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TPV power generation system using a high temperature metal radiant burner

机译:使用高温金属辐射燃烧器的TPV发电系统

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Interest has grown in micro-combined heat and power (micro-CHP). Thermophotovoltaic (TPV) generation of electricity in fuel-fired furnaces is one of the micro-CHP technologies that are attracting technical attention. Previous investigations have shown that a radiant burner that can efficiently convert fuel chemical energy into radiation energy is crucial to realize a practical TPV power system. In this work, we developed a TPV power generation system using a gas-fired metal radiant burner. The burner consists of a high temperature alloy emitter, which could have an increased emissivity at short wavelengths and low emissivity at long wavelengths. The metal emitter is capable of bearing high temperatures of interest to fuel-fired TPV power conversion. GaSb TPV cells were tested in the combustion-driven radiant source. Electric output characteristics of the TPV cells were investigated at various operating conditions. The electric power output of the TPV cells was demonstrated to be promising. At an emitter temperature of 1185 degrees C, an electric power density of 0.476 W/cm(2) was generated by the GaSb cells. It is shown that the metal emitter is attractive and could be applied to practical fuel-fired TPV power systems.
机译:利息已经在微结合的热量和功率(Micro-CHP)中生长。蒸汽伏特(TPV)燃料炉中的电力发电是一种吸引技术关注的微型CHP技术之一。以前的研究表明,可以将燃料化学能量转换成辐射能量的辐射燃烧器至关重要,以实现实用的TPV电力系统。在这项工作中,我们开发了一种使用燃气金属辐射燃烧器的TPV发电系统。燃烧器由高温合金发射器组成,该发射器可以在短波长的短波长和低发射率下具有增加的发射率。金属发射器能够承载对燃料TPV电力转换的高度感兴趣的影响。在燃烧驱动的辐射源中测试Gasb TPV电池。在各种操作条件下研究了TPV细胞的电输出特性。表明TPV细胞的电力输出是有前途的。在1185℃的发射极温度下,通过气体细胞产生0.476W / cm(2)的电力密度。结果表明,金属发射器具有吸引力,可应用于实用的燃料燃烧的TPV电力系统。

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