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首页> 外文期刊>Chemical Engineering Science >Combustion characteristics and performance evaluation of premixed methane/air with hydrogen addition in a micro-planar combustor
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Combustion characteristics and performance evaluation of premixed methane/air with hydrogen addition in a micro-planar combustor

机译:微平面燃烧室中加氢的甲烷/空气预混燃烧特性及性能评估

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Combustion performance of premixed methane/air with hydrogen addition in a micro-planar combustor is numerically investigated, aiming to extend the application of various fuels in a micro-thermophotovoltaic system. The simulation results show that hydrogen addition has significant effect on raising methane reaction rate and flame stability. With the increase of hydrogen mass fraction, the location of the flame shifts toward the combustor inlet gradually, and the temperature gets a steady growth. For the micro-combustor with a channel height of 3 mm, it is found that the flame of pure methane is far away from inlet, which does not meet the basic working requirement of the micro-thermophotovoltaic system. However, the combustor wall temperature will be significantly improved when a small amount of hydrogen is added into the mixture, which is mainly due to the extension of flammability range. Along with the increase of H-2 addition ratio, both the total radiant energy and the proportion of usable radiant energy to total input chemical energy increase dramatically, which brings a significant improving of electricity output and system efficiency. (C) 2015 Elsevier Ltd. All rights reserved.
机译:数值研究了在微平面燃烧器中甲烷/空气与氢气混合后的燃烧性能,旨在扩展微热光伏系统中各种燃料的应用。模拟结果表明,添加氢气对提高甲烷反应速率和火焰稳定性有显着影响。随着氢气质量分数的增加,火焰的位置逐渐移向燃烧室入口,温度稳定增长。对于通道高度为3 mm的微型燃烧器,发现纯甲烷的火焰距离进气口较远,这不能满足微型热光电系统的基本工作要求。但是,当向混合物中添加少量氢气时,燃烧室壁温将得到显着改善,这主要是由于可燃性范围的扩大。随着H-2的添加比例的增加,总辐射能和可用辐射能占总输入化学能的比重都急剧增加,从而带来了电力输出和系统效率的显着提高。 (C)2015 Elsevier Ltd.保留所有权利。

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