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Theory and design of line-to-point focus solar concentrators with tracking secondary optics

机译:跟踪二次光学的线对点聚焦太阳能聚光器的理论和设计

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The two-stage line-to-point focus solar concentrator with tracking secondary optics is introduced. Its design aims to reduce the cost per m~2 of collecting aperture by maintaining a one-axis tracking trough as the primary concentrator, while allowing the thermodynamic limit of concentration in 2D of 215× to be significantly surpassed by the implementation of a tracking secondary stage. The limits of overall geometric concentration are found to exceed 4000× when hollow secondary concentrators are used, and 6000× when the receiver is immersed in a dielectric material of refractive index n = 1.5. Three exemplary collectors, with geometric concentrations in the range of 500-1500× are explored and their geometric performance is ascertained by Monte Carlo ray-tracing. The proposed solar concentrator design is well-suited for large-scale applications with discrete, flat receivers requiring concentration ratios in the range 500-2000×.
机译:介绍了具有跟踪二次光学功能的两阶段线对点聚焦太阳能集中器。其设计旨在通过保持单轴跟踪槽作为主要集中器来降低每m〜2收集孔的成本,同时允许通过实施跟踪辅助来显着超越2D浓度的热力学极限215x阶段。当使用空心二次聚光器时,发现总几何浓度的极限超过4000倍,而当接收器浸入折射率n = 1.5的介电材料中时,则达到6000倍。探索了三个示例性收集器,其几何浓度在500-1500x范围内,并通过蒙特卡洛射线追踪确定了它们的几何性能。拟议的太阳能集中器设计非常适合具有离散,扁平接收器的大型应用,这些接收器需要集中比在500-2000倍之间。

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