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Performance assessment of catalytic combustion-driven thermophotovoltaic platinum tubular reactor

机译:催化燃烧驱动的热铂管式反应器的性能评估

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This study is aimed to enhance the overall efficiency of micro-thermophotovoltaic (micro-TPV) reactor by collecting radiations from emitter and combustion chamber. However, the proper fuel deployment and fluid design for the micro-TPV reactor are strongly associated with combustion stability and radiant intensity of the micro-TPV reactor. Therefore, the system performance of the micro-TPV reactor was investigated with regard to combustion, thermal radiation, and electrical output. A platinum tube with a ring of perforated holes was utilised with specific fuel deployment, that is, hydrogen employed in the inner chamber for facilitating induction of methane catalytic combustion in the outer chamber. Because of the inherently high diffusivity of hydrogen, the heat and radicals could be delivered to the other chamber through the perforated holes; in this manner, the methane catalytic combustion could be successfully initiated. The flame-stabilizing mechanism of micro-TPV platinum tubular reactor was addressed and interpreted through the simplified simulation of segmented platinum tubular reactor with a gap. The effective power efficiency of the TPV system was 3.24% when ERin-H2 = 0.7 and ERout-cH4 = 0.9. With a mirror and a recirculating tube, effective power efficiency was enhanced to 6.32%.
机译:这项研究旨在通过收集来自发射极和燃烧室的辐射来提高微热光伏(micro-TPV)反应堆的整体效率。但是,微型TPV反应堆的正确燃料部署和流体设计与微型TPV反应堆的燃烧稳定性和辐射强度密切相关。因此,对微型TPV反应器的系统性能进行了燃烧,热辐射和电输出方面的研究。带有穿孔环的铂管用于特定的燃料部署,即在内腔中使用氢气以促进在外腔中诱发甲烷催化燃烧。由于氢固有的高扩散性,热量和自由基可以通过带孔的孔传递到另一个腔室。以这种方式,可以成功地引发甲烷催化燃烧。通过对带间隙的分段式铂管式反应器的简化仿真,对微型TPV铂管式反应器的火焰稳定机理进行了阐述。当ERin-H2 = 0.7和ERout-cH4 = 0.9时,TPV系统的有效功率效率为3.24%。使用镜子和再循环管,有效功率效率提高到6.32%。

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