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Optimization of solar linear Fresnel reflector system with secondary concentrator for uniform flux distribution over absorber tube

机译:具有次级聚光器的太阳能线性菲涅尔反射镜系统的优化,以使吸收器管上的通量分布均匀

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Solar linear Fresnel reflectors (LFR) are attractive because of low cost and optimal utilization of land area. They provide high concentration ratio when used in conjunction with secondary concentrators. A pilot plant of LFR system with 154 m(2) of primary mirror field installed at Vallipuram, India has been considered for the present analysis. This type of collectors give rise to high variation of solar radiation flux in the circumferential direction of absorber for the cases with fixed aim line of primary mirrors. In the present work, the concept of variable aim lines for primary mirrors is introduced to defocus and spread the radiation flux in a more uniform manner over the absorber. In particular, both the tilt angles and the radii of curvature of the individual Fresnel mirrors are modified to obtain a better flux uniformity. In addition, a novel segmented parabolic secondary concentrator profile has also been developed, which in conjunction with the variable aim line concept leads to a high optical efficiency of 76.4% and a coefficient of flux variation value of 0.13. On the other hand, 74.9% and 70.9% of optical efficiencies along with 0.17 and 0.33 values of coefficient of variation are obtained with more commonly employed compound parabolic concentrator and trapezoidal concentrator profiles respectively. (C) 2017 Elsevier Ltd. All rights reserved.
机译:太阳能线性菲涅尔反射镜(LFR)具有低成本和土地利用的优势,因此颇具吸引力。当与二次浓缩器结合使用时,它们可提供高浓缩比。对于本分析,已经考虑了在印度瓦尔利普兰安装了154 m(2)主镜场的LFR系统的中试工厂。对于具有主镜固定瞄准线的情况,这种类型的收集器在吸收体的圆周方向上产生很大的太阳辐射通量变化。在当前的工作中,引入了用于主镜的可变瞄准线的概念,以使辐射通量散焦并以更均匀的方式散布在吸收体上。特别地,各个菲涅耳镜的倾斜角和曲率半径均被修改以获得更好的通量均匀性。此外,还开发了一种新颖的分段抛物线形二次聚光器轮廓,结合可变瞄准线概念可实现76.4%的高光学效率和0.13的通量变化系数。另一方面,分别使用更常用的复合抛物面聚光器和梯形聚光器配置文件,可以获得74.9%和70.9%的光效率以及0.17和0.33的变异系数值。 (C)2017 Elsevier Ltd.保留所有权利。

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