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A Theoretical Study of the Impact of Magnetic Field of Hall Current on the Parameters of a High-Current Vacuum-Arc Discharge

机译:霍尔电流磁场对大电流真空电弧放电参数影响的理论研究

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摘要

It is demonstrated that the magnetic field of Hall current in a short high-current vacuum-arc discharge significantly distorts the external axial magnetic field and affects the distribution of current density in the discharge gap. This effect decreases with increasing external magnetic field, with decreasing arc current, and with decreasing ratio of the length of discharge gap to its transverse dimension. A 2D magnetohydrody-namic mathematical model is used to calculate the discharge parameters for different values of induction of external magnetic field. The calculation results are compared with similar results obtained using a 1.5D model in which the impact made by magnetic field of Hall current is ignored. It is inferred that the simpler 1.5D model may be employed in calculations of parameters of vacuum arc in a wide range of variation of arc current and of induction of external magnetic field.
机译:结果表明,短时大电流真空电弧放电中的霍尔电流磁场会严重扭曲外部轴向磁场,并影响放电间隙中电流密度的分布。随着外部磁场的增加,电弧电流的减小以及放电间隙的长度与其横向尺寸之比的减小,该效应减小。使用二维磁流体动力学数学模型来计算不同外部磁场感应值的放电参数。将计算结果与使用1.5D模型获得的相似结果进行比较,其中忽略了由霍尔电流的磁场造成的影响。可以推断,在电弧电流变化和外部磁场感应的大范围内,可以在真空电弧的参数计算中采用更简单的1.5D模型。

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