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Risk assessment of desert pollution on composite high voltage insulators

机译:复合高压绝缘子的沙漠污染风险评估

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摘要

Transmission lines located in the desert are subjected to desert climate, one of whose features is sandstorms. With long accumulation of sand and with the advent of moisture from rain, ambient humidity and dew, a conductive layer forms and the subsequent leakage current may lead to surface discharge, which may shorten the insulator life or lead to flashover thus interrupting the power supply. Strategically erected power lines in the Egyptian Sinai desert are typically subject to such a risk, where sandstorms are known to be common especially in the spring. In view of the very high cost of insulator cleaning operation, composite (silicon rubber) insulators are nominated to replace ceramic insulators on transmission lines in Sinai. This paper examines the flow of leakage current on sand-polluted composite insulators, which in turn enables a risk assessment of insulator failure. The study uses realistic data compiled and reported in an earlier research project about Sinai, which primarily included grain sizes of polluting sand as well as their salinity content. The paper also uses as a case study an ABB-designed composite insulator. A three-dimensional finite element technique is used to simulate the insulator and seek the potential and electric field distribution as well as the resulting leakage current flow on its polluted surface. A novel method is used to derive the probabilistic features of the insulator’s leakage current, which in turn enables a risk assessment of insulator failure. This study is expected to help in critically assessing – and thus justifying – the use of this type of insulators in Sinai and similar critical areas.
机译:沙漠中的输电线路受到沙漠气候的影响,沙尘暴是其中之一。随着沙子的长期堆积以及由于雨水,环境湿度和露水而出现的水分,会形成导电层,随后的泄漏电流可能导致表面放电,这可能会缩短绝缘子的寿命或导致飞弧,从而中断电源。埃及西奈沙漠中战略性地架设的电力线通常会遭受这样的风险,其中沙尘暴尤其在春季尤为普遍。鉴于绝缘子清洁操作的成本非常高,在西奈半岛,输电线路的复合(硅橡胶)绝缘子被提名替代陶瓷绝缘子。本文研究了沙尘污染的复合绝缘子上的泄漏电流,从而可以评估绝缘子故障的风险。该研究使用了在较早的有关西奈半岛的研究项目中汇编并报告的现实数据,该数据主要包括污染沙粒的大小及其盐分含量。本文还以ABB设计的复合绝缘子作为案例研究。使用三维有限元技术来模拟绝缘子,并寻找势能和电场分布以及由此产生的泄漏电流在其污染的表面上流动。一种新颖的方法用于推导绝缘子泄漏电流的概率特征,从而可以评估绝缘子故障的风险。预期该研究将有助于在西奈和类似的关键地区严格评估(从而证明)此类绝缘子的使用。

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