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Weak detonations, their paths and transition to strong detonation

机译:弱爆轰,它们的路径以及向强爆轰的过渡

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Previously, a quasi-steady form of the classical Rankine-Hugoniot weak detonation has been shown to play an integral part in describing certain forms of detonation initiation, arising during an intermediate stage between the thermal ignition of the material and the first appearance of a strong detonation with Zeldovich-von Neumann-Doring (ZND) structure. In this paper, we use a parametric variable integration to calculate numerically the path of the weak detonation in two important initiation scenarios, shock-induced and initial disturbance-induced transition to detonation, via a large activation energy induction domain model. The influence that the nature of the path may have on the weak detonation structure is also discussed. In each case these calculations enable us to predict how, where and when the transition to a strong detonation with ZND structure will occur. Explanations for several phenomena observed in both experiments and numerical studies on transition to detonation are also uncovered by these calculations.
机译:以前,已证明经典兰金-休格尼奥特爆轰的准稳态形式在描述某些形式的引爆引发中起着不可或缺的作用,这种起爆发生在材料的热点火和首次出现强力之间的中间阶段。 Zeldovich-von Neumann-Doring(ZND)结构的爆炸。在本文中,我们通过大型活化能感应域模型,使用参数变量积分来数值计算两种重要起爆情况下的弱爆轰路径,即冲击诱发和初始扰动诱发的爆轰过渡。还讨论了路径性质可能对弱爆轰结构的影响。在每种情况下,这些计算使我们能够预测如何,在何时何地过渡到具有ZND结构的强爆轰。这些计算也无法解释在实验和数值研究中观察到的关于爆轰过渡的几种现象的解释。

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