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Review of models which predict the flashover voltage of polluted insulators.

机译:回顾预测受污染绝缘子闪络电压的模型。

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摘要

Pollution of insulator surface could lead to a flashover of insulators. The flashover of insulators caused by pollution generally dominates at voltages above 500 KV. Mechanism of pollution flashover is very complex as it depends on numerous factors.;Over the years researchers have presented various models for better understanding of flashover phenomenon and prediction of flashover voltages. Due to the complexity of the problem researchers made various assumptions to simplify the problem.;The objective of this dissertation is to review and compare various models and to evaluate their capabilities in predicting the flashover voltages of insulators. Several models have been reviewed and out of these models, those which contain sufficient information for predicting the flashover voltages have been selected. The selected models have been applied to different types of insulators and the flashover voltages are calculated. In order to compare the models the conditions e.g. resistivity, under which the models are applied to insulators are kept the same. Five types of configurations of insulator models are considered, (i) 10 x 1 cm flat plate, (ii) 10 x 10 cm flat plate, (iii) cylinder, 100 cm long and 15 cm diameter, (iv) IEEE insulator and (v) Anti-Fog insulator. The calculated flashover voltages and other results are compared with each other and with experimental results.
机译:绝缘子表面的污染可能导致绝缘子闪络。在500 KV以上的电压下,由污染引起的绝缘子闪络通常占主导地位。污染闪络的机理非常复杂,这取决于许多因素。多年来,研究人员提出了各种模型,以更好地理解闪络现象和预测闪络电压。由于问题的复杂性,研究人员做出了各种假设来简化问题。本论文的目的是审查和比较各种模型,并评估它们在预测绝缘子闪络电压方面的能力。已经审查了几种模型,在这些模型中,已选择了包含足够信息以预测闪络电压的模型。所选模型已应用于不同类型的绝缘子,并计算出闪络电压。为了比较模型的条件例如应用于绝缘子的电阻率保持不变。考虑了五种类型的绝缘子模型配置,(i)10 x 1 cm平板,(ii)10 x 10 cm平板,(iii)圆柱体,长100 cm,直径15 cm,(iv)IEEE绝缘子和( v)防雾绝缘子。将计算出的闪络电压和其他结果相互比较,并与实验结果进行比较。

著录项

  • 作者

    Patni, Prem Kumar.;

  • 作者单位

    University of Manitoba (Canada).;

  • 授予单位 University of Manitoba (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.Sc.
  • 年度 1997
  • 页码 125 p.
  • 总页数 125
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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