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Application of dynamic two-arc model to flashover of HVDC insulators subjected to cold climate regions

机译:动态两弧模型在寒冷地区高压直流绝缘子闪络中的应用

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The main objective of this contribution is to present a dynamic two-arc model to study the behavior of DC arcs on ice-covered post insulators. This model provides an appropriate tool to determine minimum flashover voltage (VMF) which is a determining factor in the selection of insulators under icing conditions. The proposed model takes into account the environmental pollution level, insulator geometry and, most importantly, applied voltage polarities. The model is validated against laboratory data consisting of flashover tests on a typical 735-kV ice-covered post insulator under DC voltage. The experimental results have good agreement with those computed by the proposed model. This model could be regarded as an important basis for the development of multi-arc models, not to mention being a powerful tool for the design and selection of EHV insulators subjected to ice accretion.
机译:这一贡献的主要目的是提出一个动态的两弧模型,以研究覆冰后绝缘子上直流电弧的行为。该模型提供了确定最小闪络电压(VMF)的合适工具,该电压是在结冰条件下选择绝缘子的决定因素。提出的模型考虑了环境污染水平,绝缘体的几何形状以及最重要的是施加的电压极性。该模型已通过实验室数据验证,该数据包括在直流电压下对典型735 kV覆冰支柱绝缘子的闪络测试。实验结果与所提模型计算结果吻合良好。该模型可以被认为是开发多弧模型的重要基础,更不用说是设计和选择承受结冰的超高压绝缘子的有力工具。

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