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Refractive Secondary Concentrators for Solar Thermal Applications

机译:太阳能热折光二次聚光器

摘要

The NASA Glenn Research Center is developing technologies that utilize solar energy for various space applications including electrical power conversion, thermal propulsion, and furnaces. Common to all of these applications is the need for highly efficient, solar concentration systems. An effort is underway to develop the innovative single crystal refractive secondary concentrator, which uses refraction and total internal reflection to efficiently concentrate and direct solar energy. The refractive secondary offers very high throughput efficiencies (greater than 90%), and when used in combination with advanced primary concentrators, enables very high concentration ratios (10,0(X) to 1) and very high temperatures (greater than 2000 K). Presented is an overview of the refractive secondary concentrator development effort at the NASA Glenn Research Center, including optical design and analysis techniques, thermal modeling capabilities, crystal materials characterization testing, optical coatings evaluation, and component testing. Also presented is a discussion of potential future activity and technical issues yet to be resolved. Much of the work performed to date has been in support of the NASA Marshall Space Flight Center's Solar Thermal Propulsion Program. The many benefits of a refractive secondary concentrator that enable efficient, high temperature thermal propulsion system designs, apply equally well to other solar applications including furnaces and power generation systems such as solar dynamics, concentrated thermal photovoltaics, and thermionics.
机译:美国国家航空航天局格伦研究中心正在开发将太阳能用于各种空间应用的技术,包括电力转换,热推进和熔炉。所有这些应用的共同点是需要高效的太阳能聚集系统。正在努力开发创新的单晶折射二次聚光器,该聚光器利用折射和全内反射来有效地聚集和引导太阳能。折射二次透镜具有非常高的吞吐效率(大于90%),并且与先进的一次浓缩器结合使用时,可以实现非常高的浓缩比(10,0(X)到1)和非常高的温度(大于2000 K) 。本文概述了美国宇航局格伦研究中心屈光二次聚光器的开发工作,包括光学设计和分析技术,热建模能力,晶体材料表征测试,光学涂层评估和组件测试。还介绍了潜在的未来活动和尚未解决的技术问题的讨论。迄今为止,已完成的大部分工作都在支持NASA马歇尔太空飞行中心的太阳热推进计划。折射式二次聚光器的许多优点使高效,高温的热推进系统设计成为可能,并且同样适用于其他太阳能应用,包括熔炉和发电系统,例如太阳能动力学,聚光光伏和热电子学。

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