Investigations into compressible turbulent mix in a convergent geometry plasma environment

K. Parker, S. Rothman, C. Horsfield, M. Dunne, D. Youngs, S. Batha, N. Lanier, M. Balkey, C. Barnes, Glenn Magelsenn, N. Delameter
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引用次数: 1

Abstract

A suite of experiments to measure the growth of turbulent mix in a compressible, convergent geometry has been performed on the Omega laser facility at LLE, Rochester NY. These employ a radiographically opaque marker layer to set the initial conditions at the unstable interface and to provide a diagnostic of the induced density gradients. The marker is sandwiched between a plastic ablator and a low-density polystyrene foam cylinder. The implosion is driven by uniform irradiation by 50 laser beams in an impulsive acceleration mode. The ablative drive launches a strong shock, causing the marker to become mixed into both the foam and the ablator. Compressible Richtmeyer Meshkov effects, modified by Bell-Plesset instability dominate the instability growth. The dependence on initial surface roughness is studied along with the time history of the evolution.
收敛几何等离子体环境下可压缩湍流混合的研究
在纽约罗彻斯特LLE的Omega激光设备上进行了一系列测量可压缩、收敛几何结构中湍流混合增长的实验。这些方法采用放射学上不透明的标记层来设置不稳定界面的初始条件,并提供诱导密度梯度的诊断。标记夹在塑料烧蚀器和低密度聚苯乙烯泡沫圆柱体之间。内爆由50束激光以脉冲加速模式均匀照射驱动。烧蚀驱动器发出强烈的冲击,使标记物混合到泡沫和烧蚀器中。由Bell-Plesset不稳定性修正的可压缩Richtmeyer Meshkov效应主导了不稳定性的增长。研究了其对初始表面粗糙度的依赖关系以及演化的时间历程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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