Experimental study of the effect of circuit inductance on pinch-time in plasma focus MTPF2.5 KJ .

M. Akbari Nasaji, A. Nasiri, A. Esmaeli, M. Amirhamzeh Tafreshi, S. Fazelpour
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Abstract

This paper investigates the effect of circuit inductance on the pinch-time of plasma focus. The dense plasma focus is a plasma discharge powered by a capacitor bank. The Mather type Dense Plasma Focus is constructed in cylindrical geometry and is made up of coaxial anodes and cathodes with varying radiuses. An insulator sleeve separates the electrodes, and the cathode rode forms circles around the anode tube. Different parameters, such as geometry and structure of the anode bar and decreasing inductance, are involved in optimizing plasma focus. One way to increase the gain and optimization of pulsed plasma systems is to reduce the circuit's inductance. For this purpose, we investigate the effect of different values of total circuit inductance on pinch formation time. Experimental and simulation results are compared. The proposed system shows a decent functionality that if the inductance reduces, the system's efficiency will increase.
等离子体聚焦MTPF2.5 KJ中电路电感对箝位时间影响的实验研究。
本文研究了电路电感对等离子体聚焦箝位时间的影响。密集等离子体聚焦是由电容器组供电的等离子体放电。Mather型致密等离子体聚焦结构为圆柱形,由不同半径的同轴阳极和阴极组成。绝缘体套管将电极分开,阴极电极在阳极管周围形成圆圈。优化等离子体聚焦涉及到阳极棒的几何结构和电感的减小等参数。提高增益和优化脉冲等离子体系统的一种方法是减小电路的电感。为此,我们研究了不同的总电感值对捏缩形成时间的影响。实验结果与仿真结果进行了比较。所提出的系统显示出良好的功能,如果电感减小,系统的效率将会提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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