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High Contrast Grating based Thermal Emitters for Portable Thermophotovoltaic Systems

机译:用于便携式热光电系统的基于高对比度光栅的热发射器

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The quest for the development of portable thermophotovoltaic (TPV) systems has been a growing interest due to the ability to achieve high power and energy densities using hydrocarbon based fuels. Recent studies based on intermediate filters and photonic crystals have shown significant improvement in system efficiencies for combustion driven and solar-based TPV systems. The key goal is to engineer directionally and spectrally selective thermal emitters ideally matched to the solar cell. Here, a high contrast grating based thermal emitter using silicon as a grating material on a quartz substrate is proposed which is suitable for integrating to GaSb solar cell based thermophotovoltaic systems powered by microcombustor. The intrinsic properties of quartz substrate filter the below bandgap (greater than 4.5 μm) radiation in the infrared region. The silicon gratings are optimized (period = 2.4 μm, duty cycle = 40 % and thickness = 0.55 μm), to provide transmission only for photons with wavelengths lower than 1.8 μm thus inhibiting below bandgap radiation of GaSb cell. The spectrally tuned emitter structure shows transmission of more than 70% of convertible photons (above the bandgap) and reflection of 80% of unconvertible photons (below bandgap) back to the combustor thus reducing the heat losses in the photovoltaic conversion and increasing the combustion system temperature there by contributing to overall increase in TPV system efficiency.
机译:由于能够使用烃基燃料实现高功率和高能量密度,因此对便携式热光伏(TPV)系统的开发需求已引起越来越多的关注。基于中间滤波器和光子晶体的最新研究表明,燃烧驱动和基于太阳能的TPV系统的系统效率有了显着提高。关键目标是设计与太阳能电池理想匹配的定向和光谱选择性热辐射器。在此,提出了一种在硅衬底上使用硅作为光栅材料的基于高对比度光栅的热发射器,该发射器适用于集成到由微型燃烧器提供动力的基于GaSb太阳能电池的热光伏系统中。石英基板的固有特性可过滤红外区域中的以下带隙(大于4.5μm)辐射。对硅光栅进行了优化(周期= 2.4μm,占空比= 40%,厚度= 0.55μm),以仅对波长小于1.8μm的光子提供透射,从而抑制了GaSb单元的带隙辐射。光谱调谐的发射器结构显示了超过70%的可转换光子(在带隙以上)的传输和80%的不可转换光子(在带隙以下)的反射回燃烧器,从而减少了光伏转换过程中的热损失并增加了燃烧系统有助于TPV系统效率的整体提高。

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