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Investigation of spark breakdown paths in air by using an image processing technique.

机译:通过使用图像处理技术研究空气中的火花击穿路径。

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摘要

Two simple but effective experimental set-ups were built to produce two orthogonal images of spark breakdown paths across short or long air gaps.; The parameter distributions for the paths across different long air gaps indicate that as the length of air gaps increases, spark breakdown paths would change direction more and more violently during propagation, and therefore they become more tortuous. The same feature can be found in the parameter distributions as the input energy during spark breakdown increases meanwhile the air gap is kept unchanged. It is also observed from the statistical results that the average deviation of the first segments from the vertical axis increases as the inclined angle of the point electrode increases, and the mean length of the first segments decreases while the diameter of the rod electrode increases. These statistical results are compared with that obtained from the investigation of two-dimensional spark paths, it is found the two-dimensional parameter distributions only gave out part of the characteristics of the spark paths.; The fractal method, as an alternative to the traditional statistical method in investigating the random complex phenomena, was also used in the thesis to analyse the spark breakdown paths from the point of engineering application. The locations of spark breakdown paths on the plane electrode can be regarded as the ends of fractal random walks. The distribution exhibits power law behaviors. The dynamical mechanism of the spark breakdown path as a fractal phenomenon has been discussed in terms of a simple streamer model.; The analysis of the spark breakdown paths in point-plane gaps ranging from 45 to 400mm section by section revealed that each leader channel section is consistently related to the previous section; and allowed the determination of the ratio of the mean angle to the vertical of the new leader channel section to that of the previous section. The directional propagation probability in the leader channel formation is decomposed into a memory effect part and a random variation part. It is the directional probability function that determines the characteristic shape of spark paths. It is suggested that this directional propagation probability be closely related to the field distribution local to the leader tip. (Abstract shortened by UMI.)
机译:建立了两个简单但有效的实验装置,以产生两个短或长气隙的火花击穿路径的正交图像。跨越不同的长气隙的路径的参数分布表明,随着气隙长度的增加,火花击穿路径在传播过程中会越来越剧烈地改变方向,因此变得更加曲折。随着火花击穿期间输入能量的增加,同时气隙保持不变,可以在参数分布中找到相同的特征。从统计结果还观察到,随着点电极的倾斜角增加,第一段相对于垂直轴的平均偏差增加,并且随着杆电极的直径增加,第一段的平均长度减小。将这些统计结果与二维火花路径的研究结果进行比较,发现二维参数分布仅给出了火花路径特征的一部分。分形法是研究随机复杂现象的传统统计方法的替代方法,从工程应用的角度分析了火花的击穿路径。平面电极上火花击穿路径的位置可以视为分形随机游动的终点。该分布表现出幂律行为。用简单的拖缆模型讨论了火花击穿路径作为分形现象的动力学机理。对点平面间隙范围从45至400mm的火花击穿路径的逐段分析显示,每个引导通道部分与上一个部分始终相关;并确定新引导通道部分与上一部分的平均角度与垂直线的比率。前导通道形成中的定向传播概率被分解为记忆效应部分和随机变化部分。方向概率函数确定火花路径的特征形状。建议该定向传播概率与前导尖端局部的场分布密切相关。 (摘要由UMI缩短。)

著录项

  • 作者

    Qiu, Dehong.;

  • 作者单位

    Hong Kong Polytechnic (People's Republic of China).;

  • 授予单位 Hong Kong Polytechnic (People's Republic of China).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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