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Study on DC Pollution Flashover Performance of Various Types of Long String Insulators Under Low Atmospheric Pressure Conditions

机译:低气压条件下各种长形绝缘子的直流污染闪络性能研究

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In this paper, the dc pollution flashover performance of various types of porcelain, glass, and composite insulators is investigated. It also presents analysis of the dc flashover process of polluted insulator string at high altitude using insight from high-speed photography. The research results indicate that the relationship between the dc pollution flashover voltage and the string length of insulators is basically linear, the characteristic exponents describing the influence degree of air pressure on pollution flashover voltage vary between 0.35 and 0.77 and are related to the insulator types and pollution degree, etc., the characteristic exponents describing the influence degree of pollution on flashover voltage vary between 0.24 and 0.36 and are related to the insulator types and air pressure, etc. Based on the flashover phenomena using the insight from high-speed photography, a new physical model explaining the flashover mechanism for a polluted insulator string at high altitude is introduced, which can be expressed as an electrical circuit consisting of a surface arc of length $x_{1}$ and air-gap arc of length $x_{2}$ in series with a resistance representing the wet pollution layer. In addition, the exponent $n$ describing the influence degree of air pressure on flashover voltage for the polluted insulator is discussed.
机译:本文研究了各种类型的瓷器,玻璃和复合绝缘子的直流污染闪络性能。它还利用高速摄影的洞察力,对高海拔地区被污染的绝缘子串的直流闪络过程进行了分析。研究结果表明,直流污染闪络电压与绝缘子串长之间的关系基本上是线性的,描述气压对污染闪络电压的影响程度的特征指数在0.35至0.77之间变化,并且与绝缘子的类型和特性有关。污染程度等,描述污染对闪络电压影响程度的特征指数在0.24到0.36之间变化,并且与绝缘子类型和气压等有关。基于闪络现象,使用高速摄影技术得出的见解,介绍了一个新的物理模型,该模型解释了高海拔地区被污染的绝缘子串的闪络机制,该物理模型可以表示为由长度为$ x_ {1} $的表面弧和长度为$ x_ {的气隙弧组成的电路2} $与代表湿污染层的电阻串联。此外,还讨论了指数$ n $描述受污染绝缘子的气压对闪络电压的影响程度。

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