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Heat loss study of trapezoidal cavity absorbers for linear solar concentrating collector

机译:线性太阳能聚热器梯形腔吸收器的热损失研究

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摘要

There should be minimum heat loss from the absorber to achieve better efficiency of the solar collector. Overall heat loss coefficients of the trapezoidal cavity absorber with rectangular and round pipe were studied in the laboratory. Two identical rectangular pipe absorbers (section size: 100 × 23 mm, thickness: 2.5 mm and length 2170 mm) and two round pipe absorbers (a set of six mild steel round tubes of 16 mm diameter and 2.5 mm thickness brazed together in single layer making 100 mm width) were fabricated. A rectangular and a round pipe were painted with ordinary mat black paint (emissivity at 100℃ = 0.91) and one pipe of each type was coated with black nickel selective surface (emissivity at 100 ℃ = 0.17). Overall heat loss coefficient of the absorber was studied by circulating hot oil through it at different temperatures. The heat loss coefficient was increased with the absorber temperature. The heat loss coefficients for ordinary black coated and selective surface coated round pipe absorbers were varied from 3.5 to 7.5 W/m~2/℃ and 2.7-5.8 W/m~2/℃ respectively. The rectangular pipe section has marginally higher heat loss coefficients as compared to round pipe absorber. Selective surface coating on the absorbers reduced heat loss coefficient significantly by 20-30% as compared to ordinary black coating. The double glass cover also reduced heat loss coefficient by 10-15% as compared to single glass cover. The overall heat loss coefficients were also estimated analytically by parallel plate correlation and cavity correlations. The trend of variation of estimated heat loss coefficients by both methods was similar to experimental values. However, estimated values by cavity correlation were closure and uniformly distributed at all temperature range.
机译:吸收器的热量损失应最小,以实现太阳能收集器的更高效率。在实验室中研究了矩形和圆形管道梯形空腔吸收器的总热损失系数。两个相同的矩形管式吸收器(截面尺寸:100×23 mm,厚度:2.5 mm,长度2170 mm)和两个圆形管式吸收器(一组六个直径为16 mm,厚度为2.5 mm的低碳钢圆形管焊接在一起,单层焊接) (宽度为100毫米)。在矩形管和圆管上涂上普通的黑色哑光漆(在100℃时的发射率= 0.91),并且每种类型的一根管子都涂有黑镍选择性表面(在100℃时的发射率= 0.17)。通过使热油在不同温度下循环通过吸收器,研究了吸收器的总热损失系数。热损失系数随着吸收器温度而增加。普通的黑色涂层和选择性表面涂层的圆管吸收器的热损失系数分别为3.5至7.5 W / m〜2 /℃和2.7-5.8 W / m〜2 /℃。与圆管吸收器相比,矩形管段的热损失系数略高。与普通的黑色涂层相比,吸收器上的选择性表面涂层将热损失系数显着降低了20-30%。与单层玻璃罩相比,双层玻璃罩还将热损失系数降低了10-15%。还通过平行板相关性和腔体相关性来分析估计总的热损失系数。两种方法估计的热损失系数的变化趋势与实验值相似。然而,通过腔相关性的估计值是封闭的,并且在所有温度范围内均一分布。

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