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BEAM SPLITTING SYSTEM FOR THE DEVELOPMENT OF A CONCENTRATING LINEAR FRESNEL SOLAR HYBRID PV/T COLLECTOR

机译:用于集中式线性菲涅尔太阳能混合PV / T集电器开发的光束分割系统

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Investigations are underway around the world to make solar energy more competitive in the energy market. One approach is to develop solar hybrid photovoltaic/thermal (PV/T) technologies which allow for maximal utilization of incident sunlight by integrating a PV cell and a thermal receiver in the same collector. In this study, we will present a new PV/T design based on a compact linear Fresnel concentrator (LFC) coupled with a spectral beam-splitter. The beam-splitting approach avoids the efficiency drop in the PV cell while still obtaining high temperature thermal output. The design is analyzed numerically with respect to a worth factor which considers the intrinsically higher economic value of electrical energy at ~3 times thermal energy. In order to predict optical performance, the geometry of this hybrid concentrating collector, which achieves 10-15 suns concentration, is modeled at various incident angles using the ray tracing software Zemax. Three different PV cells are considered (Si, GaAs and GaInP/GaAs). The reported spectral response of these cells is used to determine the optimal wavelength split for the fraction of the solar spectrum directed to the various PV cells. The results indicate that such designs can achieve 20-51% greater value of the power outputs - PV electrical power plus heat produced - relative to a stand-alone PV system.
机译:调查正在全世界正在进行中,使太阳能在能源市场中更具竞争力。一种方法是开发太阳能混合光伏/热(PV / T)技术,其允许通过在同一收集器中积分PV电池和热接收器来最大利用入射的太阳光。在这项研究中,我们将基于与光谱分束器耦合的紧凑线性菲涅耳集中器(LFC)来提出新的PV / T设计。光束分离方法避免了PV电池中的效率下降,同时仍获得高温热输出。在数量上对设计进行了数量分析了,该价值是在〜3次热能下的电能的本质上更高的经济价值。为了预测光学性能,使用光线跟踪软件Zemax在各种入射角模型的这种混合浓缩收集器的几何形状在各种入射角模型。考虑三种不同的PV电池(Si,GaAs和GaInP / GaAs)。报告这些细胞的谱响应用于确定针对各种PV电池的太阳光谱部分的最佳波长分开。结果表明,这种设计可以实现20-51%的功率输出值 - PV电力加热量 - 相对于独立式PV系统。

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