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Large eddy simulation of bluff body flames close to blow-off using an Eulerian stochastic field method

机译:使用欧拉随机场方法对吹口附近的钝体火焰进行大涡模拟

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摘要

This paper reports on Large Eddy Simulation (LES) of turbulent premixed methane/air flames approaching blow-off. The study focuses on a stable flame, and on a flame just prior to blow-off, both stabilized by the Cambridge bluff-body burner. For turbulence-chemistry interaction, a model based on transported probability density function (TPDF) in conjunction with Eulerian stochastic fields is used. Velocity, species-concentration and heat release fields were first compared against experimental data showing good agreement. The results demonstrate that simulations of such complex combustion phenomena are possible and that the model is capable of reproducing the flame and the flow characteristics under both stable and close to blow-off conditions. A blow-off sequence was then examined and the results were used to evaluate some of the theories and mechanisms responsible for flame blow-off. It was found that the local extinction in the shear-layers had only minor impact on the flame blowing off and that the blow-off is a result of a series of events starting with the flame migrating into the recirculation zone. In the end, a mechanistic explanation is proposed for this series of events leading to full extinction of the flame. (C) 2017 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:本文报道了湍流预混甲烷/空气火焰接近吹散的大涡模拟(LES)。这项研究的重点是稳定的火焰,以及吹散前的火焰,两者均由剑桥钝体燃烧器稳定。对于湍流-化学相互作用,使用了基于输运概率密度函数(TPDF)和欧拉随机场的模型。首先将速度,物质浓度和放热场与显示出良好一致性的实验数据进行比较。结果表明,这种复杂燃烧现象的模拟是可能的,并且该模型能够在稳定和接近吹扫条件下再现火焰和流动特性。然后检查了吹气顺序,并将结果用于评估造成火焰吹气的一些理论和机理。发现剪切层中的局部熄灭对火焰的吹除仅具有很小的影响,并且吹除是一系列事件的结果,这些事件始于火焰迁移到再循环区域。最后,对导致火焰完全熄灭的这一系列事件提出了机械的解释。 (C)2017燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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