group
Technical field
The utility model relates to a kind of entire-year air source heat pump three-way set group.
Background technology
The operation principle of the air-source heat pump hot water that uses on the existing market is: air is by the unit evaporator fin under the effect of axial flow blower, its heat is absorbed by the low temperature liquid refrigerant that flows in the evaporimeter, refrigerant evaporation and be the low area overheat gaseous state simultaneously by liquid phase-change, pass through compressor work, this state refrigerant is compressed into the high pressure superheater gaseous state, in the unit water cooled condenser, the gaseous coolant of this high pressure superheater is condensed into high pressure supercooled liquid refrigerant, water or other medium that release heat heating and refrigerant carry out heat exchange.Thisly low-temperature heat quantity in the air is promoted mode for heat of high temperature by the refrigeration thermodynamic cycle be widely used in the hotel today and produce health hot water or the required low-temperature water heating of using of others.But the shortcoming of this air-source heat pump hot water is: the cold of unit air when producing hot water does not utilize, and this is for the place that needs hot water and air-conditioning simultaneously, and this cold waste causes unit efficiency not good.
And the another kind of recovery section heat on the market is used to produce the air conditioner refrigerating unit of low-temperature water heating---waste heat recovery air-conditioning unit, its operation principle is: add a water cooled condenser (overheated refrigerant is to water heat exchanger) on conventional air-conditioning refrigeration unit basis again, the partial condensation heat that this condenser reclaims refrigeration system adds hot water or other medium.The air conditioner refrigerating unit of this recuperation of heat usually uses in the hotel or other needs air conditioner refrigerating also to need the place of hot water simultaneously, can obtain free hot water season in the summer air-conditioning refrigeration, and this production hot water can reduce by hotel's hot water operating cost of 40%.But its shortcoming is: only could produce hot water when the air conditioner refrigerating unit moves, when the building air-conditioning underload, or when hot water uses peak period and air-conditioning asynchronism(-nization) to go on foot, the hot water amount who reclaims is not enough sometimes, in order to guarantee that the guest uses hot water, need to start other heater, supplementary heating, therefore the air conditioner refrigerating unit of this heat production water is a kind of recuperation of heat air-conditioning unit of passive type.
The utility model content
Technical problem to be solved in the utility model is to overcome the deficiencies in the prior art, a kind of dynamic need that can satisfy the building Various Seasonal to air conditioner refrigerating, heat supply heating is provided, satisfies the entire-year air source heat pump three-way set group of the hot water dynamic need of annual different periods simultaneously.
The technical scheme that the utility model adopted is: the circulatory system of the present utility model comprises compressor, produce the finned heat exchanger of heat exchange with outside air, refrigerant evaporation and air conditioning water carry out the dry evaporator of heat exchange and are connected in expansion valve between described finned heat exchanger and the dry evaporator, described entire-year air source heat pump three-way set group comprises that also an overheated refrigerant is to water heat exchanger, described overheated refrigerant is communicated with the port of export of compressor to an end of water heat exchanger, the other end is divided into two-way, one the road is connected to a liquid reservoir and its pipeline is provided with first magnetic valve, described liquid reservoir is arranged on described expansion valve inlet front end, and described liquid reservoir respectively with finned heat exchanger, be provided with the check valve that unidirectional conducting flows to liquid reservoir between the dry evaporator; Another road is connected with a cross valve and its pipeline is provided with second magnetic valve, and other three tunnel of described cross valve is communicated to suction end, finned heat exchanger and the dry evaporator of compressor respectively.
Between described liquid reservoir and expansion valve, be provided with device for drying and filtering.
The two is connected with finned heat exchanger, dry evaporator respectively in the outlet of described expansion valve, and is provided with the check valve that points to the two.
Inlet front end at described compressor is equipped with vapour liquid separator, and the inlet of described vapour liquid separator is communicated with described cross valve.
Described finned heat exchanger is provided with axial flow blower.
Entire-year air source heat pump three-way set group described in the utility model is as follows at the operation method of different periods:
A: in air-conditioning season in summer, utilize the heat of building to produce hot water in the time of the unit refrigeration, can carry out the part heat recovery according to hot water amount's demand simultaneously and net quantity of heat reclaims;
When carrying out the part heat recovery, second magnetic valve is opened, first closed electromagnetic valve, and the cross valve commutation makes overheated refrigerant to conducting between water heat exchanger and the finned heat exchanger, conducting between compressor and the dry evaporator;
When carrying out the net quantity of heat recovery, second closed electromagnetic valve, first magnetic valve is opened, and the cross valve commutation makes conducting between compressor and the dry evaporator;
B: at transition season, demand according to the building refrigeration duty when unit is produced hot water provides air-conditioning cold flow, when building does not have chilling requirement demand hot water, unit automatically switches to and singly heats aqueous mode, first magnetic valve is opened, second closed electromagnetic valve, the cross valve commutation makes conducting between compressor and the finned heat exchanger;
C: in the winter time, unit is produced hot water in the time of space heating heating, first closed electromagnetic valve, and second magnetic valve is opened, and regulates cross valve and makes conducting between compressor and the finned heat exchanger, and dry evaporator and overheated refrigerant are to conducting between the water heat exchanger.
The beneficial effects of the utility model are: the entire-year utility model of air source heat pump three-way set group has overcome the deficiencies in the prior art and shortcoming, at hot water and air-conditioning all is to need place such as hotel, the all maximum utilizationization of the cold of the generation of unit, heat, realized mating mutually in actual use, the concrete difference of comparing with waste heat recovery air conditioner refrigerating unit with the air-source heat pump hot water of above-mentioned routine has:
1, in summer air-conditioning season, utilize the heat of building to produce 50 ℃ of-60 ℃ of hot water in the time of the unit refrigeration as low-temperature heat source, cold that unit produces and heat all obtain utilizing, its comprehensive efficiency is the highest, can carry out portion of hot recovery and net quantity of heat recovery according to hot water amount's demand simultaneously, this function is that conventional air-source heat pump hot water is not available;
2, the demand according to the building refrigeration duty provides air-conditioning cold flow in 50 ℃ of-60 ℃ of hot water of transition season (building air-conditioning low load stage) unit production, when building does not have chilling requirement, during demand hot water, unit automatically switches to air source heat pump production and heats aqueous mode, need not other auxiliary firing equipment, this function is that conventional air-source heat pump hot water and waste heat recovery air conditioner refrigerating unit do not possess;
3, in the time of space heating heating, produce 50 ℃ of-60 ℃ of hot water in the winter time, and regulate proportionate relationship between them automatically according to building heat load and hot water consumption, satisfy the demand of space heating heating and hot water, this function is that conventional air-source heat pump hot water and waste heat recovery air conditioner refrigerating unit do not possess.
Description of drawings
Fig. 1 is a circulatory system structure chart of the present utility model, wherein
1, axial flow blower; 2, finned heat exchanger; 3, dry evaporator; 4, liquid reservoir; 5, check valve; 6, give liquid electromagnetic valve; 7, device for drying and filtering; 8, ball valve; 9, expansion valve; 10, cross valve; 11, overheated refrigerant is to water heat exchanger; 12, second magnetic valve; 13, first magnetic valve; 14, vapour liquid separator; 15, compressor;
Fig. 2 is the circulation schematic diagram of the utility model embodiment one;
Fig. 3 is the circulation schematic diagram of the utility model embodiment two;
Fig. 4 is the circulation schematic diagram of the utility model embodiment three;
Fig. 5 is the circulation schematic diagram of the utility model embodiment four.
The specific embodiment
Embodiment one:
Shown in the circulation process figure of the system construction drawing of Fig. 1 and Fig. 2, the utility model comprise compressor 15, and outside air produce heat exchange finned heat exchanger 2, the refrigerant heat exchange medium is carried out the dry evaporator 3 of heat exchange, overheated refrigerant to water heat exchanger 11 and be connected in expansion valve 9 between described finned heat exchanger 2 and the dry evaporator 3, the two is connected with finned heat exchanger 2, dry evaporator 3 respectively in the outlet of described expansion valve 9, and is provided with the check valve that points to the two.Described overheated refrigerant is water cooled condenser to water heat exchanger 11, its end is communicated with the port of export of compressor 15, the other end is divided into two-way, one the road is connected to the liquid reservoir 4 of expansion valve 9 front ends and it is provided with first magnetic valve 13, another road is connected with a cross valve 10 and it is provided with second magnetic valve 12, other three tunnel of described cross valve 10 is communicated to the arrival end of compressor 15 respectively, finned heat exchanger 2 and dry evaporator 3, inlet front end at compressor 15 is equipped with vapour liquid separator 14, and the inlet of described vapour liquid separator 14 is communicated with described cross valve 10.Be provided with device for drying and filtering 7 between liquid reservoir 4 and expansion valve 9, described liquid reservoir 4 is provided with the check valve that conducting flows to liquid reservoir 4 respectively and between the finned heat exchanger 2, dry evaporator 3.
Present embodiment is the refrigeration that is applied in air-conditioning season in summer, the waste heat recovery pattern, second magnetic valve 12 is opened, first magnetic valve 13 cuts out, cross valve 10 commutations, make overheated refrigerant to conducting between water heat exchanger 11 and the finned heat exchanger 2, conducting between compressor 15 and the dry evaporator 3, when the liquid coolant in the system circuit passes through dry evaporator 3, the heat (being cooled to 7 ℃ of outlets such as 12 ℃ of the inlet temperatures that makes water) that absorbs air-conditioning unit water becomes gaseous coolant, enter compressor 15 actings, the high pressure superheater gaseous coolant of output enters overheated refrigerant and makes hot water to carrying out heat exchange (such as 55 ℃ of 50 ℃ of outlet temperatures of inlet water temperature) with water in the water heat exchanger 11, remaining heat is dispersed in the outside air by finned heat exchanger 2, enters dry evaporator 3 and evaporate the heat absorption circulation after the supercooled liquid refrigerant of finned heat exchanger 2 coolings reduces pressure through expansion valve 9.
Embodiment two:
As Fig. 1 and Fig. 3, the loop structure of present embodiment is identical with embodiment one, difference is, present embodiment is refrigeration, full heat recovery mode (Fig. 3), this moment, second magnetic valve 12 cut out, first magnetic valve 13 is opened, cross valve 10 commutations make conducting between compressor 15 and the dry evaporator 3, finned heat exchanger 2 does not participate in circulation, refrigerant all obtains discharging in to water heat exchanger 11 at overheated refrigerant at the heat of dry evaporator 3 systemic air-conditioning unit chilled waters, is used for making the higher hot water of temperature.
Embodiment three:
See Fig. 4, present embodiment is to heat aqueous mode separately at transition season (not needing under the environment of air-conditioning and heating), this moment first, magnetic valve 13 was opened, second magnetic valve 12 cuts out, 10 commutations of joint cross valve make conducting between compressor 15 and the finned heat exchanger 2, dry evaporator 3 does not participate in circulation, the high pressure superheater refrigerant that comes out from compressor 15 enters overheated refrigerant to release heat in the water heat exchanger 11, under the effect of check valve, pass through liquid reservoir 4 successively, ball valve 8, device for drying and filtering 7, give liquid electromagnetic valve 6, by entering finned heat exchanger 2 after expansion valve 9 pressure releases, enter compressor 15 behind the vapour liquid separator 14 of flowing through behind the heat of absorption outside air and form these pattern thermodynamic cycle loops.
Embodiment four:
See Fig. 5, present embodiment is the heating in the winter time the time, heat aqueous mode, this moment, first magnetic valve 13 cut out, second magnetic valve 12 is opened, cross valve 10 commutations make conducting between compressor 15 and the finned heat exchanger 2, dry evaporator 3 and overheated refrigerant are to conducting between the water heat exchanger 11, unit absorbs the heat of outside air by finned heat exchanger 2, wherein a part of heat makes 50 ℃-60 ℃ hot water to water heat exchanger 11 by overheated refrigerant, part heat passes through dry evaporator 3 to space heating heating, and regulates proportionate relationship between them automatically according to building heat load and hot water consumption.
Four kinds of different modes by the foregoing description as can be seen, an entire-year air source heat pump three-way set group can satisfy the dynamic need of building (as the hotel) Various Seasonal to air conditioner refrigerating, heat supply heating, satisfy the hot water dynamic need of annual different periods simultaneously, compare existing air-source heat pump hot water and waste heat recovery air conditioner refrigerating unit has the following advantages:
The air conditioner refrigerating of I, building, heat supply heating, annual hot water are realized dynamic adjustments, and operating cost is minimum;
II, entire-year air source heat pump three-way set group realize the combination function of air-source heat pump hot water and two kinds of units of waste heat recovery air conditioner refrigerating unit, therefore the initial cost of this unit is little, installing space is little, engineering cost is low, intelligent degree height, manage convenient;
III, unit use in the hotel, hospital, school, bath center, replace the oil and gas boiler, energy-saving and emission-reduction, and operating cost is 20% of an oil and gas boiler only, is 50% of air source water heater and waste heat recovery air conditioner refrigerating unit operating cost.

Claims (5)

1. entire-year air source heat pump three-way set group, comprise compressor (15), produce the finned heat exchanger (2) of heat exchange with outside air, refrigerant evaporation and air conditioning water carry out the dry evaporator (3) of heat exchange and be connected in described finned heat exchanger (2) and dry evaporator (3) between expansion valve (9), it is characterized in that: described entire-year air source heat pump three-way set group comprises that also an overheated refrigerant is to water heat exchanger (11), described overheated refrigerant is communicated with the port of export of compressor (15) to an end of water heat exchanger (11), the other end is divided into two-way, one the road is connected to a liquid reservoir (4) and its pipeline is provided with first magnetic valve (13), described liquid reservoir (4) is arranged on described expansion valve (9) inlet front end, and described liquid reservoir (4) respectively with finned heat exchanger (2), dry evaporator is provided with the check valve that unidirectional conducting flows to liquid reservoir (4) between (3); Another road is connected with a cross valve (10) and its pipeline is provided with second magnetic valve (12), and other three tunnel of described cross valve (10) is communicated to suction end, finned heat exchanger (2) and the dry evaporator (3) of compressor (15) respectively.
2. entire-year air source heat pump three-way set group according to claim 1 is characterized in that: be provided with device for drying and filtering (7) between described liquid reservoir (4) and expansion valve (9).
3. entire-year air source heat pump three-way set group according to claim 1 is characterized in that: the two is connected with finned heat exchanger (2), dry evaporator (3) respectively in the outlet of described expansion valve (9), and is provided with the check valve that points to the two.
4. entire-year air source heat pump three-way set group according to claim 1 is characterized in that: the suction end at described compressor (15) is equipped with vapour liquid separator (14), and the inlet of described vapour liquid separator (14) is communicated with described cross valve (10).
5. entire-year air source heat pump three-way set group according to claim 1, it is characterized in that: described finned heat exchanger (2) is provided with axial flow blower (1).
CN2010201057589U 2010-01-28 2010-01-28 Whole-year air source heat pump three-function unit Expired - Fee Related CN201589462U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010201057589U CN201589462U (en) 2010-01-28 2010-01-28 Whole-year air source heat pump three-function unit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010201057589U CN201589462U (en) 2010-01-28 2010-01-28 Whole-year air source heat pump three-function unit

Publications (1)

Publication Number Publication Date
CN201589462U true CN201589462U (en) 2010-09-22

Family

ID=42749246

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010201057589U Expired - Fee Related CN201589462U (en) 2010-01-28 2010-01-28 Whole-year air source heat pump three-function unit

Country Status (1)

Country Link
CN (1) CN201589462U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101799223B (en) * 2010-01-28 2013-01-23 珠海博佳冷源设备有限公司 Entire-year three-use air source heat pump unit and method for operating same
CN107655234A (en) * 2017-09-19 2018-02-02 山东凯丰节能科技有限公司 A kind of air-conditioning system pipeline

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101799223B (en) * 2010-01-28 2013-01-23 珠海博佳冷源设备有限公司 Entire-year three-use air source heat pump unit and method for operating same
CN107655234A (en) * 2017-09-19 2018-02-02 山东凯丰节能科技有限公司 A kind of air-conditioning system pipeline

Similar Documents

Publication Publication Date Title
CN101464058B (en) Large energy accumulation type air source heat pump hot water units
CN103940145A (en) Multifunctional combined supply type integrated air conditioner unit for data rooms
CN203349573U (en) Combined heat pump and solar hot water heating and ventilating system
CN200996757Y (en) Double-source and operating mode hot-pump energy-saving system
CN101216225A (en) Double temperature cold water/cold air unit
CN203586629U (en) Air source heat pump air conditioning unit with multiple switchable heat exchangers
CN105276861A (en) Compensation type double-source heat pump cold and hot air air-conditioner unit
CN113446756A (en) Four-pipe air source heat pump unit with variable-speed compressor
CN109974326A (en) It is a kind of to evaporate cold solar energy and air heat source combined heat-pump recuperation of heat unit
CN201025417Y (en) An air-conditioning thermal pump device applicable to operation under low-temperature environment
CN103836792B (en) Heat pump and hot water heating combined system
CN105258389A (en) Compensation type dual-source heat pump cold and hot water unit
CN109357426B (en) Combined air conditioning system for machine room and control method thereof
CN109340960B (en) Combined air conditioning system of machine room and control method thereof
CN103148553A (en) Ice storage type water heating cooling and heating central air conditioner
CN111156726B (en) Air source heat pump system based on soil cross-season heat accumulation defrosting and solar intermittent utilization and application method thereof
CN103017410B (en) A kind of heating-refrigerating heat-pipe heat-pump type combined cycle system
CN205783497U (en) A kind of water energy storage system
CN101799223B (en) Entire-year three-use air source heat pump unit and method for operating same
CN101382354A (en) Double- effective day/night high temperature water-water heat pump hot water unit
CN202254478U (en) Double-source heat pump multifunctional machine
CN203848548U (en) Multipurpose air source heat pump unit
CN201589462U (en) Whole-year air source heat pump three-function unit
CN203595316U (en) Screw rod type total heat recovery air-cooled heat pump air conditioning unit
CN202660808U (en) Novel heat pipe and heat pump combined refrigerating device

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100922

Termination date: 20140128