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Pollution flashover calculation model based on characteristics of AC partial arc on top and bottom wet-polluted dielectric surfaces

机译:基于顶部和底部湿污染电介质表面交流偏电弧特性的污染闪络计算模型

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摘要

A double-arc model, which considers the differences between characteristics of AC partial arcs on top and bottom surfaces, was proposed for predicting the flashover voltage of polluted insulators in this paper. The arc constants parameters, the arc reignition criteria, as well as the radii of arc columns in the proposed model were determined by measuring partial arcs on the top and bottom wet-polluted surfaces of a triangular glass plate separately. A ":0;" type glass model was made to investigate the partial arc propagation process by using an ultra-high speed camera. It has been found that the arc length increased linearly with leakage current amplitude, the ratio of arc length increments on top and bottom surface was related to salt deposit density (SDD) rather than leakage current. Based on above-mentioned researching results, the double arc calculation model was established, and the calculated results were in good agreement with the experimental results.
机译:提出了一种考虑了上下表面交流局部电弧特性差异的双电弧模型,用于预测被污染绝缘子的闪络电压。通过分别测量三角形玻璃板的顶部和底部湿污染表面上的局部电弧,确定了所提出模型中的电弧常数参数,电弧再燃准则以及电弧柱的半径。一个“:0;”用超高速相机制作了一种玻璃模型来研究部分电弧传播过程。已经发现电弧长度随泄漏电流幅度线性增加,顶表面和底表面上电弧长度增加的比例与盐沉积密度(SDD)有关,而不与泄漏电流有关。基于上述研究结果,建立了双弧计算模型,计算结果与实验结果吻合良好。

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