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Insulator Flashover Probability Investigation Based on Numerical Electric Field Calculation and Random Walk Theory

Posted on:2017-05-02Degree:Ph.DType:Dissertation
University:Arizona State UniversityCandidate:He, JiahongFull Text:PDF
GTID:1462390014464288Subject:Engineering
Abstract/Summary:
Overhead high voltage transmission lines are widely used around the world to deliver power to customers because of their low losses and high transmission capability. Well-coordinated insulation systems are capable of withstanding lightning and switching surge voltages. However, flashover is a serious issue to insulation systems, especially if the insulator is covered by a pollution layer. Many experiments in the laboratory have been conducted to investigate this issue. Since most experiments are time-consuming and costly, good mathematical models could contribute to predicting the insulator flashover performance as well as guide the experiments. This dissertation proposes a new statistical model to calculate the flashover probability of insulators under different supply voltages and contamination levels. An insulator model with water particles in the air is simulated to analyze the effects of rain and mist on flashover performance in reality. Additionally, insulator radius and number of sheds affect insulator surface resistivity and leakage distance. These two factors are studied to improve the efficiency of insulator design. This dissertation also discusses the impact of insulator surface hydrophobicity on flashover voltage. (Abstract shortened by ProQuest.).
Keywords/Search Tags:Insulator, Flashover
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