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CN103615835A - Quintuplet-generation system - Google Patents

Quintuplet-generation system Download PDF

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Publication number
CN103615835A
CN103615835A CN201310552869.2A CN201310552869A CN103615835A CN 103615835 A CN103615835 A CN 103615835A CN 201310552869 A CN201310552869 A CN 201310552869A CN 103615835 A CN103615835 A CN 103615835A
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CN
China
Prior art keywords
heat
heat pump
central controller
inner container
bottom inner
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Granted
Application number
CN201310552869.2A
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Chinese (zh)
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CN103615835B (en
Inventor
顾全军
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Huangshan Chuangxin Equity Investment Group Co.,Ltd.
Original Assignee
HUANGSHAN JINPUSEN NEW ENERGY TECHNOLOGY Co Ltd
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Priority to CN201310552869.2A priority Critical patent/CN103615835B/en
Publication of CN103615835A publication Critical patent/CN103615835A/en
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Publication of CN103615835B publication Critical patent/CN103615835B/en
Expired - Fee Related legal-status Critical Current
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Abstract

The invention discloses a quintuplet-generation system comprising a solar heat collector, a heat pump, a gas burner, a central PLC (programmable logical controller) and a tube valve control workstation. When system heating requirements can be met through the solar heat collector, the central PLC preferentially selects heat supplies from the solar heat collector by controlling the tube valve control workstation; when the solar heat collector fails to supply heat sources, the central PLC controls the heat pump to operate, opens a connecting pipeline of the heat pump through the tube valve control workstation and allows the heat pump to supply the heat; finally, when the heating requirements can be met by neither of the solar heat collector or the heat pump, the central PLC controls the gas burner to operate; meanwhile, the connecting pipeline between the tube valve workstation and the gas burner is controlled to be opened by the central PLC, and the heat is supplied through the gas burner. By the system, energy consumption of the system can be efficiently lowered, energy utilization rate can be improved, and the system can be widely used in modern energy systems.

Description

A kind of five co-feeding systems
Technical field
The present invention relates to intelligent heating cooling field, especially relate to a kind of five co-feeding systems.
Background technology
Along with the day of the energy is becoming tight, the Novel clean energy is by development and utilization widely, and novel energies such as solar energy, geothermal energy, tide energy, air energy is more and more understood by everybody.Due to these energy abundances, and do not pollute, by increasing countries and regions, widelyd popularize and utilize.But this class energy source distribution disperses, they to be concentrated and have been met the needed heat energy of productive life and electric energy, self-operating need to consume a large amount of external energy such as electric energy.How reducing the energy consumption of energy collection equipment self, is also a large problem of research.As Chinese Patent Application No. 201010219555 discloses a kind of quadri-generation system, this system comprises: combustion gas three alliance center and data centers, described combustion gas three alliance centers are connected with data center, and provide cold air and electric energy to described data center, when described combustion gas three alliance centers work, described data center obtains electric energy from combustion gas three alliance centers; Described quadri-generation system only provides information service to outside.It is lower that this quadri-generation system moves required power cost, and can reduce the required carbon emission amount of electric energy.
Summary of the invention
The object of this invention is to provide a kind of five co-feeding systems, solve the existing combined supply system high problem that consumes energy; Electric energy is provided simultaneously, to indoor refrigeration with heat, the functions such as heating are provided for water purifier.
The technical solution adopted for the present invention to solve the technical problems is: a kind of five co-feeding systems, comprise solar thermal collector, heat pump and gas furnace, also be provided with PLC central controller and pipe valve regulation and control work station, when solar thermal collector can meet system for heat request, PLC central controller is preferably selected the heat supply from solar thermal collector by controlling pipe valve regulation and control work station; When solar thermal collector can not provide thermal source, the work of PLC central controller controls heat pump regulates and controls by pipe valve the connecting pipe that work station is opened heat pump, by heat pump heat supply simultaneously; Finally, if solar thermal collector and heat pump all can not meet when the heat request, PLC central controller controls gas furnace work, meanwhile, PLC central controller controls pipe valve regulation and control work station open and gas furnace between connecting pipe, by gas furnace heat supply.
For further utilizing after-heat, also be provided with two inner bag water tanks, the described pair of inner bag water tank comprises the bottom inner container that upper inner-liner that storage is colod-application and heat accumulation are used, and is provided with the upper coil pipe being connected with heat pump refrigerating end in upper inner-liner, is provided with pipe valve and regulates and controls the lower coil pipe that work station is connected in bottom inner container; Between described upper inner-liner and bottom inner container, be provided with thermo-electric generation sheet, the electric energy that thermo-electric generation sheet obtains after voltage stabilizing storage for PLC central controller provides power supply.The electric energy that described thermo-electric generation sheet obtains is meeting under the prerequisite of PLC central controller, can be for providing power supply for his electrical equipment by inversion.
For refrigeration requirement is provided, described upper inner-liner also pipeline is connected with one group of fan coil.
For daily drinking hot water requirement is provided, described bottom inner container is provided with water inlet and delivery port, is also provided with water purifier, is provided with water back in water purifier, and one end of water back is connected with the water inlet of bottom inner container, and the other end is connected with the delivery port of bottom inner container.
For the indoor heating installation that provides, be also provided with floor heating pipeline, the water inlet of floor heating pipeline is connected with the delivery port of bottom inner container, and the delivery port of floor heating pipeline is connected with the water inlet of bottom inner container.
Beneficial effect of the present invention: by two inner bag water tanks, be respectively indoor required low-temperature receiver and the thermal source that provide, simple in structure, compact in design.Described thermal source is by PLC central controller Based Intelligent Control, and thermal source now automatically reduces self energy consumption when meeting daily life requirement, and then the preferential solar energy of saving most now select the heat pump of less energy intensive, last heat source gas now.Described thermo-electric generation chip architecture, can provide required electric energy for PLC central controller, and minimizing system is the demand of electric energy to external world, reduces system energy consumption.Meanwhile, the electric energy that thermo-electric generation obtains can also by after inversion for other electric equipments.
Below with reference to drawings and Examples, the present invention is described in detail.
Accompanying drawing explanation
Fig. 1 is schematic diagram of the present invention.
The specific embodiment
Embodiment, as shown in Figure 1, a kind of five co-feeding systems, comprise solar thermal collector 1, heat pump 2 and gas furnace 3, are also provided with PLC central controller 4 and pipe valve regulation and control work station 5, two inner bag water tanks 6 and fan coil 12, water purifier 13, floor heating pipeline 14.Described pair of described inner bag water tank 6 comprises the bottom inner container 8 that the colod-application upper inner-liner 7 of storage and heat accumulation are used, and is provided with the upper coil pipe 9 being connected with heat pump 2 refrigeration end in upper inner-liner 7, is provided with water inlet and delivery port on upper inner-liner 7, by pipeline, is connected with fan coil 12.On the water outlet end pipeline of upper inner-liner 7, be provided with lock valve, when needs are given room temperature lowering, PLC central controller 4 is controlled lock valve and is opened, heat pump 2 work, cooling water in upper inner-liner 7 is given after indoor refrigeration through fan coil 12, flow back to upper inner-liner, the cooling water in upper inner-liner 7 constantly continues to reduce to upper inner-liner 7 by the flow through refrigerating working medium of upper coil pipe 9 of heat pump again.
In described bottom inner container 8, be provided with the lower coil pipe 10 being connected with pipe valve regulation and control work station 5; Pipeline in pipe valve regulation and control work station 5 is connected with heat-carrying end and the gas furnace 3 of solar thermal collector 1, heat pump 2 respectively, for bottom inner container 8 provides lasting thermal source.
For reduce the consumption of the energy as far as possible, when solar thermal collector 1 can meet system for heat request, PLC central controller 4 switches by the valve of controlling in pipe valve regulation and control work station 5, preferably selects the heat supply from solar thermal collector 1; When solar thermal collector 1 can not provide thermal source, PLC central controller 4 is controlled heat pump 2 work, regulates and controls the connecting pipe that work station 5 is opened heat pump 2, by heat pump 2 heat supplies by pipe valve simultaneously; Finally, if solar thermal collector 1 and heat pump 2 all can not meet when the heat request, PLC central controller 4 is controlled gas furnaces 3 work, and meanwhile, PLC central controller 4 controls that pipe valves regulation and control work stations 5 are opened and the connecting pipe of 3 of gas furnaces, by gas furnace 3 heat supplies.Between described upper inner-liner 7 and bottom inner container 8, be provided with thermo-electric generation sheet 11, the electric energy that thermo-electric generation sheet 11 obtains after voltage stabilizing storage for PLC central controller 4 provides power supply.The electric energy that thermo-electric generation sheet 11 obtains is meeting under the prerequisite of PLC central controller 4, can be for providing power supply for his electrical equipment by inversion.The power supply that the present invention can provide the system of maintaining normally to move for system by the thermo-electric generation of self, the power cost of minimizing system operation.By PLC central controller 4, control 5 automations of pipe valve regulation and control work station and select heat-supplying mode, meeting under the requirement of indoor refrigeration or heating, preferentially select reproducible clean energy resource, reduce the operating cost of system.
Described bottom inner container 8 is provided with water inlet and delivery port, is also provided with water purifier 13, is provided with water back 14 in water purifier 13, and one end of water back 14 is connected with the water inlet of bottom inner container 8, and the other end is connected with the delivery port of bottom inner container 8.By the drinking water in 14 pairs of water purifiers 13 of water back, heat, meet daily drinking-water requirement.The heating-up temperature of described drinking water can be controlled by PLC central controller 4 automatic constant-temperatures, also can control by the switch on water purifier 13.Meanwhile, by pipeline, be connected with bottom inner container 8, for daily life provides hot water.
Also be provided with floor heating pipeline 15, the water inlet of floor heating pipeline 15 is connected with the delivery port of bottom inner container 8, and the delivery port of floor heating pipeline 15 is connected with the water inlet of bottom inner container 8.By PLC central controller 4, control the opening and closing of pipeline valve, meet heating demand.
These five co-feeding systems, the opening and closing by PLC central controller controls system interior conduit valve, meets the requirement of difference in functionality, meanwhile, selectively uses thermal source, reduces system capacity loss.And the thermo-electric generation that utilizes self meets the operation of PLC central controller, effectively reduce the energy consumption of self.

Claims (6)

1. a co-feeding system, comprise solar thermal collector (1), heat pump (2) and gas furnace (3), it is characterized in that: be also provided with PLC central controller (4) and pipe valve regulation and control work station (5), when solar thermal collector (1) can meet system for heat request, PLC central controller (4) is preferably selected the heat supply from solar thermal collector (1) by controlling pipe valve regulation and control work stations (5); When solar thermal collector (1) can not provide thermal source, PLC central controller (4) is controlled heat pump (2) work, regulates and controls work station (5) simultaneously and opens the connecting pipe of heat pump (2), by heat pump (2) heat supply by pipe valve; Finally, when if solar thermal collector (1) and heat pump (2) all can not meet for heat request, PLC central controller (4) is controlled gas furnace (3) work, simultaneously, PLC central controller (4) control that pipe valve regulation and control work stations (5) are opened and gas furnace (3) between connecting pipe, by gas furnace (3) heat supply.
2. five co-feeding systems as claimed in claim 1, it is characterized in that: be also provided with two inner bag water tanks (6), described pair of inner bag water tank (6) comprises the bottom inner container (8) that the colod-application upper inner-liner (7) of storage and heat accumulation are used, in upper inner-liner (7), be provided with the upper coil pipe (9) being connected with heat pump (2) refrigeration end, in bottom inner container (8), be provided with the lower coil pipe (10) being connected with pipe valve regulation and control work stations (5); Between described upper inner-liner (7) and bottom inner container (8), be provided with thermo-electric generation sheet (11), the electric energy that thermo-electric generation sheet (11) obtains provides power supply for PLC central controller (4) after voltage stabilizing storage.
3. five co-feeding systems as claimed in claim 2, is characterized in that: the electric energy that described thermo-electric generation sheet (11) obtains is meeting under the prerequisite of PLC central controller (4), can be for providing power supply for his electrical equipment by inversion.
4. five co-feeding systems as claimed in claim 2, is characterized in that: described upper inner-liner (7) is gone back pipeline and is connected with one group of fan coil (12).
5. five co-feeding systems as claimed in claim 2, it is characterized in that: described bottom inner container (8) is provided with water inlet and delivery port, also be provided with water purifier (13), in water purifier (13), be provided with water back (14), one end of water back (14) is connected with the water inlet of bottom inner container (8), and the other end is connected with the delivery port of bottom inner container (8).
6. five co-feeding systems as claimed in claim 5, it is characterized in that: be also provided with floor heating pipeline (15), the water inlet of floor heating pipeline (15) is connected with the delivery port of bottom inner container (8), and the delivery port of floor heating pipeline (15) is connected with the water inlet of bottom inner container (8).
CN201310552869.2A 2013-11-08 2013-11-08 A kind of Quintuplet-generatiosystem system Expired - Fee Related CN103615835B (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114094936A (en) * 2021-10-29 2022-02-25 北京北机机电工业有限责任公司 solar energy storage system
CN115060020A (en) * 2022-06-29 2022-09-16 上海诺通新能源科技有限公司 Cold, heat, steam, electricity quadruple supply system and its working method

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CN201318824Y (en) * 2008-12-04 2009-09-30 浙江艾尔柯环境设备有限公司 Compound energy heat-exchanging water tank
JP2011112272A (en) * 2009-11-26 2011-06-09 Kawasaki Thermal Engineering Co Ltd Method and device for heating and cooling
CN102130632A (en) * 2010-01-15 2011-07-20 能原科技股份有限公司 energy regeneration system
EP2503276A1 (en) * 2011-03-24 2012-09-26 A 2 B Accorroni E.G. S.R.L. A radiator for ambient heating.
CN102798173A (en) * 2011-05-26 2012-11-28 广东万和新电气股份有限公司 Heating device combining solar energy, heat pump and gas water heater
CN103090456A (en) * 2012-11-29 2013-05-08 海尔集团公司 Multi-energy combined hot water system and multi-energy control switching method
CN203223971U (en) * 2013-05-06 2013-10-02 上海工程技术大学 Multi-energy intelligent coupling system
CN203249307U (en) * 2013-04-22 2013-10-23 福州斯狄渢电热水器有限公司 An intelligently controlled solar, geothermal and gas complementary heating system
CN103361242A (en) * 2013-07-03 2013-10-23 谢春梅 Heat pump assisted electric boiler heat storage and heating brewing distillation system
CN203533972U (en) * 2013-11-08 2014-04-09 黄山金普森新能源科技股份有限公司 Five-combined supply system

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201318824Y (en) * 2008-12-04 2009-09-30 浙江艾尔柯环境设备有限公司 Compound energy heat-exchanging water tank
JP2011112272A (en) * 2009-11-26 2011-06-09 Kawasaki Thermal Engineering Co Ltd Method and device for heating and cooling
CN102130632A (en) * 2010-01-15 2011-07-20 能原科技股份有限公司 energy regeneration system
EP2503276A1 (en) * 2011-03-24 2012-09-26 A 2 B Accorroni E.G. S.R.L. A radiator for ambient heating.
CN102798173A (en) * 2011-05-26 2012-11-28 广东万和新电气股份有限公司 Heating device combining solar energy, heat pump and gas water heater
CN103090456A (en) * 2012-11-29 2013-05-08 海尔集团公司 Multi-energy combined hot water system and multi-energy control switching method
CN203249307U (en) * 2013-04-22 2013-10-23 福州斯狄渢电热水器有限公司 An intelligently controlled solar, geothermal and gas complementary heating system
CN203223971U (en) * 2013-05-06 2013-10-02 上海工程技术大学 Multi-energy intelligent coupling system
CN103361242A (en) * 2013-07-03 2013-10-23 谢春梅 Heat pump assisted electric boiler heat storage and heating brewing distillation system
CN203533972U (en) * 2013-11-08 2014-04-09 黄山金普森新能源科技股份有限公司 Five-combined supply system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114094936A (en) * 2021-10-29 2022-02-25 北京北机机电工业有限责任公司 solar energy storage system
CN115060020A (en) * 2022-06-29 2022-09-16 上海诺通新能源科技有限公司 Cold, heat, steam, electricity quadruple supply system and its working method
CN115060020B (en) * 2022-06-29 2025-03-25 上海诺通新能源科技有限公司 Cooling, heating, steam and electricity quadruple supply system and its working method

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Effective date of registration: 20160323

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Address before: Hangzhou City, Zhejiang province 311404 Fuyang City Xin Deng Zhen Xiang Xi Cun Shiling

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Address after: 245000 88 Tunxi Meilin Road, Mount Huangshan Economic Development Zone, Tunxi District, Huangshan City, China

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Address before: 245499 6 new and high-tech electronic information industrial parks in Xiuning County Economic Development Zone, Huangshan City, Anhui.

Patentee before: Huangshan Jinhui Energy Science and Technology Co.,Ltd.

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Address after: 245000 88 Tunxi Meilin Road, Mount Huangshan Economic Development Zone, Tunxi District, Huangshan City, China

Patentee after: Huangshan Chuangxin Equity Investment Group Co.,Ltd.

Address before: 245000 88 Tunxi Meilin Road, Mount Huangshan Economic Development Zone, Tunxi District, Huangshan City, China

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