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Simulations of geometry effects and loss mechanisms affecting the photon collection in photovoltaic fluorescent collectors

机译:模拟光伏荧光收集器中光子收集的几何效应和损耗机理的模拟

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Monte-Carlo simulations analyze the photon collection in photovoltaic systems with fluorescent collectors. We compare two collector geometries: the classical setup with solar cells mounted at each collector side and solar cells covering the collector back surface. For small ratios of collector length and thickness, the collection probability of photons is equally high in systems with solar cells mounted on the sides or at the bottom of the collector. We apply a photonic band stop filter acting as an energy selective filter which prevents photons emitted by the dye from leaving the collector. We find that the application of such a filter allows covering only 1% of the collector side or bottom area with solar cells. Furthermore, we compare ideal systems in their radiative limits to systems with included loss mechanisms in the dye, at the mirror, or the photonic filter. Examining loss mechanisms in photovoltaic systems with fluorescent collectors enables us to estimate quality limitations of the used materials and components.
机译:蒙特卡洛模拟分析了带有荧光收集器的光伏系统中的光子收集。我们比较了两种集热器的几何形状:经典设置,在每个集热器侧安装太阳能电池,并在集热器背面覆盖太阳能电池。对于较小比例的收集器长度和厚度,在太阳能电池安装在收集器的侧面或底部的系统中,光子的收集概率同样很高。我们应用了一个光子带阻滤波器作为能量选择滤波器,可防止染料发出的光子离开收集器。我们发现,这种过滤器的应用允许太阳能电池仅覆盖集热器侧面或底部面积的1%。此外,我们将理想系统的辐射极限与染料,反射镜或光子滤光镜中包含损耗机制的系统进行了比较。检查带有荧光收集器的光伏系统中的损耗机制,使我们能够估计所用材料和组件的质量限制。

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