首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Optimization of receiver height in compound parabolic collector by optical analysis and experimental method
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Optimization of receiver height in compound parabolic collector by optical analysis and experimental method

机译:光学分析和实验法优化复合抛物型收集器中的接收器高度

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摘要

The paper presents the method of finding an optimized location of a tubular receiver for the compound parabolic collector (CPC) with a low acceptance angle of 6 degrees. Due to low acceptance angle, the reflected rays concentrate below the common focus of parabola in a definite pattern. Graphical ray tracing approach (GRT) is implemented to execute the optical analysis with and without manufacturing error in a parabolic shape. This analysis is performed on the collector-receiver combinations by varying receiver height below the focus and they are compared on the basis of the utilized area for collector and receiver and projection ratios. The ideal cases in which the collector-receiver combinations contribute a high utilization and projection ratio are selected and verified with the observations of camera target method (CTM) performed on the actual CPC set-up. This set-up is built for a water heater application to validate the results obtained from the GRT and CTM observations. Surface areal irradiance (SAI) method is used to determine the net heat added to the receiver at different heights. The optimum height at which the CPC performed with higher thermal efficiency is concluded as the best location for the tubular receiver for the presented CPC. (C) 2017 Elsevier GmbH. All rights reserved.
机译:本文介绍了用低接受角为6度的化合物抛物线收集器(CPC)的管状接收器的优化位置的方法。由于验收角低,反射光线以明确的图案精确低于抛物线的共同焦点。实现图形射线跟踪方法(GRT)以在抛物线形状中执行和不具有制造错误的光学分析。通过在聚焦下方的接收器高度下方的接收器高度来执行该分析,并且它们基于集电器和接收器的利用区域和投影比进行比较。选择集电器接收器组合贡献高利用率和投影比的理想情况并验证在实际CPC设置上执行的相机目标方法(CTM)的观察。该设置是为热水器应用而构建的,以验证从GRT和CTM观察获得的结果。表面面积辐照度(SAI)方法用于确定在不同高度的接收器中添加的净热量。以较高的热效率执行的CPC的最佳高度被结束为所呈现的CPC的管状接收器的最佳位置。 (c)2017年Elsevier GmbH。版权所有。

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