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CN201237399Y - Three coupling cascade air source heat pump air conditioner - Google Patents

Three coupling cascade air source heat pump air conditioner Download PDF

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Publication number
CN201237399Y
CN201237399Y CNU2008200772045U CN200820077204U CN201237399Y CN 201237399 Y CN201237399 Y CN 201237399Y CN U2008200772045 U CNU2008200772045 U CN U2008200772045U CN 200820077204 U CN200820077204 U CN 200820077204U CN 201237399 Y CN201237399 Y CN 201237399Y
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heat pump
coupling
air
condenser
stage
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Expired - Fee Related
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CNU2008200772045U
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Chinese (zh)
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王全龄
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Individual
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Priority to CNU2008200772045U priority Critical patent/CN201237399Y/en
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Abstract

The utility model relates to a three-coupling cascade air source heat pump air conditioner comprising a pre-stage low-temperature heat pump system, a post-stage high-temperature heat pump system and an air-conditioning load system, a condensing evaporator of the pre-stage and the post-stage heat pump systems is a three-coupling condensing evaporator which is filled with a liquid heat conduction medium, a primary of the three-coupling condensing evaporator is connected with the pre-stage low-temperature heat pump system, a third is connected with the post-stage high-temperature heat pump system, and a secondary thereof, the secondary of an output condenser of an air conditioning system and the load system are connected, thereby constituting a defrosting loop, a single-stage heating loop and a summer refrigeration loop. The technical proposal further comprises a feedback auxiliary heating system which is arranged in the air conditioning system. The three-coupling cascade air source heat pump air conditioner can realize the cascade operation of the two stages of the heat pumps, thereby meeting the high efficient heating of the air conditioning system at the ultra-low temperature environment of being lower than minus 20 DEG C, being capable of carrying out the operation of the single-stage heat pump for high efficiency heating at the low temperature environment of being higher than minus 20 DEG C and completing the defrosting and the conversion to the summer refrigeration work. The three-coupling cascade air source heat pump air conditioner can improve the working efficiency of the air conditioning system through the configuration of the feedback auxiliary heating system.

Description

Three coupling cascade air source heat pump air conditioner
Technical field
The utility model relates to air source heat pump air-conditioner, is specifically related to a kind of three coupling cascade air source heat pump air conditioner.
Background technology
For air source heat pump air-conditioner is effectively moved at ultra-low temperature surroundings below-20 ℃, prior art adopts the overlapping air source heat pump system, promptly is made of the two levels of thermal pumping system of overlapping through condenser/evaporator prime hot pump in low temp and back level high temperature heat pump.The cascade type heat pump system of prior art, though be used in heating operation under the ultra-low temperature surroundings, but it can't realize defrost and refrigerating operaton conversion, and under-20 ℃ to 0 ℃ outdoor low temperature environment, two-stage heat pump superposition type operational energy efficiency is more outstanding than low problem, therefore is difficult to become practical air source heat pump air-conditioner product promotion and uses.
Summary of the invention
The purpose of this utility model is at the problems referred to above, a kind of can be under wide temperature environment efficient heating operation is provided, promptly constitute the superposition type operation at the ultra-low temperature surroundings below-20 ℃, be converted to the single stage type operation at the low temperature environment more than-20 ℃, and can realize the three coupling cascade air source heat pump air conditioner of defrost and single-stage refrigerating operaton conversion in summer.
The technical scheme that realizes above-mentioned purpose is: a kind of three coupling cascade air source heat pump air conditioner, include by preceding stage compressor, four-way change-over valve, condenser/evaporator, the prime expansion valve, the prime hot pump in low temp system that outdoor heat exchanger is formed and by the back stage compressor, condenser, back level expansion valve, the back level high temperature heat pump system that condenser/evaporator is formed reaches by water circulating pump, the air-conditioning load system that fan coil is formed, its described condenser/evaporator is internal-filling liquid body heat-conducting medium formula three coupling condenser/evaporators, between the four-way change-over valve and expansion valve that once are connected in the prime hot pump in low temp system of its three couplings condenser/evaporator, be connected in for three times between the compressor and expansion valve of back level high temperature heat pump system, secondary is connected in the secondary and the air-conditioning load system loop of the condenser of configuration motor-driven valve.
The technical solution of the utility model also comprises: matching with three coupled heat exchangers is equipped with the heat-conducting medium forced circulation loop of assembling circulating pump; Its air-conditioning system disposes the feedback concurrent heating system of being made up of the feedback heat exchanger that is arranged on prime compressor air suction end, the feedback heat exchanger that is arranged at air-conditioning load system loop and circulating pump, wherein, be arranged at the backfeed loop of once forming internal-filling liquid body heat-conducting medium of the heat exchanger of prime compressor air suction end with the secondary of the feedback heat exchanger that is arranged at air-conditioning load system loop and circulating pump; The internal-filling liquid body heat-conducting medium of the internal-filling liquid body heat-conducting medium of its described three coupling condenser/evaporators and feedback concurrent heating system backfeed loop is conduction oil or ethylene glycol antifreeze.
Fill in the utility model utilization heat-conducting medium three coupling condenser/evaporators once with the overlapping of finishing hot pump in low temp and high temperature heat pump for three times, when the ultra-low temperature surroundings below-20 ℃ is used for heating, hot pump in low temp system and high temperature heat pump system constitute two-stage heat pump superposition type operation working method, finish the efficient heat supply heating of ultra-low temperature surroundings below-20 ℃.When environment temperature is in more than-20 ℃ low temperature, close back level high temperature heat pump system, constitute single-stage operation of heat pump mode by three coupling condenser/evaporator secondaries with the air-conditioning load circuit by the prime hot pump in low temp system, in order to the Energy Efficiency Ratio of raising under low temperature environment.When the needs defrost, the four-way change-over valve of prime hot pump in low temp system turns to, utilize load circuit through three the coupling condenser/evaporators secondary for the prime heat pump provides thermal source, be used for the defrost of outdoor heat exchanger.The refrigerating operaton in summer of its air-conditioning system is identical with the defrost operation, and the refrigerating circuit that promptly utilizes turning to of four-way change-over valve to cooperate three coupling condenser/evaporator secondaries and air-conditioning load system to form constitutes the refrigerating operaton in summer of single heat pump.
Three coupling condenser/evaporators of the present utility model constitute heat-conducting medium forced circulation loop by the assembling circulating pump, help improving the operating efficiency of condenser/evaporator.
The utility model feeds back to the compressor air suction end of prime hot pump in low temp system by the feedback concurrent heating system of configuration with the part heat of air-conditioning load system, can improve the Energy Efficiency Ratio of heat pump winter heating.
Description of drawings
Accompanying drawing is this three coupling cascade air source heat pump air conditioner structural representation.
The specific embodiment
In conjunction with the accompanying drawings the specific embodiment of the present utility model is described.
As accompanying drawing, this three coupling cascade air source heat pump air conditioner includes by preceding stage compressor 1, four-way change-over valve 2, condenser/evaporator 3, prime expansion valve 4, the prime hot pump in low temp system that outdoor heat exchanger 5 is formed and by back stage compressor 6, condenser 7, back level expansion valve 8, the back level high temperature heat pump system that condenser/evaporator 3 is formed reaches by water circulating pump 9, the air-conditioning load system that fan coil 10 is formed, its described condenser/evaporator 3 is internal-filling liquid body heat-conducting medium formula three coupling condenser/evaporators, three coupling condenser/evaporators once be connected in the prime hot pump in low temp system, be connected in back level high temperature heat pump system for three times, the secondary of secondary and condenser 7 and load system is connected and the motor-driven valve 11 by disposing, 12 form the defrost loop, single-stage heating and refrigerating circuit in summer.The heat-conducting medium forced circulation loop that is made of circulating pump 13 with three coupling condenser/evaporators 3 phase configuration is to improve the heat exchange efficiency of three coupling condenser/evaporators.Its air-conditioning system disposes the feedback concurrent heating system of being made up of feedback heat exchanger 14, the feedback heat exchanger 15 that is arranged at air-conditioning load system loop and the circulating pump 16 of stage compressor 1 suction end before being arranged on, wherein, feedback heat exchanger 14 once assists hot loop with the secondary of feedback heat exchanger 15 and the feedback of circulating pump 16 composition internal-filling liquid body heat-conducting mediums.Fill in its described three coupling condenser/evaporators 3 heat-conducting medium and described feedback concurrent heating system loop in to fill heat-conducting medium can be conduction oil or for ethylene glycol antifreeze.

Claims (5)

1, a kind of three coupling cascade air source heat pump air conditioner, include by preceding stage compressor (1), four-way change-over valve (2), condenser/evaporator (3), prime expansion valve (4), the prime hot pump in low temp system that outdoor heat exchanger (5) is formed and by back stage compressor (6), condenser (7), back level expansion valve (8), the back level high temperature heat pump system that condenser/evaporator (3) is formed reaches by water circulating pump (9), the air-conditioning load system that fan coil (10) is formed, it is characterized in that: described condenser/evaporator (3) is internal-filling liquid body heat-conducting medium formula three coupling condenser/evaporators, between the four-way change-over valve that once is connected in the prime hot pump in low temp system (2) and expansion valve (4) of its three couplings condenser/evaporator, be connected in for three times between the compressor (6) and expansion valve (8) of back level high temperature heat pump system, secondary is connected in configuration motor-driven valve (11), the secondary of condenser (12) (7) and air-conditioning load system loop.
2, three coupling cascade air source heat pump air conditioner according to claim 1 is characterized in that: matching with three coupling condenser/evaporators (3) is equipped with the heat-conducting medium forced circulation loop of assembling circulating pump (13).
3, three coupling cascade air source heat pump air conditioner according to claim 1, it is characterized in that: air-conditioning system disposes the feedback concurrent heating system of being made up of the feedback heat exchanger (14) that is arranged on preceding stage compressor (1) suction end, the feedback heat exchanger (15) that is arranged at air-conditioning load system loop and circulating pump (16), wherein feeds back the backfeed loop of once forming internal-filling liquid body heat-conducting medium with secondary that feeds back heat exchanger (15) and circulating pump (16) of heat exchanger (14).
4, three coupling cascade air source heat pump air conditioner according to claim 1 is characterized in that: the internal-filling liquid body heat-conducting medium of described three coupling condenser/evaporators (3) is conduction oil or ethylene glycol antifreeze.
5, three coupling cascade air source heat pump air conditioner according to claim 3 is characterized in that: the internal-filling liquid body heat-conducting medium of described backfeed loop is conduction oil or ethylene glycol antifreeze.
CNU2008200772045U 2008-05-16 2008-05-16 Three coupling cascade air source heat pump air conditioner Expired - Fee Related CN201237399Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2008200772045U CN201237399Y (en) 2008-05-16 2008-05-16 Three coupling cascade air source heat pump air conditioner

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2008200772045U CN201237399Y (en) 2008-05-16 2008-05-16 Three coupling cascade air source heat pump air conditioner

Publications (1)

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CN201237399Y true CN201237399Y (en) 2009-05-13

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101270938B (en) * 2008-05-16 2012-06-06 王全龄 Three coupling cascade air source heat pump air conditioner

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101270938B (en) * 2008-05-16 2012-06-06 王全龄 Three coupling cascade air source heat pump air conditioner

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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: 20090513

Termination date: 20120516