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首页> 外文期刊>Journal of solar energy engineering >Optical Design of a Novel Two-Stage Solar Trough Concentrator Based on Pneumatic Polymeric Structures
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Optical Design of a Novel Two-Stage Solar Trough Concentrator Based on Pneumatic Polymeric Structures

机译:基于气动聚合物结构的新型两级太阳能槽式聚光器的光学设计

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摘要

An innovative concept for fabricating solar trough concentrators based on pneumatic polymer mirrors supported on precast concrete frames is presented. Optical aberration is corrected by means of a secondary specular reflector in tandem with a primary cylindrical concentrator. The optimal design is formulated for maximum solar flux concentration. The Monte Carlo ray-tracing technique is applied to determine the effect of reflective surface errors and structural beam deformations on the performance of the combined primary and secondary concentrating system. The numerical results are validated with field measurements on a 49.4 M length, 7.9 m width sun-tracking prototype system. Theoretical maximum solar concentration ratio is 151 suns; the measured one with a flat secondary reflector was 55 suns.
机译:提出了一种创新的概念,该技术用于制造预制在混凝土框架上的,基于气动聚合物镜的太阳能槽式聚光器。光学像差通过与主圆柱面聚光器串联的副镜面反射镜进行校正。最佳设计是针对最大太阳光通量浓度制定的。蒙特卡洛射线追踪技术用于确定反射表面误差和结构光束变形对组合的一次和二次聚光系统性能的影响。数值结果通过在49.4 M长,7.9 m宽的太阳跟踪原型系统上的现场测量得到验证。理论上最大太阳集中度为151个太阳;使用平的第二反射镜测得的光线为55个太阳。

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