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Numerical simulations of plasma dynamics in a microsecond plasma opening switch

机译:微秒等离子体打开开关中等离子体动力学的数值模拟

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The modified hydrodynamic approach Is being used to study the characteristics of plasma motion due to magnetic pressure in plasma opening switch. The simulation code differs from the NRL counterpart with dividing of the plasma filled region into N sections and with using the experimentally measured current penetration parameters. The simulation of the switch opening phase is performed in terms of erosion mechanism of magnetically insulated vacuum gap forming. The code includes the circuit data which are regular for the DOUBLE generator operation regimes in the negative polarity of inner (potential) electrode. In the case of typical duration of the conduction phase (900 ns) the-minimum needed plasma density was found to be about 1015 cm. The best fit of conduction current amplitude vs plasma density is I ∼ n0.23. The calculated characteristics of the switch opening phase were obtained to be very close to the experimental data.
机译:修改后的流体动力学方法正用于研究由于等离子打开开关中的电磁压力而引起的等离子运动的特性。该模拟代码与NRL对应的代码不同之处在于,将等离子填充区域划分为N个部分,并使用了实验测量的电流穿透参数。开关断开阶段的模拟是根据磁绝缘真空间隙形成的腐蚀机理进行的。该代码包括在内部(电位)电极的负极性中对于双发生器运行方式而言常规的电路数据。在典型的传导阶段持续时间(900 ns)的情况下,发现所需的最小血浆密度约为10 15 cm。传导电流幅度与等离子体密度的最佳拟合为I〜n 0.23 。得到的开关断开阶段的计算特性非常接近实验数据。

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