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A new algorithm for obtaining the critical tube diameter and intercept factor of parabolic trough solar collectors

机译:获取抛物槽式太阳能集热器临界管径和截距因子的新算法

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摘要

A new algorithm for obtaining the critical tube diameter and intercept factor of parabolic trough solar collectors (PTCs) under the condition of tube alignment error has been developed theoretically, which, compared with the Monte Carlo Ray Tracing (MCRT) method, reduces the computing time remarkably. The results produced by the proposed method comply very well with the results obtained by MCRT. The critical tube diameters for different alignment errors can be precisely calculated using the algorithm, which can also be used to explain well the variation of optical efficiency. Effects of structural parameters on the optical performance are also discussed comprehensively. It is revealed that the offset direction that is perpendicular to the focus-edge connection line is most likely to cause rays-escaping. There exists an aperture width range (and also focal length range) in which the optical efficiency decreases with increasing offset angle, which is contrary to the conclusion presented in previous literature that the effects of X-direction offset (a = 0 degrees) is greater than that in Y-direction (a = 90 degrees). The proposed algorithm establishes the foundation for further geometric study on the coupling effects of multi-errors on PTCs' performance, and can also be used for quick calculation and analysis in practice. (C) 2017 Published by Elsevier Ltd.
机译:从理论上讲,提出了一种新的在管对准误差条件下获取抛物槽式太阳能集热器的临界管径和截距因子的算法,与蒙特卡洛射线跟踪法相比,该算法减少了计算时间。显着所提出的方法产生的结果与MCRT获得的结果非常吻合。可以使用该算法精确计算出不同对准误差的临界管直径,也可以用来很好地解释光学效率的变化。还全面讨论了结构参数对光学性能的影响。揭示出垂直于聚焦边缘连接线的偏移方向最有可能导致光线逃逸。存在一个光阑宽度范围(以及焦距范围),其中光效率随着偏移角的增加而降低,这与先前文献中得出的结论相反,即X方向偏移(a = 0度)的影响更大比Y方向(a = 90度)大。该算法为进一步研究多元误差对PTC性能的耦合效应奠定了基础,也可用于实际中的快速计算与分析。 (C)2017由Elsevier Ltd.发布

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