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Dynamics of current sheath in a hollow electrode Z-pinch discharge using slug model

机译:使用SLUD模型中空电极Z-PINCH放电中的电流护套的动态

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The hollow electrode Z-pinch (HEZP) experiment is a new construction for the electromagnetic propulsion application in which the plasma is formed by the discharge between a plate and ring electrodes through which the plasma is propelled. The experimental results for 8 kV charging voltage shows that the peak discharge current is about 109 kA, which is in good agreement with the value obtained from the simulation in the slug model that simulates the sheath dynamics in the HEZP. The fitting of the discharge current from the slug model indicates that the total system inductance is 238 nH which is relatively a high static inductance accompanied with a deeper pinch depth indicating that the fitted anomalous resistance would be about 95 mO. The current and mass factors vary with the changing the gas pressure and the charging voltage. The current factor is between 0.4 and 0.5 on average which is relatively low value. The mass factor decreases by increasing the gas pressure indicating that the sheath is heavy to be driven by the magnetic pressure, which is also indicated from the decreases of the drive factor, hence the radial sheath velocity decreases. The plasma inductance and temperature increase with the increase of the drive factor while the minimum pinch radius decreases.
机译:中空电极Z-PINCH(HEZP)实验是用于电磁推进应用的新结构,其中通过通过该等离子体之间的放电形成等离子体的等离子体。 8 kV充电电压的实验结果表明,峰值放电电流约为109ka,与从SLUT模型中的模拟中获得的值吻合良好,这与模拟HEZP中的鞘动态的仿真。来自SLUD模型的放电电流的配合表明,总系统电感是238 NH,其相对高静态电感,伴随着更深的夹深深度,指示拟合的异常电阻为约95mo。电流和质量因素随着气体压力和充电电压而变化。电流因子平均值为0.4至0.5,其值相对较低。通过增加指示护套较重的气体压力通过磁力压力驱动的气体压力,该质量因子降低,这也从驱动因子的减小指示,因此径向鞘速度降低。等离子体电感和温度随着驱动因子的增加而增加,而最小夹紧半径减小。

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