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RADIATIVE SHOCKS IN LOW PRESSURE GASES

机译:低压气体中的辐射电击

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In this paper, two points are presented. The first one is related to the elaboration of a new theoretical approach and, in the second one, we present the results we have obtained from our latest experiments concerning the radiative shock. In the paper dated 2000 (Bouquet et al. 1), a fully analytical theory of the radiative shock has been developed. However, some microscopic phenomena were not taken into account in our modeling. In this communication, we present a new theory in which the ionization rates Z_1 and Z_2 (Z_2 ≠ Z_1) in the precursor and in the shocked material, respectively, are included. The way this effect alters the value of the critical value of the shock speed, Drad , above which radiation phenomena prevail over thermal ones, is derived. In the second part, numerical simulations are presented. Results obtained from various numerical codes in 1D and 2D geometries are shown and comparisons are given. The dependence of the structure of the precursor upon several parameters is exhibited. (Results coming from the latest French experiments at L ULI are presented in another communication at this meeting (Leygnac et al. 2)).
机译:本文提出了两点。第一个与制定新的理论方法有关,在第二个中,我们介绍了我们从辐射冲击的最新实验中获得的结果。在2000年的论文中(Bouquet等人1),已经建立了对辐射冲击的完全分析理论。但是,在我们的建模中并未考虑一些微观现象。在此交流中,我们提出了一种新的理论,其中包括了前体和受激材料中的电离率Z_1和Z_2(Z_2≠Z_1)。这种效应改变冲击速度临界值Drad的方式,在此之上可以得出辐射现象胜于热现象。在第二部分中,给出了数值模拟。显示了从一维和二维几何形状的各种数字代码获得的结果,并进行了比较。显示了前体的结构对几个参数的依赖性。 (来自L ULI的最新法国实验的结果在本次会议的另一封信中介绍(Leygnac等人2))。

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