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GENERATION AND DYNAMICS OF SUB-TRANSVERSE WAVE OF CYLINDRICAL DETONATION

机译:圆柱爆破次横波的产生与动力学

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摘要

This article shows a numerical simulation of the transverse cell in a H_2/O_2 diverging cylindrical detonation. An advection upstream splitting method with a diminishing variation scheme (AUSMDV scheme) and a detailed chemical kinetic model of H_2/O_2 by Petersen and Hanson were used to improve the numerical resolutions for fluid dynamics and for chemical kinetics, respectively. In the numerical results, the irregular cellular pattern and transverse cells were obtained by direct initiation. The numerical results indicated the detailed transverse detonation structure formed the complex Mach configuration, and sub-transverse waves on the transverse detonation were observed. These discussions suggest that the sub-transverse wave on thetransverse detonation destabilizes the cylindrical detonation front due to sub-transverse wave propagation toward the detonation front. This unstable factor from the sub-transverse wave develops the new transverse wave, which traces the fine cell, resulting in the appearance of cell bifurcation.
机译:本文显示了在H_2 / O_2发散的圆柱爆轰中横向单元的数值模拟。利用递减变分方案(AUSMDV方案)的对流上游分裂方法和Petersen和Hanson的H_2 / O_2详细的化学动力学模型分别提高了流体动力学和化学动力学的数值分辨率。在数值结果中,通过直接引发获得不规则的细胞模式和横向细胞。数值结果表明,详细的横向爆轰结构形成了复杂的马赫构型,并观察了横向爆轰的次横波。这些讨论表明,由于次横向波向爆轰前沿传播,所以横向爆轰上的次横向波使圆筒形爆轰前沿不稳定。来自次横波的这种不稳定因素产生了新的横波,该横波追踪了细小细胞,导致了细胞分叉的出现。

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