Multi-functional solar energy utilization system
A solar energy and multi-functional technology, applied in the field of solar energy utilization systems, can solve the problems of low solar energy utilization efficiency, single solar energy utilization, and single function of solar energy utilization equipment, and achieve the effect of improving utilization rate, improving utilization efficiency, and saving electric energy
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Embodiment 1
[0019] Example 1: figure 1 Shown is a schematic diagram of the functional module structure of the multifunctional solar energy utilization system provided by the present invention, as figure 1 As shown, the multifunctional solar energy utilization system includes a photoelectric conversion module, a thermoelectric conversion module, a heat absorption module, a purification module and a reactor.
[0020] Wherein, the photoelectric conversion module includes a solar cell assembly and an electric storage element (not shown in the figure), and the solar cell assembly includes a solar cell panel, which can receive sunlight irradiation, convert solar energy into electrical energy by using the principle of photoelectricity generation, and store it in In the electric storage element, the electric storage element is a storage battery;
[0021] The thermoelectric conversion module includes a thermoelectric power generation sheet and a power storage element, such as figure 1 As shown, ...
Embodiment 2
[0024] Embodiment 2: This embodiment is a specific application on the basis of Embodiment 1. In this embodiment, water is used as the fluid for heating and purification, and its working process is as follows figure 2 As shown, when sunlight irradiates the solar cell assembly 1, light energy is converted into electrical energy according to the photoelectric effect, and stored in the electric storage element (not shown in the figure), realizing the photoelectric conversion described in the present invention function; at the same time, when light irradiates the solar cell assembly, about 80% of the light exists in the solar cell assembly 1 in the form of heat, causing its surface temperature to rise; the thermoelectric power generation sheet 2 located on the back of the solar cell assembly 1 includes thermoelectric conversion material, the thermoelectric conversion material takes the solar cell module 1 as the hot end, and the water flow in the reactor 3 as the cold end, so that ...
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