CN1920435A - Heat converter with electricity generation and storage function - Google Patents

Heat converter with electricity generation and storage function Download PDF

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Publication number
CN1920435A
CN1920435A CNA2005100977686A CN200510097768A CN1920435A CN 1920435 A CN1920435 A CN 1920435A CN A2005100977686 A CNA2005100977686 A CN A2005100977686A CN 200510097768 A CN200510097768 A CN 200510097768A CN 1920435 A CN1920435 A CN 1920435A
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China
Prior art keywords
heat
heat exchanger
water
pyrogenicity
compressor
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Pending
Application number
CNA2005100977686A
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Chinese (zh)
Inventor
李万浩
朴美花
李光龙
朴成哲
朴成浩
李文生
赵国斌
陈钊
吴建国
赵福成
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李万浩
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Priority to CNA2005100977686A priority Critical patent/CN1920435A/en
Publication of CN1920435A publication Critical patent/CN1920435A/en
Pending legal-status Critical Current

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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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E20/00Combustion technologies with mitigation potential
    • Y02E20/14Combined heat and power generation [CHP]

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

Abstract

The invention relates to a heat exchanger which can generate and store electricity, wherein it comprises a heater exchanger inside the vacuum thermal-insulated bank; a compressor connected to the lower end of vacuum thermal-insulated bank; the heat medium outlet of compressor is connected to the heat medium tube of heat exchanger and the heat medium inlet of compressor; the heat medium tube is connected to the heat medium cycling system formed by pressure adjusting valve, via water inlet tube to connect the heat exchange water tube of heat exchanger; the heat exchange water tube is connected to water pump and connected to the heater; the heater is connected to the water reflux tube; the one-way valve connected to the reflux tube is connected to the water inlet tube to form water heat exchange cycling system; the axle of compressor is connected to the generator via wiring box connected to the accumulator. The invention has simple structure, small volume, better heat exchange effect, long service life and lower cost.

Description

Heat converter with generating, storage function
Technical field
A kind of heat converter with generating, storage function is especially for the heat converter with generating, storage function of heat supply heating.
Background technology
Existing heat supply heating installation has multiple version, normally adopts coal-fired, gas fired-boiler, the heat supply heating installation that boilers heated electrically and heating installation connect to form.Their common drawback is: complex structure, and volume is big, and energy utilization rate is low, the cost height; Coal-fired, gas fired-boiler also exists deficiencies such as contaminated environment.
Summary of the invention
The objective of the invention is to, provide a kind of simple in structure, volume is little, environmental protection, and the energy utilization rate height, good effect of heat exchange, long service life, cost is low, has the heat converter of generating, storage function.
The objective of the invention is to be realized by following technical scheme: a kind of have a generating, the heat converter of storage function, its special character is: it comprises the vacuum heat-preserving case, be built-in with heat exchanger at the vacuum heat-preserving case, be provided with consistent heat medium circulation system, this pyrogenicity medium circulation system is by the compressor that joins in the sealing of the lower end of vacuum heat-preserving case, compressor pyrogenicity media outlet is connected with the pyrogenicity medium transfer tube of heat exchanger, the pyrogenicity medium transfer tube of heat exchanger is connected with compressor pyrogenicity medium inlet, being connected with pressure regulator valve on the pyrogenicity medium transfer tube of heat exchanger forms, be provided with a water heat exchange circulatory system, this water heat exchange circulatory system is connected with the heat exchanging water pipe of heat exchanger by water inlet pipe, be connected with water pump on the heat exchanging water pipe of heat exchanger, the heat exchanging water pipe of heat exchanger is connected with heating installation, heating installation is connected with return pipe, the check valve and the water inlet pipe that connect on the return pipe connect to form, and are connected with generator on the axle of compressor, and this generator is electrically connected with battery by terminal box.
Heat exchanger is by the main heat exchanger of at least one group of some fins, place the supplementary heat exchanger b of some fins of main heat exchanger both sides of these some fins and the supplementary heat exchanger a of some fins placed on it respectively, pyrogenicity medium transfer tube, heat exchanging water pipe that string is loaded in main heat exchanger, the some fins of supplementary heat exchanger a, b form.
Pyrogenicity medium transfer tube, heat exchanging water pipe that string is loaded in main heat exchanger, the some fins of supplementary heat exchanger a, b can be pyrogenicity medium transfer tube by partly or entirely interior pipe, and the outer tube that is nested with thereon is the composite structure that the heat exchanging water pipe forms.
The thermoelectric pyrogenicity device of electronics is housed on the water inlet pipe of the water heat exchange circulatory system.
On the water inlet pipe of the water heat exchange circulatory system, return pipe, be provided with filter.
Of the present invention have a generating, the heat converter of storage function, owing to be to be built-in with heat exchanger at the vacuum heat-preserving case, be connected to compressor in the sealing of the lower end of vacuum heat-preserving case, compressor makes the interior medium gasification of the pyrogenicity medium transfer tube of heat exchanger and produces high temperature, the high temperature of this gasifying medium carries out heat radiation by the pyrogenicity medium transfer tube of heat exchanger and some fins of heat exchanger to the heat exchanging water pipe of heat exchanger, water among the heat exchanging water pipe of heat exchanger absorbs this radiant heat, meanwhile, compressor, the heat that distributes during generator work directly enters in the vacuum heat-preserving case and is also absorbed by the water among the heat exchanging water pipe of heat exchanger, make the heating installation that is connected with heat exchanger obtain enough heats, therefore, the energy utilization rate height, good effect of heat exchange; Owing to being connected with generator on the axle with compressor, therefore the structure that this generator is electrically connected with battery by terminal box, can realize generating and store electrical energy, more helps using energy source; Also have environmental protection, simple in structure, volume is little, long service life, low cost and other advantages.
Description of drawings
Fig. 1 is the heat converter structural upright schematic diagram with generating, storage function.
Fig. 2 is the heat exchanger structure schematic diagram.
Fig. 3 is nested with heat exchanging water pipe's structural representation on the pyrogenicity medium transfer tube.
Fig. 4 is pyrogenicity medium circulation system, the water heat exchange circulatory system figure of heat converter.
Fig. 5 is the electrical connection schematic diagram of heat converter.
Among the figure: 1 compressor, 2 check valves, 3b filter, 4 threeways, 5 pressure regulator valves, 6 vacuum heat-preserving casees, 7 heat exchangers, 8 water pumps, 9 water inlet pipes, the 10a filter, the thermoelectric pyrogenicity device of 11 electronics, 12 compressor pyrogenicity medium inlets, 13 compressor pyrogenicity media outlets, 14 hot-water heating systems, 15 reversal valves, 16 underground heat warmers, 17 fin warmers, 18 warm-air driers, 19 return pipes, 20a supplementary heat exchanger, 21 main heat exchangers, the 22b supplementary heat exchanger, 23 pyrogenicity medium transfer tubes, 24 fittings bodies, 25 generators, 26 terminal boxes, 27 batteries, 28 power supplys, 29 heat exchanging water pipes.
The specific embodiment
Utilize drawings and Examples that the present invention is further described below.
With reference to Fig. 1,2 and 4, heat converter with generating, storage function has vacuum heat-preserving case 6, be built-in with heat exchanger 7 at vacuum heat-preserving case 6, the heat exchanger 7 of present embodiment adopts three groups of A, B, C, the C group is the supplementary heat exchanger 20a of some fins, two groups of structures of B, A are identical, by the main heat exchanger 21 of some fins with place the supplementary heat exchanger 22b of some fins of main heat exchanger 21 both sides to form respectively.Heat exchanger 7 is by the main heat exchanger 21 of at least one group of some fins, place the supplementary heat exchanger 22b of some fins of main heat exchanger 21 both sides of these some fins and the supplementary heat exchanger 20a of some fins placed on it respectively, pyrogenicity medium transfer tube 23, heat exchanging water pipe 29 that string is loaded in main heat exchanger 21, the some fins of supplementary heat exchanger 20a, 22b form.See Fig. 2-3, pyrogenicity medium transfer tube 23, heat exchanging water pipe 29 that string is loaded in main heat exchanger 21, the some fins of supplementary heat exchanger 20a, 22b can be pyrogenicity medium transfer tube 23, the composite structure that the outer tube that is nested with is composed of a fixed connection by fittings body 24 for heat exchanging water pipe 29 thereon by partly or entirely interior pipe.Be provided with consistent heat medium circulation system, this pyrogenicity medium circulation system is by the compressor 1 that joins in the sealing of the lower end of vacuum heat-preserving case 6, compressor pyrogenicity media outlet 13 is connected with the pyrogenicity medium transfer tube 23 of heat exchanger 7, the pyrogenicity medium transfer tube 23 of heat exchanger 7 is connected with compressor pyrogenicity medium inlet 12, is connected with pressure regulator valve 5 and forms on the pyrogenicity medium transfer tube 23 of heat exchanger 7.Be provided with a water heat exchange circulatory system, this water heat exchange circulatory system is connected with the heat exchanging water pipe 29 of heat exchanger 7 by water inlet pipe 9, be connected with water pump 8 on the heat exchanging water pipe 29 of heat exchanger 7, the heat exchanging water pipe 29 of heat exchanger 7 is connected with heating installation, heating installation is connected with return pipe 19, and the check valve 2 and the water inlet pipe 9 that connect on the return pipe 19 connect to form.Heating installation is a underground heat warmer 16, fin warmer 17, warm-air drier 18, can be according to user's needs by reversal valve or stop valve 15, threeway 4 with underground heat warmer 16, fin warmer 17, warm-air drier 18 are connected on heat exchanging water pipe 29, the return pipe 19.On heat exchanging water pipe 29, can also connect hot-water heating system 14, for the user provides hot water.See Fig. 5, be connected with generator 25 on the axle of compressor 1, this generator 25 is electrically connected with battery 27 by terminal box 26.Power supply 28 is electrically connected with terminal box 26.The thermoelectric pyrogenicity device 11 of electronics is housed on the water inlet pipe 9 of the water heat exchange circulatory system, and the hot side plate of the thermoelectric pyrogenicity device 11 of electronics contacts with water inlet pipe 9.The thermoelectric pyrogenicity device 11 of electronics is an auxiliary thermal source.The thermoelectric pyrogenicity device 11 of electronics also claims the electronics thermoelectric cooling module usually.On the water inlet pipe 9 of the water heat exchange circulatory system, return pipe 19, be provided with filter 10a, 3b.
Originally the used compressor 1 of heat converter that has generating, storage function, check valve 2, filter 3b, 10a, threeway 4, pressure regulator valve 5, water pump 8, the thermoelectric pyrogenicity device 11 of electronics, reversal valve 15, battery 27, pyrogenicity medium (environment-friendly type refrigerant) is the commercially available prod.

Claims (5)

1. one kind has generating, the heat converter of storage function, it is characterized in that: it comprises the vacuum heat-preserving case, be built-in with heat exchanger at the vacuum heat-preserving case, be provided with consistent heat medium circulation system, this pyrogenicity medium circulation system is by the compressor that joins in the sealing of the lower end of vacuum heat-preserving case, compressor pyrogenicity media outlet is connected with the pyrogenicity medium transfer tube of heat exchanger, the pyrogenicity medium transfer tube of heat exchanger is connected with compressor pyrogenicity medium inlet, being connected with pressure regulator valve on the pyrogenicity medium transfer tube of heat exchanger forms, be provided with a water heat exchange circulatory system, this water heat exchange circulatory system is connected with the heat exchanging water pipe of heat exchanger by water inlet pipe, be connected with water pump on the heat exchanging water pipe of heat exchanger, the heat exchanging water pipe of heat exchanger is connected with heating installation, heating installation is connected with return pipe, the check valve and the water inlet pipe that connect on the return pipe connect to form, and are connected with generator on the axle of compressor, and this generator is electrically connected with battery by terminal box.
2. the heat converter with generating, storage function according to claim 1, it is characterized in that: heat exchanger is by the main heat exchanger of at least one group of some fins, place the supplementary heat exchanger b of some fins of main heat exchanger both sides of these some fins and the supplementary heat exchanger a of some fins placed on it respectively, pyrogenicity medium transfer tube, heat exchanging water pipe that string is loaded in main heat exchanger, the some fins of supplementary heat exchanger a, b form.
3. the heat converter with generating, storage function according to claim 1 and 2, it is characterized in that: pyrogenicity medium transfer tube, heat exchanging water pipe that string is loaded in main heat exchanger, the some fins of supplementary heat exchanger a, b can be pyrogenicity medium transfer tube by partly or entirely interior pipe, are nested with the composite structure that the heat exchanging water pipe forms thereon.
4. the heat converter with generating, storage function according to claim 1 is characterized in that: the thermoelectric pyrogenicity device of electronics is housed on the water inlet pipe of the water heat exchange circulatory system.
5. the heat converter with generating, storage function according to claim 1 is characterized in that: be provided with filter on the water inlet pipe of the water heat exchange circulatory system, return pipe.
CNA2005100977686A 2005-08-28 2005-08-28 Heat converter with electricity generation and storage function Pending CN1920435A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNA2005100977686A CN1920435A (en) 2005-08-28 2005-08-28 Heat converter with electricity generation and storage function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNA2005100977686A CN1920435A (en) 2005-08-28 2005-08-28 Heat converter with electricity generation and storage function

Publications (1)

Publication Number Publication Date
CN1920435A true CN1920435A (en) 2007-02-28

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Family Applications (1)

Application Number Title Priority Date Filing Date
CNA2005100977686A Pending CN1920435A (en) 2005-08-28 2005-08-28 Heat converter with electricity generation and storage function

Country Status (1)

Country Link
CN (1) CN1920435A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113271041A (en) * 2021-07-21 2021-08-17 新三和(烟台)食品有限责任公司 Compressor refrigeration waste heat recovery system and working method thereof

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113271041A (en) * 2021-07-21 2021-08-17 新三和(烟台)食品有限责任公司 Compressor refrigeration waste heat recovery system and working method thereof

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