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首页> 外文期刊>Acta polytechnica >SOLAR ABSORBER WITH A STRUCTURED SURFACE – A WAY TO INCREASE EFFICIENCY
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SOLAR ABSORBER WITH A STRUCTURED SURFACE – A WAY TO INCREASE EFFICIENCY

机译:具有结构化表面的太阳能吸收器–一种提高效率的方法

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The basic idea of a solar absorber’s thermal gain increase is the keyhole effect utilization during which the radiation is absorbed by multiple reflections on cavity walls. The lattice of pyramidal or conical cavities on the solar absorber surface can be formed to create a structured surface leading to its overall absorptivity increase and to a reduction of the surface absorptivity dependence on the solar radiation incident beam angle changes caused by the daily and annual solar cycles. This contribution concludes the results of simulations of the effect of cavity geometry, geographical position and absorber orientation on its thermal gain with respect to the technological manufacturability of cavities. Furthermore, the real construction of the absorber with a structured surface using laser welding and parallel hydroforming is briefly described.
机译:太阳能吸收器热增益增加的基本思想是锁孔效应的利用,在此期间,辐射被空腔壁上的多次反射吸收。可以在太阳能吸收器表面上形成金字塔形或圆锥形的孔格,以形成结构化的表面,从而导致其整体吸收率增加,并降低表面吸收率,这取决于由日照和年照引起的太阳辐射入射光束角度变化周期。该贡献得出了关于腔的几何可制造性的腔几何形状,地理位置和吸收体取向对其热增益的影响的仿真结果。此外,简要描述了采用激光焊接和平行液压成形的具有结构化表面的吸收器的实际结构。

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