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Theoretical and numerical analysis of oscillating diffusion flames

机译:振荡扩散火焰的理论和数值分析

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摘要

A novel method is presented for solving the forced transient diffusion flame in the exit region of a coflow burner. Streamwise diffusion is eliminated, which produces the Burke-Schumann model. A mathematical transformation renders the transient, forced convection problem equivalent to a steady-state convection problem. The transformation differs from previous approaches because its use does not require a priori restriction to small perturbations. For this reason, flow fluctuations that are large fractions of the initial flow field may be described exactly and features of nonlinear response can be examined without recourse to detailed numerical simulation. The method is applied to study flame evolution and oscillation for two physically separated coflow slot burner flames as they merge. (C) 2016 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:提出了一种新颖的方法来解决同流燃烧器出口区域中的强制瞬态扩散火焰。消除了沿流扩散,从而产生了Burke-Schumann模型。数学转换使瞬态强迫对流问题等效于稳态对流问题。该变换不同于先前的方法,因为其使用不需要对小扰动进行先验限制。因此,可以准确地描述占初始流场很大一部分的流量波动,并且无需借助详细的数值模拟就可以检查非线性响应的特征。该方法用于研究两个物理分离的同流狭槽燃烧器火焰在合并时的火焰演化和振荡。 (C)2016年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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