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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >The formation and evolution of the core-corona structure in the electrical explosion of aluminum wire in vacuum: experimental and numerical investigations
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The formation and evolution of the core-corona structure in the electrical explosion of aluminum wire in vacuum: experimental and numerical investigations

机译:真空铝线电气爆炸中核心 - 电晕结构的形成与演化:实验性和数值研究

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摘要

Experimental and numerical investigations on the formation and evolution of the core-corona structure in the electrical explosion of aluminum wire in vacuum are presented. In the experiments of aluminum wire explosion, shadowgraphy, interferometry and schlieren optical diagnostics are constructed with a laser probe to study the morphological evolution and distribution of the core and corona. A set of computational models with cold start conditions, consisting of a thermodynamic calculation and magnetohydrodynamic model combined with a semi-empirical equation of state and transport coefficients, are established to reproduce the behavior of the electrical explosion of aluminum wire. The radial profiles of the density, temperature, current density and magnetic field, addressing the physical scenario of the formation and evolution of the core-corona structure are analyzed. The numerical results are also compared with relevant experimental data.
机译:介绍了真空铝线电爆炸中芯电晕结构的形成和演化的实验和数值研究。 在铝线爆炸的实验中,通过激光探头构建阴影,干涉测量和Schlieren光学诊断,以研究核心和电晕的形态学进化和分布。 建立了一组具有冷启动条件的计算模型,由热力学计算和磁力流体模型组成,与状态和运输系数的半经验方程组成,以再现铝线电爆炸的行为。 分析了密度,温度,电流密度和磁场的径向轮廓,解决了核心 - 电晕结构的形成和演化的物理场景。 还与相关的实验数据进行了比较了数值结果。

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