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Formation and evolution of distorted tulip flames

机译:变形的郁金香火焰的形成与演化

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The development and evolution of tulip and distorted tulip flames in closed channels were simulated by solving the fully compressible reactive Navier-Stokes equations using a high-order numerical method and a single-step Arrhenius model for the reactions and energy release in a stoichiometric mixture of hydrogen and air. Important features of the simulations include (1) the development and propagation of acoustic waves and their effects on flame evolution, (2) the formation and collapse of flame cusps, both at the flame front and near the sidewalls, and the effects of cusp collapse on flame propagation, and (3) the appearance of adverse pressure gradients at the onset of the tulip or a distorted tulip flame, which result in reverse flow in the unburned gas. The simulations highlight the coupling between pressure waves, adverse pressure gradients, boundary layers, and the propagating flame front. Whereas the formation of the tulip flame can be attributed to several effects (such as pressure waves, vortex motion and Landau-Darrieus instabilities), the onset of the distorted tulip flame is strongly influenced by the Rayleigh-Taylor instability. (C) 2015 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:通过使用高阶数值方法和单步Arrhenius模型求解完全可压缩的反应性Navier-Stokes方程来模拟封闭通道中郁金香和扭曲的郁金香火焰的发展和演变,以计算化学计量比的混合物中的反应和能量释放。氢气和空气。模拟的重要特征包括:(1)声波的发展和传播及其对火焰演变的影响;(2)火焰尖端和侧壁附近的火焰尖的形成和塌陷,以及尖尖塌陷的影响(3)在郁金香开始时出现不利的压力梯度或郁金香火焰变形,从而导致未燃烧气体中的逆流。模拟突出了压力波,不利的压力梯度,边界层和传播的火焰锋之间的耦合。郁金香火焰的形成可以归因于多种影响(例如压力波,涡旋运动和Landau-Darrieus不稳定性),而扭曲的郁金香火焰的产生受到Rayleigh-Taylor不稳定性的强烈影响。 (C)2015年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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