Calculation and experimental determination of the speed of advancement of the plasma leader channel of a pulse spark discharge in atmospheric air

M. I. Baranov
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Abstract

Goal. Calculation and experimental determination of middle speed vL of advancement of plasma leader channel of a pulse spark discharge in the long air interval of the double-electrode discharge system (DEDS) «tip-plane». Methodology. Bases of the theoretical electrical engineering and electrophysics, electrophysics bases of technique of ultra- and high-voltage and high pulse currents, bases of high-voltage pulse technique and measuring technique. Results. The close calculation and experimental method of determination of middle speed vL of advancement of plasma leader channel of an electric pulse spark discharge is offered in the long air interval of DEDS «tip-plane». This method is based on the offered calculation empiric formula for finding of the indicated speed vL and results of decoding of oscillograms of process of cut of in-use standard interconnect аperiodic pulse of over- and high-voltage of temporal shape of Tm/Тd≈200 μs/1990 μs of positive polarity at an electric hasp in indicated DEDS of long air intervals with their minimum length of lmin, numeral making 1,5 m (first case) and 3 m (second case). It is shown that middle speed vL of advancement in atmospheric air of front of plasma channel of positive leader of an electric pulse spark discharge in probed DEDS «tip-plane» for two considered applied cases at lmin=1,5 m of lmin=3 m numeral makes approximately vL≈(1±0,03)∙105 m/s. The found numeral value of this speed vL well coincides with the known experimental information for speed of advancement of vL≈105 m/s in atmospheric air of plasma channel of negative leader for a long storm spark discharge in DEDS «charged cloud-earth». It is set that for the standard interconnect аperiodic pulse of high- and ultra- voltage of temporal shape of Tm/Тd≈200 μs/1990 μs of positive polarity middle value of aggressive strength Ed of high pulse electric field in the air interval of probed DEDS «tip-plane» numeral makes minimum length of lmin=1,5 m near Ed1≈360,8 kV/m, and for his minimum length of lmin=3 m of − Ed2≈313,4 kV/m. Originality. The comfortable is developed in the use and reliable in practical realization technicians-and-engineers calculation and experimental method of research in the conditions of high-voltage electrophysics laboratory of difficult electro-discharge processes of development of leader hasp of long air intervals and determination of minimum electric durability of air insulation of electrical power engineering and electrophysics equipment on working voltage of classes of 330-1150 kV. Practical value. Application in area of industrial electrical power engineering and high-voltage pulse technique of the got numeral electrophysics results and offered calculation and experimental method of determination of middle speed vL of advancement in atmospheric air of plasma channel of leader of a long spark discharge will allow, from one side, to deepen our scientific knowledges about a long electric pulse spark discharge in an air dielectric, and, from other side, to develop high-voltage electrical power engineering and electrophysics devices with enhanceable reliability of their work both in normal operation and malfunctions.
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大气空气中脉冲火花放电等离子体领导通道前进速度的计算和实验测定
目标。计算并通过实验确定双电极放电系统(DEDS)"尖端平面 "长空气间隔内脉冲火花放电等离子体领导通道前进的中速 vL。方法。电工学和电物理学理论基础、超高压和大脉冲电流技术的电物理学基础、高压脉冲技术基础和测量技术。结果。在 DEDS "尖端平面 "的长空气间隔中,提供了确定电脉冲火花放电等离子体领导通道前进中速 vL 的计算和实验方法。该方法基于所提供的速度 vL 的经验计算公式,以及对使用中的标准互联线切割过程示波图的解码结果,这些示波图是时间形状为 Tm/Тd≈200 μs/1990 μs,正极性的过电压和高压脉冲,在指定的长空气间隔 DEDS 中,其最小长度为 lmin,数字为 1.5 m(第一种情况)和 3 m(第二种情况)。结果表明,在 lmin=1.5 米和 lmin=3 米的两种应用情况下,在探测的 DEDS "顶平面 "中,电脉冲火花放电正引线等离子通道前沿在大气空气中的中速 vL 约为 vL≈(1±0,03)∙105 米/秒。所发现的速度 vL 数值与已知的实验信息相吻合,即在 DEDS "带电云土 "中长风暴火花放电时,等离子体负导通道的大气空气中的前进速度 vL≈105 m/s。对于 Tm/Тd≈200 μs/1990 μs 时形为正极性的高电压和超电压标准互联 а 周期脉冲,在被探测的 DEDS "尖端平面 "的空气间隔中,高脉冲电场的攻击强度 Ed 的中间值为最小长度 lmin=1、5 m,靠近 Ed1≈360,8 kV/m,其最小长度为 lmin=3 m 的 - Ed2≈313,4 kV/m。独创性。在高压电物理实验室的条件下,研究长空气间隔的导线槽发展的困难放电过程和确定工作电压为 330-1150 kV 级的电力工程和电物理设备空气绝缘的最小电耐久性的计算和实验方法。实用价值。在工业电力工程和高压脉冲技术领域应用所获得的数字电物理结果和所提供的确定长火花放电领导者等离子通道在大气空气中前进的中速 vL 的计算和实验方法,一方面可以加深我们对空气介质中长电脉冲火花放电的科学认识,另一方面可以开发高压电力工程和电物理设备,提高其在正常运行和故障情况下工作的可靠性。
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