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首页> 外文期刊>Plasma Science, IEEE Transactions on >Model With Anomalous Diffusion and Friction for a Vacuum-Arc Plasma Jet in a Straight Magnetic Filter
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Model With Anomalous Diffusion and Friction for a Vacuum-Arc Plasma Jet in a Straight Magnetic Filter

机译:直磁过滤器中真空电弧等离子体射流的具有异常扩散和摩擦的模型

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摘要

A model is developed to describe the plasma jet generated in a vacuum arc, which enters and flows inside a straight magnetic filter with a realistic magnetic field configuration. Considering a low-density collisionless plasma projection of the electron momentum equation along the magnetic field lines and the assumption of quasi-neutrality allows one to relate the plasma density to the electrostatic potential. The system of equations is closed using the ion mass conservation and ion momentum equations. The model is compared to measurements on the plasma jet generated in a pulsed copper vacuum arc with an annular anode, moving along a straight magnetic filter. Probe measurements of the ion saturation current and of the floating potential at different axial and radial positions along the filter, and for different magnetic field values, are used in the comparison with the model results. It is found that anomalous diffusion is needed to fit the experimental measurements. Moreover, a novel anomalous friction effect for ion motion across magnetic lines has to be invoked in order to prevent strong radial oscillations triggered by the fast magnetic focusing of the plasma at the filter entrance and obtain realistic results. A simple model is presented to account for both of these effects, based on the assumption of a high level of fluctuations in the plasma.
机译:开发了一个模型来描述在真空电弧中产生的等离子流,该等离子流进入并流过具有实际磁场配置的直型磁过滤器。考虑到沿着磁场线的电子动量方程式的低密度无碰撞等离子体投影,以及准中性的假设,可以使等离子体密度与静电势相关。使用离子质量守恒和离子动量方程式封闭方程式系统。将模型与在带环形阳极的脉冲铜真空电弧中沿直线磁过滤器移动的等离子体射流的测量结果进行比较。与模型结果比较时,使用了探针饱和度和沿过滤器的不同轴向和径向位置以及不同磁场值的浮动电势的探针测量值。发现需要异常扩散以适合实验测量。而且,为了防止由于等离子体在过滤器入口处的快速磁性聚焦而触发的强烈的径向振荡,必须调用一种新颖的反常的摩擦力来使离子跨磁力线运动,从而产生强烈的径向振荡并获得实际的结果。基于等离子体中高水平波动的假设,提出了一个简单的模型来说明这两种影响。

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