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A comparative study on combustion characteristics of methane, propane and hydrogen fuels in a micro-combustor

机译:微型燃烧器中甲烷,丙烷和氢燃料燃烧特性的比较研究

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The combustion characteristics of three hydrocarbon fuels are investigated so as to study the applicability of fuels in a micro-planar combustor. Experiments are performed to analyze the differences in flame stabilization, temperature distribution of external wall and flammable channel-heights. At different equivalence ratios, it is found that the mixture of hydrogen/air has a much wider and stable flammable range. The reaction positions of methane and propane cases will significantly move downstream along with the increase in mixture flow rate. Under the same chemical energy inputs, the external wall temperature distribution of methane case is most uniform, and the average wall temperature is also the highest among the three fuels. When hydrogen is selected as a fuel, the temperature gradient of the combustor wall becomes very large, which is caused by the flame position near the inlet. The flammable channel-heights of the three fuels in the micro-planar combustor are different. It is observed that stable combustion of methane/air cannot be achieved when the channel-height is less than 2.5 mm. However, the minimum flammable channel-height of propane/air case is 2 mm, and hydrogen/air can be ignited in a 1 mm height micro-combustor.(1) Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了三种烃类燃料的燃烧特性,以研究燃料在微平面燃烧器中的适用性。进行实验以分析火焰稳定性,外壁温度分布和易燃通道高度的差异。发现在不同的当量比下,氢/空气的混合物具有宽得多且稳定的可燃范围。甲烷和丙烷的反应位置将随着混合物流速的增加而显着向下游移动。在相同的化学能输入下,甲烷外壳的外壁温度分布最均匀,三种燃料中的平均壁温也最高。当选择氢作为燃料时,燃烧室壁的温度梯度会变得非常大,这是由于入口附近的火焰位置引起的。微平面燃烧器中三种燃料的易燃通道高度不同。观察到,当通道高度小于2.5mm时,不能实现甲烷/空气的稳定燃烧。但是,丙烷/空气箱的最小易燃通道高度为2 mm,并且氢气/空气可以在高度为1 mm的微型燃烧器中点燃。(1)版权所有(C)2015,Hydrogen Energy Publications,LLC。由Elsevier Ltd.出版。保留所有权利。

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