CN204153893U - Heat-pump air conditioning unit - Google Patents

Heat-pump air conditioning unit Download PDF

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Publication number
CN204153893U
CN204153893U CN201420144279.6U CN201420144279U CN204153893U CN 204153893 U CN204153893 U CN 204153893U CN 201420144279 U CN201420144279 U CN 201420144279U CN 204153893 U CN204153893 U CN 204153893U
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indoor set
boiler
pipe
heat
water
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CN201420144279.6U
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李隆
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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]
    • Y02B30/70Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating

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  • Heat-Pump Type And Storage Water Heaters (AREA)
  • Other Air-Conditioning Systems (AREA)

Abstract

The utility model provides a kind of heat-pump air conditioning unit, comprises off-premises station, energy storage water tank, the S pipe between off-premises station and energy storage water tank; Off-premises station inside comprises high-pressure air pipe (30), low pressure gas pipe (32); The public refrigerant adapter of bus type: liquid line (31) and control bus (50).Also comprise: indoor set and the F1 between off-premises station and indoor set manage; Indoor set can connect multiple stage, and wherein indoor set 2, indoor set (3) are equipped with corresponding F2, F3 pipe.Also comprise: boiler, between off-premises station and boiler H pipe or/and cold water storage cistern, between off-premises station and cold water storage cistern C pipe.Interior case outer container samming unit; Heat exchange water pipe samming unit; Eutectic salts Storage Unit.And shower monitoring system, intelligent temperature control unit.For there being two cover indoor sets, and there is the equipment of cold water storage cistern, boiler, heat-pump air conditioning unit can be made to work in respectively by the duty changing magnetic valve: air-conditioning heating, air conditioner refrigerating, water heating, chilled water and any combination between them.

Description

Heat-pump air conditioning unit
[technical field]
The utility model relates to a kind of heat-pump air conditioning unit, is specifically related to one and can be operated in 1 respectively) air-conditioning heating+air conditioner refrigerating+water heating+chilled water, 2) air conditioner refrigerating+water heating+chilled water, 3) air-conditioning heating+water heating+chilled water, 4) air conditioner refrigerating+air-conditioning heating+water heating, 5) air conditioner refrigerating+air-conditioning heating+chilled water, 6) air conditioner refrigerating+water heating, 7) air-conditioning heating+chilled water, 8) water heating+chilled water, 9) air conditioner refrigerating+air-conditioning heating; 10) air conditioner refrigerating+chilled water, 11) air-conditioning heating+water heating, 12) chilled water, 13) water heating, 14) air conditioner refrigerating, 15) equipment of air-conditioning heating 15 kinds of duties.And water tank outer container temperature equalizing method, hot and cold water contrast bath temperature-controlled process.
[background technology]
Intensive, energy-conservation, ecological new approach to be walked in the works for national urbanization, " Zhejiang Province's regenerative resource Application in Building technical standard " exposure draft is come out of the stove, once standard formally issues enforcement, just mean that Zhejiang newly constructed house will forcibly apply at least one regenerative resource, the regenerative resource entering exposure draft comprises solar water heating system, air energy heat pump hot-water heating system, earth-source hot-pump system, solar energy photovoltaic system and sunshine inducible system." enforcement of standard, if mean that newly-built civil buildings do not perform this standard, is just difficult to by examination & approval and check of drawings link, the license that also just can not obtain construction and check and accept.
Otherwise the construction project reaching above-mentioned standard can apply for subsidy.Implement the way of economizing energy law according to our province, civil buildings with non-power generating mode utilize solar energy, shallow layer geothermal energy, air can, authorities' application project construction fund subsidy can be built to the people's government at or above the county level.Shen Fuxin reveals, just jointly the mounting design standard of an air energy heat pump water heater is drafted by Architecture Design Institute of Zhejiang University, estimates can draft complete March in this year.After this standard implementation, there is positive action to enterprise in charge of construction.When the time comes, newly constructed house, by the space of reserved installation air energy heat pump water heater, produces directly favourable to air energy heat pump water heater.
The waste heat that this project utilizes heat pump air conditioner to produce in process of refrigerastion, for heat hot water, produces the hot water not needing electricity consumption, and becomes air-cooled (air energy) into water-cooled (water energy), have higher COP, saves acquisition expenses in addition, saves installing space; Can also heat pump air conditioner heating, produce in water heating process more than the cold cold water for the production of not needing electricity consumption, coordinate hot water to carry out hot and cold water contrast bath, play the effect improved the health.The course of work for air conditioner refrigerating+water heating: according to air-cooled mode computation: input power P=1000W, can adopt hot Qc=3000W indoor by air conditioner refrigerating, and quantity of heat given up Qh=4000W is used for water heating, P+Qc=Qh; , adopting hot 3000W due to indoor and be equivalent to indoor refrigeration 3000W, is useful, then input power P=1000W brings the useful hot merit of 4000W+3000W=7000W, refers to air-cooled, now with water heat absorption, is equivalent to water-cooled, can also improves.
This project can replace air energy heat pump water heater+heat pump split-type air conditioner completely, is expected to enter urbanization in the works, walks energy-conservation new approach.
[utility model content]
A kind of heat-pump air conditioning unit: comprise off-premises station, energy storage water tank, the S pipe between off-premises station and energy storage water tank; Off-premises station inside comprises high-pressure air pipe (30), low pressure gas pipe (32); Connect the public refrigerant adapter of bus type of all working unit, comprising: liquid line (31) and control bus (50).
System also comprises: indoor set and the F1 between off-premises station and indoor set manage; Indoor set can connect multiple stage, and wherein indoor set 2, indoor set 3 are equipped with corresponding F2, F3 pipe.
System also comprises: boiler, between off-premises station and boiler H pipe or/and cold water storage cistern, between off-premises station and cold water storage cistern C pipe.
Indoor set configures one or more sets as required; For the user wanting using air-condition cold wind and air-conditioning hot blast simultaneously, indoor set wants two; The indoor set 2 increased or the structure of other indoor sets identical with indoor set; While increasing indoor set 2, the F2 that will increase between off-premises station and indoor set 2 manages.
Continue to increase indoor set, in off-premises station, increase indoor set 3 three-way magnetic valve (7B) and the F3 between off-premises station and indoor set 3 manages, indoor set 4 three-way magnetic valve (7C) and the F4 between off-premises station and indoor set 4 manage; The structure of the indoor set increased is identical with indoor set;
Indoor set, indoor set 2, boiler, between cold water storage cistern with off-premises station, also to be connected a special refrigerant pipe, be respectively: be connected F1 pipe, indoor set 2 between indoor set with off-premises station and between off-premises station, be connected F2 and manage, be connected H between boiler with off-premises station and manage, be connected C between cold water storage cistern with off-premises station and manage.
The common port of the indoor set three-way magnetic valve (7) in off-premises station, indoor set 2 three-way magnetic valve (7A), boiler three-way magnetic valve (18), cold water storage cistern three-way magnetic valve (15) is connected with F1, F2, H, C pipe port of off-premises station respectively.
The G end of the indoor set three-way magnetic valve (7) in off-premises station, indoor set 2 three-way magnetic valve (7A), boiler three-way magnetic valve (18), cold water storage cistern three-way magnetic valve (15) is connected with the high-pressure air pipe (30) in off-premises station.
The D end of the indoor set three-way magnetic valve (7) in off-premises station, indoor set 2 three-way magnetic valve (7A), boiler three-way magnetic valve (18), cold water storage cistern three-way magnetic valve (15) is connected with the low pressure gas pipe (32) in off-premises station.
When certain unit need heat, the G of the three-way magnetic valve be connected with this element holds and is communicated with common port;
When certain unit needs refrigeration, the D of the three-way magnetic valve be connected with this element holds and is communicated with common port;
The adjustment of the switch control rule of off-premises station, the control of refrigerated medium heat and temperature is just controlled by off-premises station electric expansion valve (6).
The adjustment of the switch control rule of indoor set, the control of refrigerated medium heat and temperature is just controlled by electronic expansion valve of indoor unit (9).
The adjustment of the switch control rule of indoor set 2, the control of refrigerated medium heat and temperature is just controlled by electronic expansion valve of indoor unit (9A).
The adjustment of the switch control rule of cold water storage cistern, the control of refrigerated medium heat and temperature is just controlled by cold water storage cistern electric expansion valve (17).
The adjustment of the switch control rule of boiler, the control of refrigerated medium heat and temperature is just controlled by boiler electric expansion valve (20).
By the flow direction of three-way magnetic valve change cold-producing medium, realization redefines boiler, the function of cold water storage cistern is: boiler+cold water storage cistern, boiler+boiler, cold water storage cistern+cold water storage cistern, cold water storage cistern+boiler;
Wherein boiler, cold water storage cistern can use hot water, cold water integrated water tank to replace, and hot water, cold water integrated water tank use vertical or suspension type; For the user not needing cold water, remove cold water storage cistern.
For the user that must purchase 1 ~ 2 heat pump split-type air conditioner and a heat pump air-source water heater respectively, 2 ~ 3 off-premises stations to be installed in outdoor; Use this equipment, only 1 off-premises station need be installed, except energy-conservation, also save product acquisition expenses, save the space of installation.
This equipment is except the high energy efficiency possessing heat-pump apparatus, still there is the advantage of UTILIZATION OF VESIDUAL HEAT IN, Yu Leng utilization, using air-condition refrigeration, heat time apart from free hot water, cold water use outside, also because use water-cooled, more air-cooled have higher Energy Efficiency Ratio, and therefore this equipment is than heat pump air-source water heater or the more power saving of heat pump split-type air conditioner.
Off-premises station comprises: compressor (1), gas-liquid separator (2), outdoor condenser/evaporimeter (3), off-premises station blower fan (4), off-premises station three-way magnetic valve (5), off-premises station electric expansion valve (6), indoor set three-way magnetic valve (7), indoor set 2 three-way magnetic valve (7A), energy storage water tank three-way magnetic valve (11), cold water storage cistern three-way magnetic valve (15), boiler three-way magnetic valve (18), high-pressure air pipe (30), low pressure gas pipe (32).
Indoor set comprises: indoor machine evaporation/condenser (8), electronic expansion valve of indoor unit (9), indoor set blower fan (10).
Indoor set 2 comprises: indoor set 2 evaporator/condenser (8A), indoor set 2 electric expansion valve (9A), indoor set 2 blower fan (10A).
Energy storage water tank comprises: energy storage water tank evaporator/condenser (12), energy storage water tank electric expansion valve (13).
In the course of work, when needing to be used alone hot water or cold water, the function of boiler or cold water storage cistern can be born by energy storage water tank; Not when hot water or cold water, the water extraction of energy storage water tank for the cold energy needed for air conditioner refrigerating process or the heat energy needed for air-conditioning heating process, thus makes system works in water-cooled pattern.When needing to use water pool and cold water pool or hydrotherapeutics machines, configuration boiler or cold water storage cistern can be increased as required; When increasing configuration boiler, energy storage water tank bears the function of cold water storage cistern; When increasing configuration cold water storage cistern, energy storage water tank bears the function of boiler.
Cold water storage cistern comprises: cold water storage cistern evaporator/condenser (16), cold water storage cistern electric expansion valve (17).
Boiler comprises: boiler condenser/evaporator (19), boiler electric expansion valve (20).
Hot and cold water tank also comprises: interior outer container heat-insulation layer (39), outer container (40), vertical outer container fixed mount (41), hanging outer container fixed mount (42).
For the user that space is narrower and small, the split water tank of cold water storage cistern, boiler can be changed into hot water, cold water integrated water tank; The split water tank of energy storage water tank, boiler is changed into hot water, accumulation of energy integrated water tank; To save place; Or the integrated water tank of vertical installation is changed into the lifting of extension wall.
Liquid line (31) is public adapter, above off-premises station electric expansion valve (6), electronic expansion valve of indoor unit (9), indoor set 2 electric expansion valve (9A), cold water storage cistern electric expansion valve (17), boiler electric expansion valve (20) are all connected in parallel.
What high-pressure air pipe (30) circulated is the high pressure refrigerant gas of low pressure refrigerant gas after compressor compresses; What liquid line (31) circulated is the refrigerant liquid that high pressure refrigerant gas is cooled to after condenser heat rejection; What low pressure gas pipe (32) circulated is the low pressure refrigerant gas of refrigerant liquid after evaporimeter heat absorption; Control bus (50) is for being communicated with control circuit and the power supply circuits of each unit.
A more than room is needed to the user of air-conditioning, machine in two covers or multi-room can be selected.
When the indoor set used is many simultaneously, more powerful off-premises station can be selected.
For the place not having three-way magnetic valve, a three-way magnetic valve can be replaced with two magnetic valves.
Also comprise: interior case outer container samming unit; Heat exchange water pipe samming unit; Eutectic salts Storage Unit;
Described interior case outer container samming unit (33), comprising: interior case block (35), outer container block (36), movable block (37), block self-locking electromagnet (38).
Movable block (37) in interior case outer container samming unit (33) is under the control of block self-locking electromagnet (38), interior case block (35) and outer container block (36) are carried out hot short circuit, allow interior case and outer container samming, make boiler or/and the heat of cold water storage cistern is conducted to space by outer container, change boiler or/and the temperature of cold water storage cistern, thus can repeatedly to boiler or/and cold water storage cistern dispels the heat or adopts heat, becoming air-cooled is water-cooled, keeps high energy efficiency ratio;
Described heat exchange water pipe samming unit (34) comprising: go out water solenoid valve (27A), entering water electromagnetic valve (27B), water circulating pump (27), heat exchange water pipe (43), fin (44) and protective cover (45);
When boiler or/and cold water storage cistern is or/and when the temperature of water of energy storage water tank and the temperature of outdoor air exist the temperature difference, water circulating pump (27) boiler or/and cold water storage cistern is or/and the water of energy storage water tank is extracted into heat exchange water pipe (43), heat exchange is carried out with outdoor air by heat exchange water pipe (43) and connected fin (44), make boiler or/and cold water storage cistern is or/and the heat of energy storage water tank is conducted to space by heat exchange water pipe (43), change boiler or/and cold water storage cistern is or/and the temperature of energy storage water tank, finally make boiler or/and cold water storage cistern is or/and the water of energy storage water tank and outdoor air samming, thus can repeatedly to boiler or/and cold water storage cistern is or/and energy storage water tank dispels the heat or adopts heat, boiler or/and cold water storage cistern is or/and the water of energy storage water tank becomes Cooling and Heat Source, becoming air-cooled is water-cooled, improve Energy Efficiency Ratio.
Described eutectic salts Storage Unit (46) comprising: eutectic salts hydrate (47), retainer ring (48), can (48A), thermal trough (49);
Inner a can made with Heat Conduction Material (48A), fill eutectic salts hydrate (47); The axis of can (48A) has many thermal troughs (49), and thermal trough increases the contact area of the water of eutectic salts Storage Unit (46) and water tank, is convenient to allow the eutectic salts hydrate (47) in the water of water tank and container carry out exchange heat; Eutectic salts hydrate (47) in can (48A) absorbs the heat in the water of water tank, produces phase transformation, and eutectic salts is melted, and absorbs latent heat; Eutectic salts hydrate (47) in can (48A), to the water heat release of water tank, produces phase transformation and freezes, and releases latent heat; Realize latent heat accumulator.
Eutectic salts Storage Unit (46) can be configured in boiler as required or/and cold water storage cistern;
Under same volume or equal in quality, eutectic salts hydrate (47) adds latent heat accumulator than not having the water of phase transformation, namely adds the energy storage capacity that eutectic salts hydrate can increase water tank, saves volume, space, reduces costs.
Equipment also comprises: shower monitoring system, intelligent temperature control unit;
Shower monitoring system (60) comprising: shower display controller (54), biometric information sensor (55), shower Color-changing lamp (56), music player (57); Biometric information sensor (55) is a wrist type or finger cot type heart rate, blood pressure, blood oxygen concentration, E.E.G pick-up transducers, it is sent to shower display controller (54) the heart rate of user, blood pressure, blood oxygen concentration, E.E.G, by control bus water temp. auto-control, to adapt to the fitness of user; Control the broadcasting speed of music player (57), assisting users adaptive temperature changes simultaneously; And control shower Color-changing lamp (56) according to the adaptation situation turn colors of user to temperature, adapt to the temperature of hot and cold water for assisted user as early as possible, improve the health effect of hot and cold water contrast bath; The temperature of this equipment cold water, hot water is except respectively by except manual adjustments, can passing through shower monitoring system according to the condition Intelligent adjustment of user to optimum numerical value.
Shower display controller (54) comprising: microcomputerized control chip (61), memory (61A), LCD display (62), remote control transceiver (63), USB dish/interface (64), network interface card (65), mobile communication module (66), wireless receiver (67), environmental parameter sensor (68), air/water temperature controller (69), brightness controller/illuminating lamp (70), color controller (71), sound equipment, TV, projecting apparatus, body sense power amplifier/body sense oscillator (72).
Intelligent temperature control unit comprises: indoor set display controller (51), outdoor controller (53), indoor set 2 display controller (51A), boiler sensor (58), cold water storage cistern sensor (59), energy storage water tank display controller (14), they are all connected to control bus (50), and shower display controller (54) is also connected to control bus (50); Comprise indoor set remote controller (52), indoor set 2 remote controller (52A) in addition.
Boiler sensor (58) comprising: level sensor, temperature sensor, water quality sensor.
Cold water storage cistern sensor (59) comprising: level sensor, temperature sensor, water quality sensor.
Energy storage water tank sensor (14) comprising: level sensor, temperature sensor, water quality sensor.
Water route is as follows: be connected to the water inlet of boiler by running water water pipe by boiler electromagnetic water valve (24) of intaking, the hot water of boiler is by boiler water outlet electromagnetic water valve (23) supplying hot water; Be connected to the water inlet of cold water storage cistern by running water water pipe by cold water storage cistern electromagnetic water valve (25) of intaking, the cold water of cold water storage cistern is by cold water storage cistern water outlet electromagnetic water valve (26) feeding cold water.
Energy storage water tank has a filling pipe end and has a lower mouth of a river, connect a threeway electromagnetic water valve respectively, one end of threeway electromagnetic water valve is communicated with and is connected with running water pipe, the other end of filling pipe end threeway electromagnetic water valve (21) is hot water outlet, and the other end of lower mouth of a river threeway electromagnetic water valve (22) is cooling water outlet; After such process, energy storage water tank, except for except accumulation of energy, can also serve as boiler, cold water storage cistern uses.
For there being two cover indoor sets, and have the equipment of cold water storage cistern, boiler, heat-pump air conditioning unit can be made to work in 15 kinds of patterns respectively by the duty changing magnetic valve, the different operating process of decomposing in each pattern is and works simultaneously; For the system only having boiler and energy storage water tank or cold water storage cistern and energy storage water tank, now served as the function of cold water storage cistern or boiler by energy storage water tank, 15 kinds of mode of operations are still set up.
For the equipment only having a set of indoor set, there is no 1) air-conditioning heating+air conditioner refrigerating+water heating+chilled water, 4) air conditioner refrigerating+air-conditioning heating+water heating, 5) air conditioner refrigerating+air-conditioning heating+chilled water, 9) these 4 kinds of patterns of air conditioner refrigerating+air-conditioning heating:
Wherein air conditioner refrigerating, adopt water-cooling pattern when heating, UTILIZATION OF VESIDUAL HEAT IN, Yu Leng utilize, the more air-cooled height of COP, and hot water, cold water are the byproduct of cold utilization more than the waste heat that do not consume energy, and mode of operation has 9 kinds:
1) air-conditioning heating+air conditioner refrigerating+water heating+chilled water, 2) air conditioner refrigerating+water heating+chilled water, 3) air-conditioning heating+water heating+chilled water, 4) air conditioner refrigerating+air-conditioning heating+water heating, 5) air conditioner refrigerating+air-conditioning heating+chilled water, 6) air conditioner refrigerating+water heating, 7) air-conditioning heating+chilled water, 8) water heating+chilled water, 9) air conditioner refrigerating+air-conditioning heating;
Utilizing the idle function of water tank to become air-cooled is water-cooled, mode of operation 6 kinds:
10) air conditioner refrigerating+chilled water (utilize boiler absorb waste heat), 11) air-conditioning heating+water heating utilize cold water storage cistern absorb remaining cold, 12) chilled water utilizes boiler to absorb waste heat, 13) water heating utilize cold water storage cistern absorb remaining cold, 14) air conditioner refrigerating utilizes boiler to absorb waste heat, 15) to utilize cold water storage cistern to absorb remaining cold for air-conditioning heating;
Equipment and the adapter order of connection of various duty are as follows:
1) air-conditioning heating+air conditioner refrigerating+water heating+chilled water: be decomposed into 1. air-conditioning heating+air conditioner refrigerating and 2. water heating+chilled water, two processes are carried out simultaneously:
1. compressor (1) → high-pressure air pipe (30) → indoor set three-way magnetic valve (7): put G end → F1 pipe → indoor machine evaporation/condenser (8) → electronic expansion valve of indoor unit (9) → liquid line (31) → indoor set 2 electric expansion valve (9A) → indoor set 2 evaporator/condenser (8A) → F2 pipe → indoor set 2 three-way magnetic valve (7A): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
2. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
2) air conditioner refrigerating+water heating+chilled water: be decomposed into 3. air conditioner refrigerating+water heating and 2. water heating+chilled water, two processes are carried out simultaneously:
3. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → indoor set 2 electric expansion valve (9A) → indoor set 2 evaporator/condenser (8A) → F2 pipe → indoor set 2 three-way magnetic valve (7A): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
2. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
3) air-conditioning heating+water heating+chilled water: be decomposed into 4. air-conditioning heating+chilled water and 2. water heating+chilled water, two processes are carried out simultaneously:
4. compressor (1) → high-pressure air pipe (30) → indoor set three-way magnetic valve (7): put G end → F1 pipe → indoor machine evaporation/condenser (8) → electronic expansion valve of indoor unit (9) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
2. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
4) air conditioner refrigerating+air-conditioning heating+water heating: be decomposed into 1. air-conditioning heating+air conditioner refrigerating and 3. air conditioner refrigerating+water heating, two processes are carried out simultaneously:
1. compressor (1) → high-pressure air pipe (30) → indoor set three-way magnetic valve (7): put G end → F1 pipe → indoor machine evaporation/condenser (8) → electronic expansion valve of indoor unit (9) → liquid line (31) → indoor set 2 electric expansion valve (9A) → indoor set 2 evaporator/condenser (8A) → F2 pipe → indoor set 2 three-way magnetic valve (7A): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
3. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → indoor set 2 electric expansion valve (9A) → indoor set 2 evaporator/condenser (8A) → F2 pipe → indoor set 2 three-way magnetic valve (7A): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
5) air conditioner refrigerating+air-conditioning heating+chilled water: be decomposed into 1. air-conditioning heating+air conditioner refrigerating and 4. air-conditioning heating+chilled water, two processes are carried out simultaneously:
1. compressor (1) → high-pressure air pipe (30) → indoor set three-way magnetic valve (7): put G end → F1 pipe → indoor machine evaporation/condenser (8) → electronic expansion valve of indoor unit (9) → liquid line (31) → indoor set 2 electric expansion valve (9A) → indoor set 2 evaporator/condenser (8A) → F2 pipe → indoor set 2 three-way magnetic valve (7A): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
4. compressor (1) → high-pressure air pipe (30) → indoor set three-way magnetic valve (7): put G end → F1 pipe → indoor machine evaporation/condenser (8) → electronic expansion valve of indoor unit (9) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
6) air conditioner refrigerating+water heating:
3. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → indoor set 2 electric expansion valve (9A) → indoor set 2 evaporator/condenser (8A) → F2 pipe → indoor set 2 three-way magnetic valve (7A): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
7) air-conditioning heating+chilled water:
4. compressor (1) → high-pressure air pipe (30) → indoor set three-way magnetic valve (7): put G end → F1 pipe → indoor machine evaporation/condenser (8) → electronic expansion valve of indoor unit (9) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
8) water heating+chilled water:
2. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
9) air conditioner refrigerating+air-conditioning heating:
1. compressor (1) → high-pressure air pipe (30) → indoor set three-way magnetic valve (7): put G end → F1 pipe → indoor machine evaporation/condenser (8) → electronic expansion valve of indoor unit (9) → liquid line (31) → indoor set 2 electric expansion valve (9A) → indoor set 2 evaporator/condenser (8A) → F2 pipe → indoor set 2 three-way magnetic valve (7A): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
10) air conditioner refrigerating+chilled water, is decomposed into: 3. air conditioner refrigerating+water heating and 2. chilled water+water heating, and two processes are carried out simultaneously:
3. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → indoor set 2 electric expansion valve (9A) → indoor set 2 evaporator/condenser (8A) → F2 pipe → indoor set 2 three-way magnetic valve (7A): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
2. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
11) air-conditioning heating+water heating, is decomposed into: 4. air-conditioning heating+chilled water and 2. chilled water+water heating, and two processes are carried out simultaneously:
4. compressor (1) → high-pressure air pipe (30) → indoor set three-way magnetic valve (7): put G end → F1 pipe → indoor machine evaporation/condenser (8) → electronic expansion valve of indoor unit (9) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
2. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
12) chilled water=2. chilled water+water heating:
2. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
13) water heating=2. chilled water+water heating:
2. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
14) air conditioner refrigerating=3. air conditioner refrigerating+water heating:
3. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → indoor set 2 electric expansion valve (9A) → indoor set 2 evaporator/condenser (8A) → F2 pipe → indoor set 2 three-way magnetic valve (7A): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
15) air-conditioning heating=4. air-conditioning heating+chilled water:
4. compressor (1) → high-pressure air pipe (30) → indoor set three-way magnetic valve (7): put G end → F1 pipe → indoor machine evaporation/condenser (8) → electronic expansion valve of indoor unit (9) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
Pattern 1 ~ 15 is energy saver modes, assuming that during Qh=P+Qc, the heat that namely each unit of equipment needs equals cold and the input power sum of needs, and not needing the heat exchanger of startup off-premises station and blower fan outwardly to carry out heat exchange work, is the most energy-conservation working method;
When Qh > P+Qc, namely the heat that each unit of equipment needs is greater than cold and the input power sum of needs, now need the heat exchanger and the blower fan work that use off-premises station, adopt heat by outdoor condenser/evaporimeter (3) to air, obtain their difference Qh1=Qh-P-Qc;
When Qh < P+Qc, namely the cold that needs of each unit of equipment and input power sum are greater than the heat of needs, now need the heat exchanger and the blower fan work that use off-premises station, adopt to air cold by outdoor condenser/evaporimeter (3), obtain their difference Qc1=P+Qc-Qh;
The course of work of off-premises station refrigeration comprises: 5. air-conditioning heating+off-premises station refrigeration and 6. water heating+off-premises station refrigeration: be equivalent to air-conditioning heating or water heating does not reach preset value, adopts heat by off-premises station refrigeration;
The course of work that off-premises station heats comprises: 7. air conditioner refrigerating+off-premises station heat and 8. chilled water+off-premises station heat; Be equivalent to air conditioner refrigerating or chilled water does not reach preset value, by off-premises station heat adopt cold;
Equipment and the adapter order of connection of use off-premises station adjustment heat are as follows:
5. compressor (1) → high-pressure air pipe (30) → indoor set three-way magnetic valve (7): put G end → F1 pipe → indoor machine evaporation/condenser (8) → electronic expansion valve of indoor unit (9) → liquid line (31) → off-premises station electric expansion valve (6) → outdoor condenser/evaporimeter (3) → off-premises station three-way magnetic valve (5): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
6. compressor (1) → high-pressure air pipe (30) → boiler three-way magnetic valve (18): put G end → H pipe → boiler condenser/evaporator (19) → boiler electric expansion valve (20) → liquid line (31) → off-premises station electric expansion valve (6) → outdoor condenser/evaporimeter (3) → off-premises station three-way magnetic valve (5): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
7. compressor (1) → high-pressure air pipe (30) → off-premises station three-way magnetic valve (5): put indoor set 2 three-way magnetic valve (7A) in G end → outdoor condenser/evaporimeter (3) → off-premises station electric expansion valve (6) → liquid line (31) → indoor set 2 electric expansion valve (9A) → indoor set 2 evaporator/condenser (8A) → F2 pipe → off-premises station: put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1);
8. compressor (1) → high-pressure air pipe (30) → off-premises station three-way magnetic valve (5): put G end → outdoor condenser/evaporimeter (3) → off-premises station electric expansion valve (6) → liquid line (31) → cold water storage cistern electric expansion valve (17) → cold water storage cistern evaporator/condenser (16) → C pipe → cold water storage cistern three-way magnetic valve (15): put D end → low pressure gas pipe (32) → gas-liquid separator (2) → compressor (1).
[accompanying drawing explanation]
Fig. 1: standard heat pump air-conditioning equipment structural representation
Fig. 2: the water heater structure schematic diagram that heat-pump air conditioning unit is built
Fig. 3: the air conditioner structure schematic diagram that heat-pump air conditioning unit is built
Fig. 4: hydrotherapeutics machines-water pool and cold water pool structural representation that heat-pump air conditioning unit is built
Fig. 5: the air conditioner and water heater structural representation that heat-pump air conditioning unit is built
Fig. 6: shower display controller structural representation
Fig. 7: interior case outer container samming cellular construction schematic diagram
Fig. 8: eutectic salts Storage Unit structural representation
Fig. 9: the energy accumulation air conditioner structural representation that heat-pump air conditioning unit is built
Figure 10: hot water, cold water integrated water tank structural representation
Figure 11: hot water, accumulation of energy integrated water tank structural representation
Figure 12: the lift-on/lift-off type hot water or cold water integrated water tank structural representation of case outer container samming unit in band
Figure 13: heat exchange water pipe samming cellular construction schematic diagram
Figure 14: the hot water tank structure schematic diagram of band heat exchange water pipe samming unit
[detailed description of the invention]
A kind of interior case outer container temperature equalizing method of water tank:
Use interior case outer container samming unit (33) of this equipment, can carry out samming to water tank and outer container, step is as follows:
1. at cold water storage cistern or/and boiler outer wall adopt welding, bonding way, one or more cross section be trapezoidal in case block (35) closely engage with the outer wall of hot and cold water tank;
2. adopting the way of welding, bonding at the inwall of outer container (40), is that trapezoidal outer container block (36) closely engages with the inwall of outer container (40) one or more cross section;
3. between interior case block (35) and outer container block (36), arrange cross section is trapezoidal movable block (37), movable block (37) can be moved and interior case block (35) and outer container block (36) close contact, between interior case block (35) and outer container block (36), form the passage of heat, to be convenient to by the passage of heat boiler or/and cold water storage cistern and outer container (40) carry out samming; Movable block (37) contacts with interior case block (35) and outer container block (36), carries out samming, is separated and does not then carry out samming;
4. samming process: whether movable block (37) contacts with interior case block (35) and outer container block (36), control by block self-locking electromagnet (38): block self-locking electromagnet (38) is energized, block self-locking electromagnet (38) adhesive, movable block (37) is mobile to be contacted with interior case block (35) and outer container block (36), and samming process starts; Self-locking device action, makes movable block (37) keep contacting with interior case block (35) and outer container block (36), block self-locking electromagnet (38) power-off; After startup, in whole samming process, block self-locking electromagnet (38) need not be energized always;
5. samming is removed: block self-locking electromagnet (38) is energized again, self-locking device is removed, movable block (37) disconnects and contact between interior case block (35) and outer container block (36) under the effect of back-moving spring, samming process terminates, block self-locking electromagnet (38) power-off;
6. interior case block (35), outer container block (36), movable block (37) are made by the material that heat conduction is good.
The temperature equalizing method of a kind of water tank and outdoor air:
Use heat exchange water pipe samming unit (34) of native system, can to cold water storage cistern or/and boiler to be or/and the water of energy storage water tank and outdoor air carry out samming, step is as follows:
1. start and water solenoid valve (27A), entering water electromagnetic valve (27B), by water circulating pump (27) cold water storage cistern or/and boiler is or/and the water of energy storage water tank is extracted into heat exchange water pipe (43);
2., after the water of heat exchange water pipe (43) fills, water solenoid valve (27A), entering water electromagnetic valve (27B) and water circulating pump (27) is closed out;
3. cold water storage cistern is or/and boiler is or/and the water of energy storage water tank is in heat exchange water pipe (43), is contacted, by the transmission of heat, with outdoor air heat-shift by heat exchange water pipe (43) and fin (44) surface with outdoor air; Until when the temperature of water in heat exchange water pipe (43) equals the temperature of outdoor air;
4. start and water solenoid valve (27A), entering water electromagnetic valve (27B), by water circulating pump (27), the water of heat exchange water pipe (43) is withdrawn into water tank;
5. repeat 1., 2., 3., 4. process, after repeatedly circulating, the temperature of the water of final water tank equals outside air temperature, and samming process terminates;
6. for the occasion needing quick samming, start and water solenoid valve (27A), entering water electromagnetic valve (27B), water circulating pump (27) or/and boiler is or/and the water of energy storage water tank is extracted into heat exchange water pipe (43) incessantly and is back to cold water storage cistern immediately or/and boiler is or/and energy storage water tank, accelerates the transmission of heat to accelerate samming process cold water storage cistern.
The usual change that those skilled in the art carries out in the scope of technical solutions of the utility model is replaced and all should be included in protection domain of the present utility model.Useful effect: Fok, Henry Ying Tung suffers from lymph cancer in 60 years old, because adhere to the physique of tempering oneself every day with ice pyrogenic process (hot and cold water contrast bath), lives and can be rated as miracle by 83 years old.Mr. Ma Yinchu is the body forces passerby of typical ice fire therapy, although he endures the body and mind strike criticized and cause to the fullest extent, when 91 years old, suffer from the carcinoma of the rectum, ice fire therapy (hot and cold water contrast bath) makes it live by 101 years old just.The hot spring of current part is provided with water pool and cold water pool, 12 DEG C, ice pond, 42 DEG C, fiery pond, and the temperature difference is larger; The temperature-controlled process of the hot and cold water contrast bath of the application can regulate the temperature of hot and cold water by continuous print respectively, to the people just bringing into use the water pool and cold water pool of this equipment making to keep healthy, first the temperature difference can be turned down, just strengthen after adapting to; Than directly going, hot spring water pool and cold water pool is easier to be adapted to.If alternate immersion water pool and cold water pool, blood vessel pliability can be tempered, improve resistance, so few that to catch a cold.But countryside of bathing in hot spring all must be spent the time and be taken the expenditure of 100 ~ 200 yuan at every turn, even if think that bubble can not be adhered to.So the utility model can make general family purchase by the most cheap easy way and often use, connect water at every turn, the electricity charge are no more than 3 yuan.If promote well will greatly to improve the fitness of the whole people.Utilize this equipment can complete repertoire about hydrotherapy in physical treatment: local rushes bath, maniluvium, lavipeditum, hip bath, half bath, whole body rush bath, full bath, WBS, cold bath (lower than 25 DEG C), low temperature water-bath (25 ~ 32 DEG C), not temperature-sensitive water-bath (33 ~ 38 DEG C), tepidarium (more than 38 DEG C), cold (lower than 20 DEG C)-Re (40 ~ 45 DEG C) water contrast bath.This equipment can also be used for the Hydrotherapy of hospital, the SPA room in hotel, family and enterprise.Oneself select different thermal water additives, can stay indoors and just enjoy the hot spring of various places different-style.In addition, reduce investment outlay, save electric energy, it is also its advantage that environmental protection reduces the space of installing.
Introduce according to " physiatrics pandect " the 17th chapter hydrotherapy (chief editor: Qiao Zhiheng, Fan Weiming scientific and technical literature publishing house):
Hydrotherapy acts on comparison sheet to each system organ of human body
The accommodation of hydrotherapy:
(1) internal disease: high blood pressure, nervus vasculairs disease, early stage artery sclerosis, cardiac disorder compensatory phase, gastrointestinal dysfunction, functional colitis, habitual constipation, oneself is poisoning for enteron aisle, obesity, rheumatic myalgia, tired syndrome, rheumatism or rheumatoid arthritis, gout, kidney disease, ephidrosis, occupational are plumbous or mercury poisoning etc.(2) neuropathy: neurasthenia, vegetative nerve functional disturbance, neuralgia, neuritis, peripheral nerve paralysis.Raynaud's disease etc.(3) surgical disease: chronic eczema, honor measles, cutaneum carcinoma are itched disease, psoriasis, seborrhea, multiple furuncle.Multiple folliculitis, chmnic. obstructive's thromboendarteritis, burn after scabies secondary infection, large area paralysis trace contracture, arthrocleisis, functional training and recovery, hemorrhoid, prostatitis etc. after wound.(4) gynaecology: amenorrhoea, hypoovarianism, chronic pelvic illness etc.

Claims (5)

1. a heat-pump air conditioning unit, is characterized in that: comprise off-premises station, energy storage water tank, the S pipe between off-premises station and energy storage water tank;
Off-premises station inside comprises high-pressure air pipe (30), low pressure gas pipe (32);
System also comprises: indoor set and the F1 between off-premises station and indoor set manage; Indoor set can connect multiple stage, and wherein indoor set 2, indoor set 3 are equipped with corresponding F2, F3 pipe;
The public refrigerant adapter of bus type, comprising: liquid line (31) and control bus (50).
2. heat-pump air conditioning unit according to claim 1, is characterized in that:
System also comprises: boiler, between off-premises station and boiler H pipe or/and cold water storage cistern, between off-premises station and cold water storage cistern C pipe.
3. heat-pump air conditioning unit according to claim 1, is characterized in that:
Indoor set configures one or more sets as required; For the user wanting using air-condition cold wind and air-conditioning hot blast simultaneously, indoor set wants two; The indoor set 2 increased or the structure of other indoor sets identical with indoor set; While increasing indoor set 2, the F2 that will increase between off-premises station and indoor set 2 manages;
Continue to increase indoor set, in off-premises station, increase indoor set 3 three-way magnetic valve (7B) and the F3 between off-premises station and indoor set 3 manages, indoor set 4 three-way magnetic valve (7C) and the F4 between off-premises station and indoor set 4 manage; The structure of the indoor set increased is identical with indoor set;
Indoor set, indoor set 2, boiler, between cold water storage cistern with off-premises station, also to be connected a special refrigerant pipe, be respectively: be connected F1 pipe, indoor set 2 between indoor set with off-premises station and between off-premises station, be connected F2 and manage, be connected H between boiler with off-premises station and manage, be connected C between cold water storage cistern with off-premises station and manage;
The common port of the indoor set three-way magnetic valve (7) in off-premises station, indoor set 2 three-way magnetic valve (7A), boiler three-way magnetic valve (18), cold water storage cistern three-way magnetic valve (15) is connected with F1, F2, H, C pipe port of off-premises station respectively;
The G end of the indoor set three-way magnetic valve (7) in off-premises station, indoor set 2 three-way magnetic valve (7A), boiler three-way magnetic valve (18), cold water storage cistern three-way magnetic valve (15) is connected with the high-pressure air pipe (30) in off-premises station;
The D end of the indoor set three-way magnetic valve (7) in off-premises station, indoor set 2 three-way magnetic valve (7A), boiler three-way magnetic valve (18), cold water storage cistern three-way magnetic valve (15) is connected with the low pressure gas pipe (32) in off-premises station;
When certain unit need heat, the G of the three-way magnetic valve be connected with this element holds and is communicated with common port;
When certain unit needs refrigeration, the D of the three-way magnetic valve be connected with this element holds and is communicated with common port;
The adjustment of the switch control rule of off-premises station, the control of refrigerated medium heat and temperature is just controlled by off-premises station electric expansion valve (6);
The adjustment of the switch control rule of indoor set, the control of refrigerated medium heat and temperature is just controlled by electronic expansion valve of indoor unit (9);
The adjustment of the switch control rule of indoor set 2, the control of refrigerated medium heat and temperature is just controlled by electronic expansion valve of indoor unit (9A);
The adjustment of the switch control rule of cold water storage cistern, the control of refrigerated medium heat and temperature is just controlled by cold water storage cistern electric expansion valve (17);
The adjustment of the switch control rule of boiler, the control of refrigerated medium heat and temperature is just controlled by boiler electric expansion valve (20).
4. heat-pump air conditioning unit according to claim 1, is characterized in that:
Off-premises station comprises: compressor (1), gas-liquid separator (2), outdoor condenser/evaporimeter (3), off-premises station blower fan (4), off-premises station three-way magnetic valve (5), off-premises station electric expansion valve (6), indoor set three-way magnetic valve (7), indoor set 2 three-way magnetic valve (7A), energy storage water tank three-way magnetic valve (11), cold water storage cistern three-way magnetic valve (15), boiler three-way magnetic valve (18), high-pressure air pipe (30), low pressure gas pipe (32),
Indoor set comprises: indoor machine evaporation/condenser (8), electronic expansion valve of indoor unit (9), indoor set blower fan (10);
Indoor set 2 comprises: indoor set 2 evaporator/condenser (8A), indoor set 2 electric expansion valve (9A), indoor set 2 blower fan (10A);
Energy storage water tank comprises: energy storage water tank evaporator/condenser (12), energy storage water tank electric expansion valve (13);
Cold water storage cistern comprises: cold water storage cistern evaporator/condenser (16), cold water storage cistern electric expansion valve (17);
Boiler comprises: boiler condenser/evaporator (19), boiler electric expansion valve (20);
Hot and cold water tank also comprises: interior outer container heat-insulation layer (39), outer container (40), vertical outer container fixed mount (41), hanging outer container fixed mount (42);
For the user that space is narrower and small, the split water tank of cold water storage cistern, boiler can be changed into hot water, cold water integrated water tank; The split water tank of energy storage water tank, boiler is changed into hot water, accumulation of energy integrated water tank, to save place; Or the integrated water tank of vertical installation is changed into the lifting of extension wall;
Liquid line (31) is public adapter, above off-premises station electric expansion valve (6), electronic expansion valve of indoor unit (9), indoor set 2 electric expansion valve (9A), cold water storage cistern electric expansion valve (17), boiler electric expansion valve (20) are all connected in parallel;
What high-pressure air pipe (30) circulated is the high pressure refrigerant gas of low pressure refrigerant gas after compressor compresses; What liquid line (31) circulated is the refrigerant liquid that high pressure refrigerant gas is cooled to after condenser heat rejection; What low pressure gas pipe (32) circulated is the low pressure refrigerant gas of refrigerant liquid after evaporimeter heat absorption; Control bus (50) is for being communicated with control circuit and the power supply circuits of each unit.
5. the heat-pump air conditioning unit according to claim 1 or 3, is characterized in that:
Also comprise: interior case outer container samming unit; Heat exchange water pipe samming unit; Eutectic salts Storage Unit;
Described interior case outer container samming unit (33), comprising: interior case block (35), outer container block (36), movable block (37), block self-locking electromagnet (38);
Movable block (37) in interior case outer container samming unit (33) is under the control of block self-locking electromagnet (38), interior case block (35) and outer container block (36) are carried out hot short circuit, allow interior case and outer container samming, make boiler or/and the heat of cold water storage cistern is conducted to space by outer container, change boiler or/and the temperature of cold water storage cistern, thus can repeatedly to boiler or/and cold water storage cistern dispels the heat or adopts heat, becoming air-cooled is water-cooled, keeps high energy efficiency ratio;
Described heat exchange water pipe samming unit (34) comprising: go out water solenoid valve (27A), entering water electromagnetic valve (27B), water circulating pump (27), heat exchange water pipe (43), fin (44) and protective cover (45);
When boiler or/and cold water storage cistern is or/and when the temperature of water of energy storage water tank and the temperature of outdoor air exist the temperature difference, water circulating pump (27) boiler or/and cold water storage cistern is or/and the water of energy storage water tank is extracted into heat exchange water pipe (43), heat exchange is carried out with outdoor air by heat exchange water pipe (43) and connected fin (44), make boiler or/and cold water storage cistern is or/and the heat of energy storage water tank is conducted to space by heat exchange water pipe (43), change boiler or/and cold water storage cistern is or/and the temperature of energy storage water tank, finally make boiler or/and cold water storage cistern is or/and the water of energy storage water tank and outdoor air samming, thus can repeatedly to boiler or/and cold water storage cistern is or/and energy storage water tank dispels the heat or adopts heat, boiler or/and cold water storage cistern is or/and the water of energy storage water tank becomes Cooling and Heat Source, becoming air-cooled is water-cooled, improve Energy Efficiency Ratio,
Described eutectic salts Storage Unit (46) comprising: eutectic salts hydrate (47), retainer ring (48), can (48A), thermal trough (49);
Inner a can made with Heat Conduction Material (48A), fill eutectic salts hydrate (47); The axis of can (48A) has many thermal troughs (49), thermal trough increases the contact area of the water of eutectic salts Storage Unit (46) and water tank, is convenient to allow the eutectic salts hydrate (47) in the water of water tank and container carry out exchange heat; Eutectic salts hydrate (47) in can (48A) absorbs the heat in the water of water tank, produces phase transformation, and eutectic salts is melted, and absorbs latent heat; Eutectic salts hydrate (47) in can (48A), to the water heat release of water tank, produces phase transformation and freezes, and releases latent heat; Realize latent heat accumulator.
CN201420144279.6U 2013-06-08 2014-03-27 Heat-pump air conditioning unit Expired - Fee Related CN204153893U (en)

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CN103307806A (en) * 2013-06-08 2013-09-18 李隆 Low-energy-consumption full-functional heat pump air-conditioning system and method thereof
CN103307809A (en) * 2013-06-08 2013-09-18 李隆 Multifunctional heat pump air-conditioning system and method thereof
CN103307678A (en) * 2013-06-08 2013-09-18 李隆 Heat pump air-conditioning equipment and method thereof
CN103344019A (en) * 2013-06-08 2013-10-09 李隆 All-in-one heat pump air conditioner system and method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103868180A (en) * 2013-06-08 2014-06-18 李隆 Heat pump air conditioning equipment and method
CN107842961A (en) * 2017-12-05 2018-03-27 山东荣安电子科技有限公司 Mobile type indoor cooling refrigeration equipment

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CN103307678A (en) 2013-09-18
CN103868180B (en) 2017-04-12

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