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EXPERIMENTAL AND NUMERICAL STUDY OF A WIRE-EXPLOSION-POS PLASMA DYNAMICS

机译:电线爆炸 - POS等离子体动力学的实验性和数值研究

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We study possibility to design fast current switch using wire explosion. It was carried out series of experiments on explosion of single wire connecting two coaxial cylindrical electrodes. Current with the amplitude value of 80 kA and rise time of 7 μs flowing through the 4-μm tungsten wire. The outer magnetic field (up to 30 kG) was directed along the electrodes. Setup design allow to us to change the amplitude of current flowing between the electrodes and to measure the total resistance of interelectrode volume. So we can study PPT plasma dynamics at different currents (current amplitude is changed in range of 10–80 kA, current rise rate is changed in range of 10~9–10~(10) A/s) and magnetic field. We compare experimental data with results of simulations carried out by means of the 3D radiative magnetohydro dynamic code MARPLE3D (KIAM RAS). We simulate (i) a stage of a wire explosion and plasma stirring in the inter-electrode gap, and (ii) a stage of a plasma switch performance. Numerical simulations allow to estimate a time we need to fill the volume between the coaxial electrodes with the plasma generated from the wire and switch inhomogeneity, and to study the switch dynamics dependence on the hydromagnetic instability as well as the Hall effect. The calculated switch evolution correlates with experimental data.
机译:我们研究了使用电线爆炸设计快速电流开关的可能性。在连接两个同轴圆柱电极的单线爆炸上进行了一系列实验。电流幅度值为80ka和7μs的上升时间流过4μm钨丝。沿电极引导外磁场(高达30kg)。设置设计允许我们改变电极之间流动的电流幅度,并测量电极容积的总电阻。因此,我们可以研究不同电流的PPT等离子体动态(电流振幅在10-80ka的范围内变化,电流上升速率在10〜9-10〜(10)A / S的范围内和磁场。我们将实验数据与通过3D辐射磁力电压动态码Marple3D(Kiam Ras)进行的模拟结果进行比较。我们模拟(i)在电极间隙中的电线爆炸和等离子体搅拌的阶段,以及(ii)等离子体开关性能的阶段。数值模拟允许估计我们需要用从电线产生的等离子体填充同轴电源之间的体积的时间,并研究开关动力学依赖性对水磁不稳定性以及霍尔效应。计算出的开关进化与实验数据相关。

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