首页> 外文会议>Fifth Conference on Thermophotovoltaic Generation of Electricity; Sep 16-19, 2002; Rome, Italy >A parametric design study of InGaAs micro-thermophotovoltaic cells coupled with various emitters at near and far spacing
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A parametric design study of InGaAs micro-thermophotovoltaic cells coupled with various emitters at near and far spacing

机译:InGaAs微热光伏电池与近,远间距的各种发射极耦合的参数设计研究

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A design study was conducted to determine the effect of various parameters on the performance of InGaAs thermophotovoltaic devices. The electrical power output density of the device, and the device efficiency were analyzed by considering different emitter temperatures and materials, various receiver band gap levels, and a range of gap spacings between emitter and receiver. The far spacing model, or spacing of magnitude much greater than the wavelength of the emitted radiation, was based on classical radiative heat transfer equations and standard photovoltaic cell equations. The close spacing model, or spacing with a magnitude on the order of magnitude of the wavelength of the emitted radiation, was based on the fluctuation-dissipation theorem whereby the energy is transmitted by evanescent waves between the emitter and receiver. The analytical models used realistic property values for both the receiver and the emitter, and the results show the superiority of tungsten and rhenium as emitters for the far spacing case. At close spacing, silicon carbide exceeds the performance of the refractory metals down to the spacing limited by current technology. However, if spacing control technology advances and smaller gaps become feasible, rhenium emitter devices could provide a significant increase in power density, and with similar efficiencies as the far spacing case.
机译:进行了一项设计研究,以确定各种参数对InGaAs热光电器件性能的影响。通过考虑不同的发射器温度和材料,各种接收器带隙水平以及发射器和接收器之间的间隙间距范围,分析了器件的电功率输出密度和器件效率。远距模型或距辐射辐射波长大得多的量距模型是基于经典辐射传热方程式和标准光伏电池方程式的。紧密间距模型或间距大小等于发射辐射波长的数量级,是基于涨落耗散定理的,其中能量通过e逝波在发射器和接收器之间传输。分析模型对接收器和发射器都使用了实际的属性值,结果表明,钨和rh在远距离情况下作为发射器具有优越性。在接近的间距下,碳化硅的性能超过了耐火金属的性能,直至达到当前技术限制的间距。但是,如果间隔控制技术得到发展并且较小的间隙变得可行,则emitter发射器器件可以显着提高功率密度,并具有与远距离情况相似的效率。

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