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Large eddy simulation of lean turbulent hydrogen-enriched methane-air premixed flames at high Karlovitz numbers

机译:高卡洛维兹数时稀湍流富氢甲烷-空气预混火焰的大涡模拟

摘要

Large eddy simulation (LES) is employed to investigate the effects of hydrogen within the fuel mixture for lean CH4–H2 turbulent premixed flames in the distributed reaction zone (high Karlovitz number). The subfilter combustion term representing the interaction between turbulence and chemistry is modelled using the partially stirred reactor (PaSR) model, along with complex chemistry using a skeletal mechanism based on the GRI-MECH3.0, to handle mixtures up to 60% of hydrogen in volume. The influence of hydrogen enrichment at high turbulence levels is studied by means of the local flame structure, and the assessment of species formation inside the flame. Results show that with higher hydrogen content, the flame displays a higher degree of wrinkling and is shorter because of a higher turbulent flame speed. The local structure of the flame is mainly affected by the turbulence but differential diffusion effects still play a role in the flame front aspect, especially when hydrogen addition becomes important. Concerning the formation of intermediate species and pollutants, by increasing the amount of hydrogen in the fuel mixture at fixed equivalence ratio, more emissions are reported. This is expected as the mixture reactivity (heat release) increases when substituting methane by hydrogen in the unburned mixture.
机译:大涡模拟(LES)用于研究混合反应区中稀薄的CH4–H2湍流预混火焰(高卡洛维兹数)时燃料混合物中氢的影响。使用部分搅拌反应器(PaSR)模型对代表湍流和化学之间相互作用的子过滤器燃烧项进行建模,并使用基于GRI-MECH3.0的骨架机制对复杂化学进行建模,以处理氢中高达60%的混合物体积。通过局部火焰结构和火焰内部物种形成的评估,研究了高湍流水平下氢富集的影响。结果表明,氢含量较高时,由于湍流火焰速度较高,火焰起皱程度较高,火焰较短。火焰的局部结构主要受湍流的影响,但差异扩散效应仍在火焰前部方面发挥作用,特别是当加氢变得重要时。关于中间物质和污染物的形成,通过以固定的当量比增加燃料混合物中的氢含量,据报道有更多的排放物。当未燃烧的混合物中用氢代替甲烷时,混合物的反应性(放热)增加,这是可以预期的。

著录项

  • 作者

    Cicoria D; Chan CK;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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