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Propagation of premixed flames in the presence of Darrieus-Landau and thermal diffusive instabilities

机译:预混火焰在Darrius-Landau和热扩散不稳定性存在下传播

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We study the propagation of premixed flames, in the absence of external turbulence, under the effect of both hydrodynamic (Darrieus-Landau) and thermodiffusive instabilities. The Sivashinsky equation in a suitable parameter space is initially utilized to parametrically investigate the flame propagation speed under the potential action of both kinds of instability. An adequate variable transformation shows that the propagation speed can collapse on a universal scaling law as a function of a parameter related to the number of unstable wavelengths within the domain n(c). To assess whether this picture can persist in realistic flames, a DNS database of large scale, two-dimensional flames is presented, embracing a range of n(c) values and subject to either purely hydrodynamic instability (DL) or both kinds of instability (TD). With the aid of similar DNS databases from the literature we observe that when adequately resealed, propagation speeds follow two distinct scaling laws, depending on the presence of thermodiffusive instability or lack thereof. We verify the presence of secondary cutoff values for n(c) identifying (a) the insurgence of secondary wrinkling in purely hydrodynamically unstable flames and (b) the attainment of domain independence in thermodiffusively unstable flames. A possible flame surface density based model for the subgrid wrinkling is also proposed. (C) 2020 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:在流体动力学(Darrius-Landau)和Thermodiffive Instabilities的影响下,我们研究预混火焰的繁殖,在没有外部湍流的情况下。合适的参数空间中的Sivashinsky方程最初用于参数地研究在两种不稳定性的潜在作用下的火焰传播速度。足够的可变变换表明,传播速度可以在通用缩放法中折叠,作为与域N(c)内不稳定波长的数量相关的参数的函数。为了评估此图片是否可以在现实的火焰中持续存在,呈现大规模的DNS数据库,呈现二维火焰,包括一系列N(c)值,并受纯流体动力不稳定性(DL)或两种不稳定性( TD)。借助于来自文献的类似DNS数据库,我们观察到,当充分重新密封时,传播速度遵循两个不同的缩放规律,具体取决于热代倍不稳定性或其缺乏。我们验证了N(c)的次级截止值的存在,识别(a)纯水动力学不稳定火焰中的次级皱纹的叛乱和(b)在热偶极性不稳定的火焰中获得结构域独立性。还提出了一种用于基底皱纹的可能的火焰表面密度模型。 (c)2020燃烧研究所。由elsevier Inc.出版的所有权利保留。

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