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A review of optical errors and available applications of deflectometry technique in solar thermal power applications

机译:光学误差的回顾与偏转技术在太阳能热发电应用中的可用应用

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The solar collectors represent a considerable part of the concentrated solar power plants, as their shape and quality determine the level of concentration focused on the receiver. Therefore, it is important to evaluate and characterize their quality based upon the influence of the optical errors. This analytical study illustrates the main optical errors that can occur during the manufacturing and the installation processes. In this scope, the Fringe Reflection Technique or Deflectometry, is a robust optical method that evaluates specular surfaces, and widely used and adapted in solar concentrators qualification process. The existing literature about this powerful technique emphasizes only its working principals, and none of them has ever provided a comprehensive detailed review about the different features of this technique. The main objective of this review is to summarize the different encountered optical errors which reduce the solar collectors' efficiency. The following review is also going to elaborate and classify the recent applications of the deflectometry on concentrated solar power technologies. Moreover, the contemporary methodologies and algorithms, constituting the core of this technique, are listed and compared according to their respective advantages and weaknesses. Finally, the recent developments and improvements of the deflectometry technique in other fields of study are mentioned according to their compatibility and practicality in the concentrated solar power field.
机译:太阳能收集器代表了集中式太阳能发电厂的相当一部分,因为它们的形状和质量决定了集中在接收器上的集中度。因此,重要的是基于光学误差的影响来评估和表征其质量。这项分析研究说明了在制造和安装过程中可能发生的主要光学误差。在此范围内,边缘反射技术或偏光法是一种评估镜面表面的可靠光学方法,已广泛用于太阳能聚光器的鉴定过程中。现有的有关这种强大技术的文献仅强调其工作原理,而这些文献都没有提供有关该技术不同功能的全面详细的评论。这篇综述的主要目的是总结遇到的各种光学误差,这些误差会降低太阳能收集器的效率。以下评论还将详细阐述偏转技术在集中式太阳能技术上的最新应用并对其进行分类。此外,根据其各自的优缺点,列出并比较了构成该技术核心的现代方法论和算法。最后,根据偏转技术在聚光太阳能领域的兼容性和实用性,介绍了其在其他研究领域的最新发展和改进。

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