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Conversion of parabolic trough mirror shape results measured in different laboratory setups

机译:在不同实验室设置中测量的抛物线槽镜形状结果的转换

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摘要

Shape accuracy of mirror panels for parabolic trough solar collectors has a significant impact on the optical performance of the collectors in a solar power plant and is therefore carefully assessed by test laboratories and manufacturers. Relevant deformation is induced by gravity or mounting forces, so that shape accuracy data measured in different setups cannot be compared. This paper presents a method for conversion of shape measured in a vertical laboratory setup into data for a horizontal laboratory setup. Characteristic deformation matrices for parabolic trough mirror panels of RP3 geometry are determined by deflectometric shape measurements on various mirror panels and by validated finite element analyses (FEA). The resulting root mean square (rms) of measured slope deviation difference (i.e. the gravity induced deformation) between vertical and horizontal setup is on average 2.4 mrad for inner mirrors and 1.25 mrad for outer mirrors loosely positioned on a frame. Measured data from vertical setup, transformed by such characteristic deformation matrices into horizontal shape results, differ by less than 0.2 mrad in rms slope deviation value from data measured in horizontal setup. Whereas the presented approach to convert shape accuracy measurement results is suitable for the calculation of rms values, some of the analyzed mirror samples show differences in local slope deviation values larger than the deflectometric measurement uncertainty. The amount of deviation depends on details of the accuracy of the positioning of the mirrors on the measurement frame and is affected by the fixation and associated mounting forces at the pads.
机译:用于抛物线槽式太阳能集热器的镜面板的形状精度对太阳能发电厂中集热器的光学性能有重要影响,因此需要由测试实验室和制造商仔细评估。重力或安装力会引起相关的变形,因此无法比较在不同设置下测得的形状精度数据。本文提出了一种将在垂直实验室设置中测量的形状转换为水平实验室设置的数据的方法。 RP3几何形状的抛物线槽镜面板的特征变形矩阵是通过在各种镜面板上进行偏折形状测量并通过有效的有限元分析(FEA)确定的。垂直和水平设置之间测得的斜度偏差差(即重力引起的变形)的最终均方根(rms)对于内部镜而言,平均为2.4毫拉德,对于松散地放置在框架上的外部镜,则为1.25毫拉德。垂直设置的测量数据(通过这种特征变形矩阵转换为水平形状的结果)的有效值斜率偏差值与水平设置的数据相差不到0.2 mrad。尽管所提出的转换形状精度测量结果的方法适用于均方根值的计算,但某些分析的镜面样本显示出的局部斜率偏差值的差异大于偏转测量不确定度。偏差量取决于反射镜在测量框架上的定位精度的细节,并且受垫上固定和相关安装力的影响。

著录项

  • 来源
    《Solar Energy》 |2015年第1期|396-406|共11页
  • 作者单位

    German Aerospace Center (DLR), Linder Hoehe, 51147 Cologne, Germany;

    German Aerospace Center (DLR), Linder Hoehe, 51147 Cologne, Germany;

    German Aerospace Center (DLR), Linder Hoehe, 51147 Cologne, Germany;

    German Aerospace Center (DLR), Linder Hoehe, 51147 Cologne, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Parabolic trough; Mirror shape; Deflectometry; Finite element analysis;

    机译:抛物线槽镜面形状偏转法;有限元分析;

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