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Influence of impact conditions on plasma generation during hypervelocity impact by aluminum projectile

机译:铝弹丸超高速撞击过程中撞击条件对等离子体产生的影响

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For describing hypervelocity impact (relative low-speed as related to space debris and much lower than travelling speed of meteoroids) phenomenon associated with plasma generation, a self-developed 3D code was advanced to numerically simulate projectiles impacting on a rigid wall. The numerical results were combined with a new ionization model which was developed in an early study to calculate the ionized materials during the impact. The calculated results of ionization were compared with the empirical formulas concluded by experiments in references and a good agreement was obtained. Then based on the reliable 3D numerical code, a series of impacts with different projectile configurations were simulated to investigate the influence of impact conditions on hypervelocity impact generated plasma. It was found that the form of empirical formula needed to be modified. A new empirical formula with a critical impact velocity was advanced to describe the velocity dependence of plasma generation and the parameters of the modified formula were ensured by the comparison between the numerical predictions and the empirical formulas. For different projectile configurations, the changes of plasma charges with time are different but the integrals of charges on time almost stayed in the same level. Published by AIP Publishing.
机译:为了描述与等离子体产生相关的超高速撞击(与空间碎片有关的相对低速,并且远低于流星体的行进速度)现象,提出了一种自行开发的3D代码,以数值模拟撞击在刚性壁上的弹丸。数值结果与早期研究中开发的新电离模型相结合,可以计算碰撞过程中的电离物质。将电离的计算结果与参考文献中实验得出的经验公式进行了比较,并获得了很好的一致性。然后,基于可靠的3D数值代码,模拟了一系列具有不同弹丸配置的撞击,以研究撞击条件对超高速撞击产生的等离子体的影响。发现需要修改经验公式的形式。提出了一个新的具有临界冲击速度的经验公式来描述等离子体产生的速度依赖性,并通过数值预测和经验公式的比较确保了修改公式的参数。对于不同的射弹配置,等离子体电荷随时间的变化是不同的,但是电荷在时间上的积分几乎保持在同一水平。由AIP Publishing发布。

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