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Morphology and self-acceleration of expanding laminar flames with flame-front cellular instabilities

机译:具有火焰前沿细胞不稳定性的层流火焰的形态和自加速

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We report herein experimental observation and mechanistic interpretation of the evolution and self acceleration of constant-pressure, spherically expanding H-2/O-2/N-2 flames, subjected to hydrodynamic and diffusional-thermal instabilities over a wide range of pressure, equivalence ratio and thermal expansion ratio. Results show the existence of three distinct stages of flame propagation affected by the development of the instability cells, namely smooth expansion, transition, and saturated states of cell development. The onset of the instabilities is primarily controlled by the diffusional-thermal instability, while characteristics of the subsequent transition to and maintenance of the saturated state is controlled by the hydrodynamic instability. The acceleration exponent for the fully developed saturated instability is found to be around 1.2-1.4, which is smaller than 1.5, the suggested value for self-turbulization. (C) 2016 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:我们在此报告的实验观察和恒压,球形膨胀的H-2 / O-2 / N-2火焰的演化和自加速的力学解释和力学解释,这些火焰在很宽的压力,当量范围内受到流体动力和扩散热不稳定性的影响比和热膨胀率。结果表明,不稳定性细胞的发展影响着火焰传播的三个不同阶段,即光滑的膨胀,过渡和细胞发育的饱和状态。不稳定性的发生主要由扩散热不稳定性控制,而随后转变为饱和态并维持其饱和状态的特征则由流体动力学不稳定性控制。发现完全形成的饱和不稳定性的加速度指数约为1.2-1.4,小于自湍流的建议值1.5。 (C)2016年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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