首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >A spectrally splitting photovoltaic-thermal hybrid receiver utilising direct absorption and wave interference light filtering
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A spectrally splitting photovoltaic-thermal hybrid receiver utilising direct absorption and wave interference light filtering

机译:利用直接吸收和波干扰光滤波的光谱分裂光热混合接收器

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We have developed a novel spectrally splitting hybrid solar receiver by combining a simple dichroic filter and a liquid channel as a selective absorbing medium. The combination acts as a band pass filter for silicon solar cells. The geometry can be optimised for any linear concentrator; in this paper we have optimised it for a commercially available linear rooftop micro-concentrator. The optics of the concentrator at its focal region has been investigated using ray tracing. A simple 5-layer dichroic filter made of titanium dioxide and silicon dioxide has been designed, optimised, and fabricated with a focus placed on manufacturing simplicity. It has been shown that such a filter directs 54.5% of the concentrated light to the silicon photovoltaic cells; the Si cells considered in this paper can convert 26.1% of this energy into electricity which is significantly higher than their 20.6% efficiency under the full spectrum. This is due to the fact that 733% of the incident flux is within the cell's relatively high spectral response range, which can be efficiently converted into electricity. The rest of the spectrum can be collected as high temperature heat. This research shows the possibility of employing low-cost direct absorption-dichroic filtering hybrid receivers in liner concentrators. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过结合简单的二向色滤光片和作为选择性吸收介质的液体通道,我们开发了一种新颖的光谱分裂混合太阳能接收器。该组合用作硅太阳能电池的带通滤波器。几何形状可以针对任何线性集中器进行优化。在本文中,我们针对商用线性屋顶微浓缩器对其进行了优化。已经使用射线追踪研究了聚光器在其焦点区域的光学特性。设计,优化和制造了一种简单的由二氧化钛和二氧化硅制成的五层二向色滤光片,其重点是简化制造。已经表明,这种滤光器将54.5%的聚光导向硅光伏电池。本文中考虑的硅电池可以将26.1%的能量转换为电能,远高于其在整个光谱范围内的20.6%效率。这是由于733%的入射通量在电池的较高光谱响应范围内,可以有效地将其转换为电能。光谱的其余部分可以收集为高温热量。这项研究表明在衬里选矿厂中采用低成本直接吸收二向色滤波混合接收器的可能性。 (C)2015 Elsevier B.V.保留所有权利。

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