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Propagation and generation of acoustic and entropy waves across a moving flame front

机译:声波和熵波在移动的火焰前沿上的传播和生成

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In analytical models of the propagation and generation of acoustic and entropy waves across a premixed flame, the relations that couple upstream and downstream flow variables often consider the flame as a discontinuity at rest. This work shows how the model of a flame at rest can misrepresent the generation of entropy waves, and how it leads to paradoxical results concerning the conservation of mass and volume flow rates across the flame. Such inconsistencies can be resolved by taking into account the movement of the flame in the coupling relations for flow perturbations. Analysis in a quasi-1D framework shows that in the absence of perturbations in equivalence ratio, the magnitude of the entropy waves generated across the flame are first order in Mach number and derive from interactions between the upstream acoustics and the mean heat release rate. For non-perfectly premixed flames, fluctuations in equivalence ratio may generate perturbations in entropy of leading order in Mach number. Furthermore, for the moving flame model conservation of volume flow rate across a passive, perfectly premixed flame appears as a natural consequence of mass and energy conservation. (C) 2016 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:在跨预混火焰传播和产生声波和熵波的分析模型中,耦合上游和下游流量变量的关系通常将火焰视为静止处的不连续性。这项工作显示了静止火焰模型如何歪曲熵波的产生,以及如何导致关于守卫火焰质量流量和体积流量的悖论结果。这种不一致性可以通过考虑火焰在流动关系的耦合关系中的运动来解决。在准一维框架中的分析表明,在不存在当量比扰动的情况下,跨火焰产生的熵波的大小以马赫数为第一阶,并且源自上游声学和平均放热率之间的相互作用。对于非完美的预混火焰,当量比的波动可能会产生马赫数超前熵的扰动。此外,对于移动火焰模型,在被动,完全预混火焰之间保持体积流量是质量和能量守恒的自然结果。 (C)2016年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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