A composite system of solar energy utilization and radiation refrigeration
A radiant refrigeration and composite system technology, applied in the field of refrigeration, can solve the problems of low energy density, limiting the application effect of solar energy and radiant refrigeration, occupying a large amount of land resources and space, etc., achieving remarkable results, saving land resources and space, and saving energy. row significant effect
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Embodiment 1
[0036] Such as figure 1 As shown, a combined solar energy utilization and radiation refrigeration system in this embodiment includes a radiation refrigeration system and a solar energy conversion and utilization system.
[0037] The radiation cooling system includes a radiation cooling device and a radiation cooling capacity collection and utilization system; the radiation cooling device mainly includes: a radiation cooling film 11, a light reflection surface 12, a heat shield 13, and a light reflection angle adjustment mechanism 14; the radiation cooling capacity collection and utilization system mainly includes: It includes: a radiant refrigeration circulating water pipeline 15 , a first water pump 16 , a first water tank 17 , a second water pump 31 and a cooling pipeline 32 .
[0038] The solar energy conversion and utilization system includes a solar energy conversion device and an energy utilization system; the solar energy conversion device adopts a solar adsorption refr...
Embodiment 2
[0047] Such as figure 2 As shown, a composite system of solar energy utilization and radiation refrigeration in this embodiment, the radiation refrigeration system is the same as in Embodiment 1, and the solar energy conversion and utilization system adopts a photovoltaic refrigeration system, mainly including: photovoltaic panels 41, cables 42, electric refrigerators 43, electric energy storage device 44 .
[0048] Photovoltaic panels 41 are located on both sides of the radiative cooling device. The radiative cooling device radiates electromagnetic waves to space for cooling and at the same time reflects the solar energy irradiated on its surface to the photovoltaic panel 41. The photovoltaic panel 41 receives direct sunlight and sunlight reflected by the radiative cooling device. And the radiated electromagnetic wave of the radiation refrigeration device body, and convert it into electric energy. The electric energy generated by the photovoltaic panel 41 is transmitted to ...
Embodiment 3
[0054] Such as image 3 As shown, this embodiment is a composite system of solar energy utilization and radiation refrigeration. The radiation refrigeration system is the same as that in Embodiment 1. The solar energy conversion and utilization system adopts a photovoltaic power generation system, which mainly includes: photovoltaic panels 41 , cables 42 , and electric energy storage devices 44 . The electric energy generated by the photovoltaic panel 41 is directly transmitted to the electric energy storage device 44 or the user side through the cable 42. The electric energy storage device 44 stores the electric energy generated by the photovoltaic panel 41 during periods of strong sunlight; During the time period, the electric energy storage device 44 alone or the auxiliary photovoltaic panel 41 supplies power to the user side to realize power supply.
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