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Simple Methods to Approximate CPC Shape to Preserve Collection Efficiency

机译:估算CPC形状以保持收集效率的简单方法

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摘要

The compound parabolic concentrator (CPC) is the most efficient reflective geometry to collect light to an exit port. Anyway, to allow its actual use in solar plants or photovoltaic concentration systems, a tradeoff between system efficiency and cost reduction, the two key issues for sunlight exploitation, must be found. In this work, we analyze various methods to model an approximated CPC aimed to be simpler and more cost-effective than the ideal one, as well as to preserve the system efficiency. The manufacturing easiness arises from the use of truncated conic surfaces only, which can be realized by cheap machining techniques. We compare different configurations on the basis of their collection efficiency, evaluated by means of nonsequential ray-tracing software. Moreover, due to the fact that some configurations are beam dependent and for a closer approximation of a real case, the input beam is simulated as nonsymmetric, with a nonconstant irradiance on the CPC internal surface.
机译:复合抛物面聚光器(CPC)是最有效的反射几何体,用于将光收集到出射口。无论如何,为了使其能够在太阳能发电厂或光伏集中系统中实际使用,必须在系统效率与成本降低之间进行权衡,这是开发阳光的两个关键问题。在这项工作中,我们分析了各种方法来模拟近似的CPC,以使其比理想的CPC更简单,更具成本效益,并保持系统效率。仅通过使用截锥形表面即可获得制造的便利性,这可以通过廉价的加工技术来实现。我们根据收集效率对不同配置进行比较,并通过非连续射线跟踪软件对其进行了评估。此外,由于某些配置与光束有关,并且为了更接近实际情况,因此将输入光束模拟为非对称,并且CPC内表面的辐照度为非恒定。

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