Solar energy comprehensive utilizing system for integrating optothermal mixed power generation and heat utilization

A technology of hybrid power generation and solar energy, applied in the direction of generators/motors, other non-combustion heat generation, electrical components, etc., can solve the problems of low output power and low efficiency of solar photovoltaic power generation, and achieve improved uniformity and enhanced heat transfer , Low operation and maintenance costs

Inactive Publication Date: 2010-10-27
CHONGQING UNIV
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  • Application Information

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Problems solved by technology

On the one hand, this system can solve the problems of low efficiency and low output power of pure solar photovoltaic power generation, and realize the double conversion of solar photovoltaic and thermoelectricity, thereby improving the output of electric energy; The utilization efficiency of heat and electricity can not

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  • Solar energy comprehensive utilizing system for integrating optothermal mixed power generation and heat utilization
  • Solar energy comprehensive utilizing system for integrating optothermal mixed power generation and heat utilization
  • Solar energy comprehensive utilizing system for integrating optothermal mixed power generation and heat utilization

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Embodiment Construction

[0013] The following in conjunction with the drawings in the description figure 1 , figure 2 The specific implementation of the present invention will be described in detail.

[0014] The present invention is mainly taken over by the air outlet of the heat collection system 1, the air outlet header of the heat collection system 2, the photovoltaic cell 3, the heat absorption plate 4, the glass cover 5, the air inlet header of the heat collection system 6, and the air inlet of the heat collection system. 7. Air pipe 8, flat heat pipe side seal 9, air cooling channel outlet pipe 10, air cooling channel outlet header 11, air cooling channel bottom plate 12, flat heat pipe condensation end 13, air cooling channel inlet header 14, air Cooling channel inlet nozzle 15, liquid absorbing core 16, metal fin 17, flat heat pipe evaporating end 18, thermoelectric power generation device 19, small hole 20, heat dissipation fin 21, glass side seal 22, air cooling channel side seal 23 and fan ...

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Abstract

The invention discloses a solar energy comprehensive utilizing system for integrating optothermal mixed power generation and heat utilization, which belongs to the field of solar energy comprehensive utilization projects. The system comprises a solar energy photovoltaic power generation device, a temperature difference power generation device and a heat utilization device, wherein the solar energy photovoltaic power generation device is used for directly converting sunlight into electric energy; the temperature difference power generation device is used for directly converting solar radiant heat and waste heat of a photovoltaic cell into electric energy; the heat utilization device is used for recovering the waste heat of the temperature difference power generation device by using a flat plate type heat tube; and the system has a plurality of functions of photo-electric conversion, thermoelectric conversion, waste heat recycling and the like and can meet double demands of users on electrical load and heat load to maximum extent. Compared with other solar energy heat utilization systems, the system has the characteristics of high efficiency, no moving components and noise, low operation and maintenance cost, high reliability, modular combination the like.

Description

Technical field: [0001] The name of the invention is a solar energy comprehensive utilization system integrating photothermal hybrid power generation and heat utilization, which belongs to the field of solar energy comprehensive utilization engineering. Background technique: [0002] Among the utilization methods of solar energy, solar photovoltaic power generation is currently one of the more common and more researched methods. However, the efficiency of solar photovoltaic power generation is low, generally only 10-20%. Therefore, in the process of solar photovoltaic conversion, on the one hand, it will cause a lot of solar thermal energy waste, and at the same time, the thermal energy that is not converted into electrical energy will also cause the temperature of solar photovoltaic cells to rise. high. According to research, the conversion efficiency of solar photovoltaic cells decreases with increasing temperature, and the waste heat generated by solar photovoltaic cells duri...

Claims

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Application Information

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IPC IPC(8): H02N11/00F24J3/00
Inventor 吴双应肖兰李友荣
Owner CHONGQING UNIV
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