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Extended EDC local extinction model accounting finite-rate chemistry for MILD combustion

机译:扩展的EDC局部灭绝模型,说明了MILD燃烧的有限速率化学反应

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An extended Eddy Dissipation Concept (EDC) local extinction model is proposed to take into account the effects of finite-rate chemistry, normally occurring in Moderate to Intense Low oxygen Dilution (MILD) combustion, on the extinction limits. Local extinction is predicted when the local fine structure residence time is below a local critical value that is determined theoretically in the present study. The proposed model has been evaluated against experimental data reported for CH4/H-2 jet-in-hot and diluted coflow flames. Comparison with the standard EDC extinction model is also presented. Results show that prediction of extinction threshold in MILD combustion conditions is attainable only through the application of the extended EDC extinction model on a well-resolved turbulence-chemistry interaction field. The effect of penetrating surrounding air into the reaction zone with subsequent flame cooling at downstream is also captured by the proposed extinction model. Despite its simplicity, the extended EDC extinction model is able to describe many features of localized extinction under MILD combustion as well as conventional combustion conditions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了扩展的涡耗散概念(EDC)局部灭绝模型,以考虑到通常在中度至强烈的低氧稀释(MILD)燃烧中发生的有限速率化学对灭绝极限的影响。当局部精细结构的停留时间低于本研究理论确定的局部临界值时,可预测局部灭绝。已针对报道的CH4 / H-2热喷射和稀释同流火焰的实验数据对提出的模型进行了评估。还提出了与标准EDC消光模型的比较。结果表明,仅在扩展的EDC消光模型在良好解析的湍流-化学相互作用场上应用的情况下,才能实现对MILD燃烧条件下的消光阈值的预测。所提出的消光模型还捕获了将周围空气渗入反应区并在下游进行后续火焰冷却的效果。尽管简单,扩展的EDC消光模型仍能够描述MILD燃烧以及常规燃烧条件下的局部消光的许多特征。 (C)2015 Elsevier Ltd.保留所有权利。

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