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Effects of hydrogen addition on combustion characteristics of a methane fueled MILD model combustor

机译:加氢对甲烷燃料MILD模型燃烧器燃烧特性的影响

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Combined with need of the carbon emissions, the feasibility of Moderate or Intense Low oxygen Dilution (MILD) combustion fueled with hydrogen/methane blends needs to be investigated. This paper discusses the pollutant emissions, the stable operating range and the flame morphology for a jet-induced MILD model combustor. The hydrogen/methane volume ratios range 0:10 to 5:5. The NOx emissions are less than 5 ppm@15O-2 when the hydrogen content is less than 50 by volume in the atmospheric conditions. The calculation using chemical reactor network (CRN) model demonstrates that the effect of heat loss on NOx emissions increases as the adiabatic combustion temperature increases, which is consistent with the experimental results. The maximum OH* signal intensity increased at higher hydrogen content, especially when the hydrogen content exceeds 30 by volume. Due to the increase in turbulent burning velocity and the enhancement in the reaction intensity, the reaction zones shrink with increasing hydrogen content. In addition, with increasing hydrogen content, the stable operation range of the combustor becomes narrower, and the stable combustion is not maintained when the hydrogen content exceeds 50 by volume. The findings of the paper help to further understand the effect of hydrogen content on the formation of MILD combustion in the jet-induced combustor. (C) 2022 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:结合碳排放的需要,需要研究以氢/甲烷混合物为燃料的中度或强烈低氧稀释 (MILD) 燃烧的可行性。本文讨论了射流诱导MILD型燃烧器的污染物排放、稳定工作范围和火焰形貌。氢气/甲烷体积比范围为 0:10 至 5:5。在大气条件下,当氢含量小于50%时,NOx排放量小于ppm@15 50%O-2。利用化学反应器网络(CRN)模型计算表明,随着绝热燃烧温度的升高,热损失对NOx排放的影响增加,与实验结果一致。氢含量越高,OH*信号强度越大,特别是当氢含量超过30%时。由于湍流燃烧速度的增加和反应强度的提高,反应区随着氢含量的增加而收缩。此外,随着含氢量的增加,燃烧器的稳定运行范围变窄,当含氢量超过体积的50%时,不能保持稳定燃烧。本文的研究结果有助于进一步理解氢含量对射流诱导燃烧器中MILD燃烧形成的影响。(c) 2022 Hydrogen Energy Publications LLC.,由爱思唯尔有限公司出版。保留所有权利。

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