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On the role of turbulence in detonation induced by Mach stem reflection

机译:湍流在马赫杆反射引起的爆轰中的作用

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A series of experiments conducted by Chan has shown that while some shock waves may not be strong enough to induce detonation when they collide with an obstacle the resulting Mach stem will induce detonation if it collides with a subsequent obstruction. A series of numerical simulations, however, failed to demonstrate the expected results if either the Euler or laminar Navier-Stokes equations are solved. On the other hand, calculations using the Favre averaged Navier-Stokes equations with a k-epsilon-F turbulence model are able to reproduce the experimental results, indicating that turbulent effects may play an important role in the ignition process. A detailed examination of the results shows that turbulence causes the formation of activated kernels in a similar process to that observed in deflagration-detonation transition. The simulations in this paper have been undertaken using a modem high resolution hydrocode and a reduced kinetics mechanism for hydrogen combustion. The paper describes the reduced mechanism, the solution methods employed in the hydrocode and discusses the results of the simulations and their implications. [References: 28]
机译:Chan进行的一系列实验表明,尽管某些冲击波在与障碍物碰撞时可能强度不足以引起爆炸,但如果马赫柱与随后的障碍物碰撞,则产生的冲击波也会引起爆炸。但是,如果求解Euler或层状Navier-Stokes方程,则一系列数值模拟均无法证明预期结果。另一方面,使用Favre平均Navier-Stokes方程和k-ε-F湍流模型进行的计算可以重现实验结果,表明湍流效应可能在点火过程中起重要作用。对结果的详细检查表明,湍流导致活化核仁的形成与爆燃-爆轰过渡中观察到的过程相似。本文中的模拟是使用现代的高分辨率水码和降低的氢气燃烧动力学机制进行的。本文介绍了简化的机制,在液压编码中使用的解决方法,并讨论了仿真结果及其含义。 [参考:28]

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