Exploring Richtmyer–meshkov Instability Phenomena And The Links Between Surface Perturbations And Shocked-induced Mass Ejection

Shin Yina, W. Pei, Zhao Qiang, F. Qijing
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引用次数: 1

Abstract

This work investigates the mass ejected from surface perturbations as the shockwave reaches the AL-vacuum interface, which originates from unstable Richtmyer–Meshkov (RMI) impulse phenomena. The main purpose is to explore the relationships between the shockwave impulse and the geometric properties of surface perturbations, and how those relationships drive the total ejected mass, directionality and velocity distribution. We discuss in detail different types of surface geometry (sinusoidal, square-wave, chevron and semicircle), as well as the wavelengths and amplitudes of surface perturbation. The time evolutions of micro-jet ejection are simulated using a hydrodynamic Lagrangian-Remapping Eulerian method. The calculated results show that primary jetting ejection can be formed from the different shapes, and with increasing wavelength, the ejection mass keeps an increase while the jet head-velocity decreases. However, not all periodic perturbations behave similarly, and masses ejected from irregular surface cannot be normalized to its cross-sectional areas. The square-wave surface may yield pronounced, velocity-enhanced secondary jetting, which is a result of collision of primary jets.
探索richmyer - meshkov不稳定性现象以及表面扰动与激波诱发的物质抛射之间的联系
本文研究了冲击波到达al -真空界面时由表面扰动抛射出的质量,这是由不稳定的richhtmyer - meshkov (RMI)脉冲现象引起的。主要目的是探讨激波脉冲与表面扰动几何性质之间的关系,以及这些关系如何驱动总弹射质量、方向性和速度分布。我们详细讨论了不同类型的表面几何形状(正弦波、方波、人字形和半圆形),以及表面扰动的波长和幅度。采用水动力拉格朗日-重映射欧拉方法模拟了微射流喷射的时间演化。计算结果表明,不同形状的射流均可形成初级射流,且随着波长的增加,射流质量不断增大,射流头速度不断减小。然而,并非所有的周期性扰动行为都是相似的,从不规则表面抛射出来的质量不能归一化为其横截面积。方波表面可能产生明显的、速度增强的二次射流,这是一次射流碰撞的结果。
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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