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Magnetohydrodynamic simulation for plasma focus devices

机译:等离子体聚焦装置的磁流体动力学模拟

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摘要

To overcome the discontinuity between the axial phase and the radial phase in the plasma focus, a new model (the Masoud model) has been developed. It is assumed that, according to the snowplough model, the radial phase moves in the angular direction with continuity between the axial and the radial phases. This model is based on the introduction of an angle of motion in all equations of motion and circuit. Then, the plasma sheath position and velocity were calculated numerically from the previous equations. A slug model has been used to calculate the shock wave velocity, and hence the electron temperature. Values of the discharge current, the axial speed, the axial position, the spike voltage, the radial piston speed, the radial piston position, the plasma column length and the plasma temperature have been obtained using the new model. The values calculated by using this model show good agreement with the published experimental results.
机译:为了克服等离子体聚焦中轴向相和径向相之间的不连续性,已经开发了一种新模型(Masoud模型)。假设根据雪犁模型,径向相位在角度方向上移动,并且在轴向相位和径向相位之间具有连续性。该模型基于在所有运动和回路方程中引入了运动角。然后,从先前的方程式数值计算出等离子体鞘的位置和速度。弹头模型已用于计算冲击波速度,从而计算电子温度。使用新模型获得了放电电流,轴向速度,轴向位置,尖峰电压,径向活塞速度,径向活塞位置,等离子柱长度和等离子温度的值。使用此模型计算的值与已发布的实验结果显示出良好的一致性。

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