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Shock focusing and detonation initiation at a flame front

机译:火焰前的冲击聚焦和起爆

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Multidimensional numerical simulations were performed to study the interaction of focused shock waves and a flame front leading to detonation initiation. The fully compressible Navier-Stokes equations, coupled with a chemical-diffusive model for energy release and conversion of fuel to product in a stoichiometric hydrogen-air mixture, were solved using a third-order method on a dynamically adapting mesh. Preliminary simulations of deflagration-to-detonation transition (DDT) in an obstructed channel, when compared to previous experiments, point to a DDT scenario where detonation initiation arises from multishock focusing at a flame front. A detailed examination of an idealized problem showed two mechanisms of detonation formation: (1) direct detonation initiation triggered at the collision spot by focusing shocks at the flame front, and (2) focusing of relatively weak shocks leading to a delayed transition to detonation through the reactivity-gradient mechanism. Comparisons between the detailed analysis of shock-focusing and experimentally observed DDT phenomena suggests that shock focusing plays an important role in the occurrence of DDT for this problem. (C) 2019 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:进行了多维数值模拟,以研究聚焦冲击波和导致爆炸起爆的火焰锋的相互作用。使用三阶方法在动态自适应网格上求解了完全可压缩的Navier-Stokes方程,并结合了化学扩散模型来进行能量释放以及将化学计量的氢-空气混合物中的燃料转化为产物。与以前的实验相比,在阻塞通道中的爆燃-爆炸转变(DDT)的初步模拟指出,DDT场景中,爆炸始于多点集中在火焰前沿的爆炸。对理想化问题的详细检查显示了两种爆轰形成机理:(1)通过将冲击聚焦在火焰前部而在碰撞点触发直接爆轰引发,以及(2)聚焦相对较弱的冲击导致通过爆轰延迟过渡到爆轰。反应梯度机制。对震源聚焦的详细分析与实验观察到的DDT现象之间的比较表明,震源聚焦在此问题的DDT发生中起着重要作用。 (C)2019燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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