Dynamic modeling of the temporal evolution of DC flashover discharge current with liquid electrolyte and ice pollution layer

M. Slama, H. Hadi, S. Flazi
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引用次数: 3

Abstract

A dynamic model for predicting dc flashover discharge current behavior of electrolyte and ice covered insulating surfaces is presented. The model takes into consideration insulating geometry, pre-contamination level, electrical field on the front of discharge and characteristics of pollution. Assuming discharge behavior as a time dependant resistance, it is possible to determine leakage currents characteristics and time of flashover using Hampton criteria for propagating of discharge and Rumeli criteria for estimating the displacement of the discharge assuming that the electrical breakdown stress on the front of discharge will be determined by the streamer criteria. The simulated results show that the model is in agreement with experimental results and is more appropriate for high resistance of pollution for electrolyte and ice layer.
液态电解质和冰污染层下直流闪络放电电流时间演化的动态建模
提出了一种预测电解液和覆冰绝缘表面直流闪络放电电流行为的动态模型。该模型考虑了绝缘几何形状、预污染水平、放电前电场和污染特性。假设放电行为是一个与时间相关的电阻,则可以使用汉普顿标准来确定泄漏电流的特性和闪络的时间,使用鲁美利标准来估计放电的位移,假设放电前的电击穿应力将由流光标准确定。仿真结果表明,该模型与实验结果吻合较好,更适合电解液和冰层的高阻污染。
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