CN103900143A - Solar dual power complementary efficient comfortable electric heating system capable of accumulating and conserving energy - Google Patents

Solar dual power complementary efficient comfortable electric heating system capable of accumulating and conserving energy Download PDF

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Publication number
CN103900143A
CN103900143A CN201410141411.2A CN201410141411A CN103900143A CN 103900143 A CN103900143 A CN 103900143A CN 201410141411 A CN201410141411 A CN 201410141411A CN 103900143 A CN103900143 A CN 103900143A
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energy
solar
electric heater
electric
storage
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CN201410141411.2A
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王辉
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Abstract

A solar dual power complementary efficient comfortable electric heating system capable of accumulating and conserving energy is characterized by comprising a solar photovoltaic power generation system 1, a dual power complementary efficient energy-saving electric heater 2, an organic phase-change energy accumulating system 3 and an energy-conserving temperature control system 4. The solar photovoltaic power generation system composed of a plurality of solar photovoltaic power generation panels 4 does not need inverters and outputs direct current. The dual power complementary efficient energy-saving electric heater 2 comprises an alternate-current 220V electric heater and a direct-current 24V electric heater with an energy accumulation device 6. The organic phase-change energy accumulating system 3 comprises an energy accumulator 7 which is arranged inside the direct-current 24V electric heater with the energy accumulation device 6. The energy-conserving temperature control system 4 comprises a temperature control terminal 8 and a temperature control host 9. The energy accumulator 7 is controlled by a programmable program to only work in low ebb periods or period with sufficient solar energy, low-cost heat energy is fully utilized to reduce heating cost, the solar energy is controlled to optimally generate power to supply heat , and the mains is controlled to assist in heat supplying.

Description

The two energy-conservation comfortable electric heating systems of electric complementary high efficiency energy storage of solar energy
Technical field:
The present invention is the two energy-conservation comfortable electric heating systems of electric complementary high efficiency energy storage of a kind of solar energy, belongs to energy-saving environmental protection device.
Background technology:
In recent years, atmosphere pollution is more and more serious, State Council, local governments at all levels launch respectively various energy-saving low-carbon product support policies, it is more clearly the task of top priority that heating coal changes electricity, but currently marketed various electric heating product can only use civil power, and energy-conservation not, accumulation of energy small product size is large, Maintenance Difficulty, it is uncomfortable that user feels, solar energy power generating is used for heating not only needs a large amount of spaces, cost of investment is excessive again, in order to reduce atmosphere pollution, it is imperative that heating coal changes electricity, currently marketed product can not meet energy-conserving and environment-protective and user's needs, therefore, the good product that people are badly in need of addressing these problems comes out.
Summary of the invention:
We have solved the problems referred to above that current product exists at " the two energy-conservation comfortable electric heating systems of electric complementary high efficiency energy storage of solar energy " of research and development.
The two energy-conservation comfortable electric heating system systems of electric complementary high efficiency energy storage of this solar energy comprise solar photovoltaic generation system, two electric complementary type efficient electric energy-saving air heater, organic phase-change energy-storage system, four parts of energy-saving temperature-control system.
Native system makes full use of solar energy, the low-cost energy of paddy electricity, and it is effectively accumulated and supplements heating, the energy-efficient electric heating system itself adopting just can be energy-conservation more than 30%, add remote telephone temperature control system, the flexible energy-saving temperature-control systems such as central authorities' temperature control system, energy-saving effect can be more remarkable, user is simple to operate, maintenance is little, safeguard simple, efficient electric energy-saving air heater is taking infra-red radiation heat radiation as main, with building decoration, family's living furniture combines together, a tractor serves several purposes, energy storage equipment does not take up space, household heating system economy attractive in appearance, warm invisible, warm as sunlight of user sensation, whole day temperature fluctuation is little, air cleaner, healthiness.
The present invention realizes like this, the two energy-conservation comfortable electric heating systems of electric complementary high efficiency energy storage of solar energy, it is characterized in that the two energy-conservation comfortable electric heating systems of electric complementary high efficiency energy storage of this solar energy comprise solar photovoltaic generation system 1, two electric complementary type efficient electric energy-saving air heaters 2, organic phase-change energy- storage system 3, 4 four parts of energy-saving temperature-control system, solar photovoltaic generation system 1 is made up of polylith solar energy power generating plate 4, native system does not need inverter, direct current output, two electric complementary type efficient electric energy-saving air heaters 2 comprise that alternating current 220V type electric heater 5 and direct current 24V add energy storage equipment electric heater 6 two parts, organic phase-change energy-storage system 3 comprises storage body 7, storage body 7 is arranged on the inside that direct current 24V adds energy storage equipment electric heater 6, energy-saving temperature-control system 4 comprises temperature controller terminal 8, temperature controller main frame 9, adopt 7 of programme-control storage bodies able to programme working with low-valley interval or sufficient period of solar energy, make full use of low cost heat energy, reduce heating cost, and can ensure the equilibrium of whole day heating temperature, can not produce sometimes hot and sometimes cold problem.In the time of architectural application, according to the size of institute's calorific requirement, proportioning solar photovoltaic generation system 1, direct current 24V adds the capacity of energy storage equipment electric heater 6 and alternating current 220V type electric heater 5, what solar photovoltaic generation system 1 sent be electrically connected to direct current 24V adds on energy storage equipment electric heater 6, alternating current 220V type electric heater 5 is connected on civil power, temperature controller terminal 8, temperature controller main frame 9 is controlled whole system operation, when night when civil power low ebb by the heating of 220V civil power energy storage, the low power consumption period in the morning finishes, solar energy power generating plate 4 voltages do not reach settings, by the heat supply of dispelling the heat of the storage body 7 of low-valley interval.Solar energy power generating plate 4 voltages reach the preferential solar powered heating of settings, in the time that the dusk, solar energy was not enough, by storage body 7 heat supply of dispelling the heat, reach energy-saving effect, alternating current 220V type electric heater 5 has two effects, and the one, the energy storage of generating heat when low power consumption, the 2nd, when solar energy is not enough, supplement heating.
Brief description of the drawings
Fig. 1 is system composition schematic diagram of the present invention.
Fig. 2 is solar photovoltaic generation system schematic diagram of the present invention.
Fig. 3 is two electric complementary efficient electric energy-saving air heater schematic diagram of the present invention.
Fig. 4 is A-A, the B-B profile of Fig. 3.
Fig. 5 is energy-saving temperature-control system temperature controller terminal schematic diagram of the present invention.
Fig. 6 is energy-saving temperature-control system temperature controller main frame schematic diagram of the present invention.
Wherein
1, solar photovoltaic generation system 2, two electric complementary type efficient electric energy-saving air heater
3, organic phase-change energy-storage system 4, solar energy power generating plate
5, alternating current 220V type electric heater 6, direct current 24V add energy storage equipment electric heater
7, storage body 8, temperature controller terminal 9, temperature controller main frame
Detailed description of the invention
The present invention implements like this, the two energy-conservation comfortable electric heating systems of electric complementary high efficiency energy storage of solar energy, it is characterized in that the two energy-conservation comfortable electric heating systems of electric complementary high efficiency energy storage of this solar energy comprise solar photovoltaic generation system 1, two electric complementary type efficient electric energy-saving air heaters 2, organic phase-change energy- storage system 3, 4 four parts of energy-saving temperature-control system, solar photovoltaic generation system 1 is made up of polylith solar energy power generating plate 4, native system does not need inverter, direct current output, two electric complementary type efficient electric energy-saving air heaters 2 comprise that alternating current 220V type electric heater 5 and direct current 24V add energy storage equipment electric heater 6 two parts, organic phase-change energy-storage system 3 comprises storage body 7, storage body 7 is arranged on the inside that direct current 24V adds energy storage equipment electric heater 6, energy-saving temperature-control system 4 comprises temperature controller terminal 8, temperature controller main frame 9, adopt 7 of programme-control storage bodies able to programme working with low-valley interval or sufficient period of solar energy, make full use of low cost heat energy, reduce heating cost, and can ensure the equilibrium of whole day heating temperature, can not produce sometimes hot and sometimes cold problem.In the time of architectural application, according to the size of institute's calorific requirement, proportioning solar photovoltaic generation system 1, direct current 24V adds the capacity of energy storage equipment electric heater 6 and alternating current 220V type electric heater 5, what solar photovoltaic generation system 1 sent be electrically connected to direct current 24V adds on energy storage equipment electric heater 6, alternating current 220V type electric heater 5 is connected on civil power, temperature controller terminal 8, temperature controller main frame 9 is controlled whole system operation, when night when civil power low ebb by the heating of 220V civil power energy storage, the low power consumption period in the morning finishes, solar energy power generating plate 4 voltages do not reach settings, by the heat supply of dispelling the heat of the storage body 7 of low-valley interval.Solar energy power generating plate 4 voltages reach the preferential solar powered heating of settings, in the time that the dusk, solar energy was not enough, by storage body 7 heat supply of dispelling the heat, reach energy-saving effect, alternating current 220V type electric heater 5 has two effects, and the one, the energy storage of generating heat when low power consumption, the 2nd, when solar energy is not enough, supplement heating.
Specific implementation process, needs to carry out through following steps:
1, prepare various accessories;
2, according to the polylith solar energy power generating plate 4 in the different processing and fabricating solar photovoltaic generation systems 1 of model;
3, organic phase-change energy-storage system 3 comprises storage body 7;
4, add energy storage equipment electric heater 6 according to the different processing of model according to alternating current 220V type electric heater 5 and direct current 24V in the two electric complementary type efficient electric energy-saving air heaters 2 of the different processing of model, storage body 7 is arranged on to the inside that direct current 24V adds energy storage equipment electric heater 6;
5, according to temperature controller terminal 8, temperature controller main frame 9 in the different processing of model energy-saving temperature-control system 4;
6, the polylith solar energy power generating plate 4 in solar photovoltaic generation system 1 is arranged on to roof;
7, the alternating current 220V type electric heater 5 in two electric complementary type efficient electric energy-saving air heaters 2 and direct current 24V being added to energy storage equipment electric heater 6 is arranged on indoor;
8, the temperature controller terminal 8 in energy-saving temperature-control system 4, temperature controller main frame 9 are arranged on indoor;
9, solar photovoltaic generation system 1, two electric complementary type efficient electric energy-saving air heater 2, organic phase-change energy- storage system 3,4 four parts of energy-saving temperature-control system are linked together;
10, test, the normal operation of each function.

Claims (1)

1. the two energy-conservation comfortable electric heating systems of electric complementary high efficiency energy storage of solar energy, it is characterized in that the two energy-conservation comfortable electric heating systems of electric complementary high efficiency energy storage of this solar energy comprise solar photovoltaic generation system (1), two electric complementary type efficient electric energy-saving air heaters (2), organic phase-change energy-storage system (3), (4) four parts of energy-saving temperature-control system, solar photovoltaic generation system (1) is made up of polylith solar energy power generating plate (4), native system does not need inverter, direct current output, two electric complementary type efficient electric energy-saving air heaters (2) comprise that alternating current 220V type electric heater (5) and direct current 24V add energy storage equipment electric heater (6) two parts, organic phase-change energy-storage system (3) comprises storage body (7), storage body (7) is arranged on the inside that direct current 24V adds energy storage equipment electric heater (6), energy-saving temperature-control system (4) comprises temperature controller terminal (8), temperature controller main frame (9), adopt programme-control storage body able to programme (7) only working with low-valley interval or sufficient period of solar energy, make full use of low cost heat energy, reduce heating cost, and can ensure the equilibrium of whole day heating temperature, can not produce sometimes hot and sometimes cold problem.In the time of architectural application, according to the size of institute's calorific requirement, proportioning solar photovoltaic generation system (1), direct current 24V adds the capacity of energy storage equipment electric heater (6) and alternating current 220V type electric heater (5), what solar photovoltaic generation system (1) sent be electrically connected to direct current 24V adds on energy storage equipment electric heater (6), alternating current 220V type electric heater (5) is connected on civil power, temperature controller terminal (8), temperature controller main frame (9) is controlled whole system operation, when night when civil power low ebb by the heating of 220V civil power energy storage, the low power consumption period in the morning finishes, solar energy power generating plate (4) voltage does not reach settings, by storage body (7) the heat radiation heat supply of low-valley interval.Solar energy power generating plate (4) voltage reaches the preferential solar powered heating of settings, in the time that dusk solar energy is not enough, by storage body (7) heat radiation heat supply, reach energy-saving effect, alternating current 220V type electric heater (5) has two effects, the one, the energy storage of generating heat when low power consumption, the 2nd, when solar energy is not enough, supplement heating.
CN201410141411.2A 2014-04-10 2014-04-10 Solar dual power complementary efficient comfortable electric heating system capable of accumulating and conserving energy Pending CN103900143A (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104807062A (en) * 2015-04-27 2015-07-29 江苏昂彼特堡散热器有限公司 Regenerative electric heater directly applying solar photovoltaic heating mode
CN104896564A (en) * 2015-06-15 2015-09-09 王辉 Multi-energy combined supply heating system
CN105258202A (en) * 2015-11-22 2016-01-20 镇江市双利光电科技有限公司 Solar heater
CN105299736A (en) * 2015-11-22 2016-02-03 镇江市双利光电科技有限公司 Solar oil heater
CN109489219A (en) * 2018-09-26 2019-03-19 珠海格力电器股份有限公司 Photovoltaic household appliance control method, device, controller and PV air-conditioner

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Publication number Priority date Publication date Assignee Title
CN2205925Y (en) * 1994-04-08 1995-08-23 潘荣哲 Efficient electric energy-saving air heater
US5811758A (en) * 1994-09-16 1998-09-22 Choi; Young Taik Under floor heating system of a heat accumulating type and a method for storing thermal energy
CN201401863Y (en) * 2009-02-02 2010-02-10 田海金 Photoelectric energy-storage super-conduction solar energy radiating rib
CN201621770U (en) * 2009-12-29 2010-11-03 汪沛 Electricity storage type electric radiator device
CN102353085A (en) * 2011-07-26 2012-02-15 芜湖市科华新型材料应用有限责任公司 Wind power, photoelectricity and power grid complementary variable power energy storage and heat supply system and running method thereof
CN202303610U (en) * 2011-09-26 2012-07-04 丁樟富 Solar battery direct power supply and storage battery power supply type dual-purpose electric heater
CN102679584A (en) * 2012-05-10 2012-09-19 芜湖美的太阳能科技有限公司 Photovoltaic heating and conventional mains supply heating complementary controlling system for water heater and method
CN102761289A (en) * 2011-04-25 2012-10-31 周心怡 Solar photovoltaic heating device and heat supply system with same

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2205925Y (en) * 1994-04-08 1995-08-23 潘荣哲 Efficient electric energy-saving air heater
US5811758A (en) * 1994-09-16 1998-09-22 Choi; Young Taik Under floor heating system of a heat accumulating type and a method for storing thermal energy
CN201401863Y (en) * 2009-02-02 2010-02-10 田海金 Photoelectric energy-storage super-conduction solar energy radiating rib
CN201621770U (en) * 2009-12-29 2010-11-03 汪沛 Electricity storage type electric radiator device
CN102761289A (en) * 2011-04-25 2012-10-31 周心怡 Solar photovoltaic heating device and heat supply system with same
CN102353085A (en) * 2011-07-26 2012-02-15 芜湖市科华新型材料应用有限责任公司 Wind power, photoelectricity and power grid complementary variable power energy storage and heat supply system and running method thereof
CN202303610U (en) * 2011-09-26 2012-07-04 丁樟富 Solar battery direct power supply and storage battery power supply type dual-purpose electric heater
CN102679584A (en) * 2012-05-10 2012-09-19 芜湖美的太阳能科技有限公司 Photovoltaic heating and conventional mains supply heating complementary controlling system for water heater and method

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104807062A (en) * 2015-04-27 2015-07-29 江苏昂彼特堡散热器有限公司 Regenerative electric heater directly applying solar photovoltaic heating mode
CN104896564A (en) * 2015-06-15 2015-09-09 王辉 Multi-energy combined supply heating system
CN105258202A (en) * 2015-11-22 2016-01-20 镇江市双利光电科技有限公司 Solar heater
CN105299736A (en) * 2015-11-22 2016-02-03 镇江市双利光电科技有限公司 Solar oil heater
CN109489219A (en) * 2018-09-26 2019-03-19 珠海格力电器股份有限公司 Photovoltaic household appliance control method, device, controller and PV air-conditioner

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