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Illumination characterization of glass and metal secondary concentrator elements in a photovoltaic solar concentration system

机译:光伏太阳能浓缩系统中玻璃和金属二级聚光器元件的照明表征

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Using illumination modeling, we provide a comparison of glass Total Internal Reflection Concentrators (TIRC) and metal Hollow Reflective Concentrators (HRC) used as secondary concentrator elements in a dish-based highconcentration photovoltaic (CPV) system. Comparisons of optical efficiency, flux uniformity, off-axis acceptance angle, and cost are vital to choosing an ideal secondary concentrator element for a CPV system employing multi-junction (MJ) cells. In many CPV systems, a free-form optic or sharp-cornered rectangular TIRC composed of glass is used to increase the geometrical flux concentration at the surface of the MJ cell, and may also serve as homogenizers to mix the light to increase flux uniformity. We have demonstrated in on-sun testing that an electroformed metal HRC can be used in place of a glass TIRC of the same geometry, eliminating the need for polymeric bonding to the MJ cell surface, and providing a side-contact surface pathway for active cooling. Although geometrically equivalent, we show that glass TIRC's achieve superior off-axis performance (higher etendue from surface refraction) and are generally acknowledged to have less degradation than optics with over-coated silver, yet metal HRC's employing over-coated silver are superior in spectral absorption characteristics under high solar flux (no losses from glass absorption or Fresnel surface reflections) and don't require accurate glass pressing into many shapes. To better understand the trade-offs between optical efficiency, off-axis performance, mechanical tolerances, cost and reliability, metal (HRC) and glass (TIRC) tapered funnels are analyzed at the surface of equal irradiance in a Kohler-Illumination concentrator system, and a trade study is presented.
机译:使用照明建模,我们提供玻璃全内反射集线器(TIRC)和金属用作在基于皿高浓度光伏(CPV)系统中的二次集中元件空心反光集线器(HRC)的比较。的光学效率,磁通均匀性,离轴接受角,以及成本比较,以选择一个理想的二次集中元件用于使用多结(MJ)小区的CPV系统是至关重要的。在许多CPV系统中,玻璃构成的自由形式的光学器件或尖角的矩形TIRC被用于增加几何光通量浓度在MJ细胞的表面上,并且也可以作为均化器,以增加磁通量的均匀性的光混合。我们已经证明,在对太阳测试其电铸金属HRC来代替相同的几何形状的玻璃TIRC的使用,消除了聚合物结合到MJ细胞表面的需要,并且提供用于主动冷却的侧接触表面途径。虽然几何学上等效形状,我们表明,玻璃TIRC的实现优越离轴性能(从表面折射较高集光率),并且一般认为具有比具有过包覆银光学降解较少,但金属HRC的使用过的涂布银在光谱优越在高太阳通量的吸收特性(没有从玻璃吸收或菲涅耳表面反射损失),并且不需要准确玻璃压制成许多形状。为了更好地理解的光学效率,离轴性能,机械公差,成本和可靠性,金属(HRC)和玻璃(TIRC)之间的权衡锥形漏斗以相等的辐照度在科勒照明集中器系统中的表面分析,与贸易研究提出。

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