首页> 外文期刊>Journal of Fusion Energy >Some Generalised Characteristics of the Electro-dynamics of the Plasma Focus in Its Axial Phase: Illustrated by an Application to Independantly Determine the Drive Current Fraction and the Mass Swept-Up Fraction
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Some Generalised Characteristics of the Electro-dynamics of the Plasma Focus in Its Axial Phase: Illustrated by an Application to Independantly Determine the Drive Current Fraction and the Mass Swept-Up Fraction

机译:等离子体焦点轴向运动的电动力学的一些一般特征:通过独立确定驱动电流分数和质量扫掠分数的应用说明

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摘要

We describe the axial phase of the Mather plasma focus by two coupled equations of motion and circuit. We non-dimensionalised these equations resulting in two coupled equations which are characterised by only three scaling parameters a, (3 and 5 which are ratios of electrical to transit times, inductances and impedances respectively. The normalised current waveform, trajectory and speed profile are unique for each combination of α,β,δ which are the ratios of characteristic times (electrical discharge vs. axial transit), inductances (tube inductance vs. static inductance) and impedances (stray resistance vs. electrical surge impedance). This leads to important information and insight into various aspects of the axial phase. In the present work we show that in a time-matched plasma focus shot we deduce the value of axial phase current fraction f_c simply by measuring the calibrated voltage waveform and the uncalibrated current waveform. The scaling parameters β and δ are fixed; and by form-fitting the measured current waveform to the normalised current waveform using the value of α of the shot is determined uniquely; from which the peak current and the ratio of peak to average speed [the speed form factor (SFF)] are obtained. The average transit speed is measured by time-of-flight using the voltage upturn as indicator of end of axial phase. Then the SFF yields the peak speed. The measured voltage (back EMF), peak current and peak axial speed (all at the end of axial phase) allows the unambiguous measurement of f_c. The value of the mass swept-up fraction f_m is deduced from α which is the ratio of the characteristic discharge and the characteristic transit times, both deduced during the non-dimensionalisation of the equations. Analysis of a time-matched shot in the INTI PF at 15 kV, 3 Torr D_2 gave f_c = 0.68 and f_m = 0.05.
机译:我们通过运动和电路的两个耦合方程来描述马瑟等离子体聚焦的轴向相位。我们对这些方程进行了无量纲化处理,从而生成了两个耦合方程,其特征仅在于三个缩放参数a,(3和5),分别是电气与传输时间的比值,电感和阻抗。归一化的电流波形,轨迹和速度曲线是唯一的对于α,β,δ的每种组合,它们是特征时间(放电与轴向过渡),电感(管电感与静态电感)和阻抗(杂散电阻与电涌阻抗)之比。信息和对轴向相位各个方面的洞察力。在当前工作中,我们表明,在时间匹配的等离子聚焦射击中,我们只需测量校准的电压波形和未校准的电流波形,即可得出轴向相位电流分率f_c的值。比例参数β和δ是固定的;并且通过使用射击是唯一确定的;从中获得峰值电流和峰值与平均速度之比[速度形状因数(SFF)]。使用电压上升作为轴向相位结束的指示器,通过飞行时间测量平均运输速度。然后,SFF产生峰值速度。测得的电压(反电动势),峰值电流和峰值轴向速度(均在轴向相位的末尾)可以清楚地测量f_c。扫掠质量分数f_m的值由α得出,α是特征放电和特征渡越时间的比值,两者均在方程的无量纲化过程中得出。在15 kV,3 Torr D_2的情况下,在INTI PF中对时间匹配的发射进行分析,得出f_c = 0.68和f_m = 0.05。

著录项

  • 来源
    《Journal of Fusion Energy》 |2014年第3期|235-241|共7页
  • 作者单位

    INTI International University, 71800 Nilai, Malaysia,Institute for Plasma Focus Studies, 32 Oakpark Drive, Chadstone, VIC 3148, Australia,University of Malaya, Kuala Lumpur, Malaysia;

    INTI International University, 71800 Nilai, Malaysia,Institute for Plasma Focus Studies, 32 Oakpark Drive, Chadstone, VIC 3148, Australia;

    Physics Department, Faculty of Science, Jazan University, 2097 Jazan, Saudi Arabia,Plasma Physics Department, NRC, Atomic Energy Authority, 13759 Inshass, Egypt;

    Institute of Advanced Photonic Science, Nanotechnology Research Alliance, Universiti Teknologi Malaysia, 81310 Johor Bahru, Malaysia;

    INTI International University, 71800 Nilai, Malaysia;

    Physics Department, Faculty of Science, Jazan University, 2097 Jazan, Saudi Arabia;

    Physics Department, Faculty of Science, Jazan University, 2097 Jazan, Saudi Arabia;

    Physics Department, Faculty of Science, Jazan University, 2097 Jazan, Saudi Arabia;

    Physics Department, Faculty of Science, Jazan University, 2097 Jazan, Saudi Arabia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plasma focus equations; Focus axial phase characteristics; Measurement of model parameters; Plasma focus back EMF;

    机译:等离子体聚焦方程;聚焦轴向相位特性;测量模型参数;等离子聚焦反电动势;
  • 入库时间 2022-08-18 00:40:33

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