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Investigation on the Solar Absorption Property of the Nanoporous Alumina Sheet for Solar Application

机译:太阳能用纳米多孔氧化铝板的太阳吸收性能研究

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In order to improve the absorption performance of the aluminum sheet for solar application, the nanoporous alumina sheets with the pore diameters of 30 nm and 400 nm were prepared by the anodic oxidation method. The absorption properties of the nanoporous alumina sheets under different solar radiation intensity were studied and compared with the conventional polished aluminum sheet. The results showed that the average absorptivity of the aluminum sheets decreased with the increase of the radiation intensity. When the radiation intensity was 100 W/m 2 , the nanoporous alumina sheet with the 30 nm pore diameter had the highest average solar absorptivity of 0.39, which was 18% higher than that of the nanoporous alumina sheet with 400 nm pore diameter, and 50% higher than that of the polished aluminum sheet. The maximum instantaneous absorption efficiency of the nanoporous alumina sheet with 30 nm pore diameter was found at 0.92 when the radiation intensity was 100 W/m 2 . The testing results indicated that the nanoporous alumina sheet with the 30 nm pore diameter performed the best compared with the other two aluminum sheets. By error propagation analysis, the relative error of the average amount of heat absorption and the average absorptivity were acceptable.
机译:为了提高用于太阳能的铝片的吸收性能,通过阳极氧化法制备了孔径为30nm和400nm的纳米多孔氧化铝片。研究了纳米多孔氧化铝片在不同太阳辐射强度下的吸收性能,并与常规抛光铝片进行了比较。结果表明,铝片的平均吸收率随辐射强度的增加而降低。当辐射强度为100 W / m 2时,孔径为30 nm的纳米多孔氧化铝片材的平均日吸收率最高,为0.39,比孔径为400 nm的纳米多孔氧化铝片材的平均日吸收率高18%。 %比抛光铝板高。当辐射强度为100W / m 2时,发现孔径为30nm的纳米多孔氧化铝片的最大瞬时吸收效率为0.92。测试结果表明,与其他两个铝板相比,孔径为30 nm的纳米多孔氧化铝板表现最好。通过误差传播分析,平均吸热量和平均吸收率的相对误差是可以接受的。

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