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Numerical simulation of electric explosions of metal wires

机译:金属丝电爆炸的数值模拟

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Summary form only given. The successful application of z-pinches as high-power X-ray sources has aroused interest in the study of electric explosion of wires, particularly in vacuum. A large body of experimental data suggests that the explosion of a wire in vacuum is accompanied by the formation of strata and low-density plasma corona surrounding a dense core. It seems likely that early in the explosion this low-density corona consists of a gaseous matter, which is initially sorbed by the wire surface, while later in the process it is formed by metal vapors. We have already simulated the explosion of wires in a liquid dielectric with the use of a 1D magnetohydrodynamic (MHD) code based on the Lagrangian approach, and the results obtained have shown a good agreement with experimental data. However, with this code it is fundamentally difficult to simulate the explosion of wires in vacuum, since the MHD equations are approximated on a grid associated with the mass coordinates of the fluid, thus making impossible a correct simulation of the processes involving very large density differences. In case of the electric explosions of wires in vacuum, the density of a liquid metal is several orders of magnitude higher than that of vapors surrounding it. Therefore, it would appear more reasonable to simulate the process by the particle-in-cell method (the PIC method), where the particles moving on a fixed computational grid (Eulerian grid) are taken to be Lagrangian components.
机译:仅提供摘要表格。 z夹点作为高功率X射线源的成功应用引起了对电线电爆炸(特别是在真空中)的研究的兴趣。大量的实验数据表明,在真空中爆炸时,导线会围绕致密的芯层形成地层和低密度等离子电晕。爆炸初期,这种低密度电晕很可能由一种气态物质组成,该气态物质最初被金属丝表面吸收,而在此过程的后期,它是由金属蒸气形成的。我们已经使用基于Lagrangian方法的1D磁流体动力学(MHD)代码模拟了液体介质中电线的爆炸,并且所得结果与实验数据吻合良好。但是,使用此代码从根本上很难模拟真空中导线的爆炸,因为MHD方程是在与流体的质量坐标关联的网格上近似的,因此无法正确模拟涉及非常大的密度差的过程。在真空中发生电线电爆炸的情况下,液态金属的密度比其周围的蒸气的密度高几个数量级。因此,通过将单元格中的固定计算网格(欧拉网格)上的粒子视为拉格朗日成分的像元法(PIC方法)来模拟过程似乎更为合理。

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