A volumetric air heat absorber with multi-cavity surfaces for solar thermal power generation
A technology of solar thermal power generation and heat absorber, which is applied in the direction of solar thermal power generation, solar heat collector, solar heat collector safety, etc., and can solve the problem of thermal ablation of porous media materials, uneven temperature distribution of The effects of heat transfer efficiency of working medium and other issues can be achieved to reduce radiation heat loss, improve thermal response effect, and improve subsequent working ability
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Embodiment 1
[0030] Such as figure 1 As shown, the present invention includes a secondary concentrator 10 for concentrating solar energy, a heat absorbing carrier 5 , a thermal insulation body 1 and a metal container 3 forming a closed heat absorber cavity 7 . The front end of the metal container 3 is open, and the front end is connected to the rear end of the secondary concentrator 10 . The outer side of the metal container 3 and the secondary concentrator 10 is provided with a thermal insulation body 1 . The metal container 3 is provided with an air intake pipe 2, an air outlet pipe 6, a light-absorbing cavity 9 and a front end sealing plate 14, and the air intake pipe 2 communicates with the inner cavity of the metal container; the light-absorbing cavity 9 is arranged in the inner cavity of the metal container 3, and The secondary concentrator 10 is connected, the light-absorbing cavity 9 is facing the opening direction of sunlight energy projection, and the front end of the light-abso...
Embodiment 2
[0036] Such as figure 2 As shown, its structure is similar to that of Embodiment 1, the only difference is that a gap L can be left between the front end of the metal container 3 and the tail of the secondary concentrator 10, which ensures that the energy flow distribution on the front surface of the metal container 3 is even .
Embodiment 3
[0038] Such as Figure 4As shown, its structure is similar to that of Embodiment 1, except that the secondary concentrator 10 used to gather solar energy is replaced by a composite cavity 15 arranged in the metal container 3, on the basis of the curved surface geometry of the composite cavity 15 Several light-absorbing cavities 9 are arranged uniformly or according to the distribution of sunlight.
[0039] Such as Figure 5-7 As shown, the geometric shape of the light-absorbing cavity 9 can be a cylindrical cavity, an inverted cone cavity and a combined cavity, and the combined cavity is formed by combining an inverted cone structure and a cylindrical cavity.
[0040] The present invention adopts a high-temperature-resistant metal container 3 to form a closed volume, so that the internal air working medium can work under relatively high pressure and high temperature conditions, effectively improving the follow-up working ability of the working medium; A number of light-absor...
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