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Transient Thermal Analysis of a Refractive Secondary Solar Concentrator

机译:折射二次太阳能聚光器的瞬态热分析

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摘要

A secondary concentrator is an optical device that accepts solar energy from a primary concentrator and further intensifies and directs the solar flux. The refractive secondary is one such device; fabricated from an optically clear solid material that can efficiently transmit the solar energy by way of refraction and total internal reflection. When combined with a large state-of-the-art rigid or inflatable primary concentrator, the refractive secondary enables solar concentration ratios of 10,000 to 1. In support of potential space solar thermal power and propulsion applications, the NASA Glenn Research Center is developing a single-crystal refractive secondary concentrator for use at temperatures exceeding 2000K. Candidate optically clear single-crystal materials like sapphire and zirconia are being evaluated for this application. To support this evaluation, a three-dimensional transient thermal model of a refractive secondary concentrator in a typical solar thermal propulsion application was developed. This paper describes the model and presents thermal predictions for both sapphire and zirconia prototypes. These predictions are then used to establish parameters for analyzing and testing the materials for their ability to survive thermal shock and stress.
机译:次级聚光器是一种光学设备,可从初级聚光器接收太阳能,并进一步增强和引导太阳光通量。屈光次要就是这样一种装置。由光学透明的固态材料制成,可以通过折射和全内反射有效地传输太阳能。当与大型先进的刚性或可充气初级聚光器结合使用时,折射次级玻璃可实现10,000:1的太阳能集光比。为了支持潜在的空间太阳能热能和推进应用,NASA格伦研究中心正在开发一种单晶折射二次聚光器,用于超过2000K的温度。正在为该应用评估候选光学透明的单晶材料,例如蓝宝石和氧化锆。为了支持此评估,开发了典型太阳能热推进应用中的折射式二次聚光器的三维瞬态热模型。本文介绍了该模型,并提供了蓝宝石和氧化锆原型的热预测。然后将这些预测用于建立参数,以分析和测试材料在热冲击和应力下的承受能力。

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