Streamer initiation and propagation in transformer oil under positive and negative impulse voltages

J. Jadidian, J. G. Hwang, M. Zahn, N. Lavesson, O. Widlund, K. Borg
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引用次数: 6

Abstract

Electro-thermal hydrodynamic modeling of streamers formed by positive and negative impulse voltages in transformer mineral oil is presented. Negative streamers initiate at roughly two times higher applied voltages while positive streamers propagate about two times faster and occupy much less space. Charge carrier mobilities dependence on the temperature is taken into account as well as the electric field effect on the ionization potential of hydrocarbon molecules. Negative streamer dynamics greatly depend on the variations of electron mobility. On the other hand, positive streamers are mostly dependent on applied impulse voltage rise-time for a given applied voltage peak. Higher applied voltage peaks form faster streamers called higher mode streamers in both polarities.
在正冲击电压和负冲击电压下,拖缆在变压器油中的产生和传播
建立了变压器矿物油中正负冲击电压形成的拖缆的电热流体动力学模型。负流光的初始电压大约是施加电压的两倍,而正流光的传播速度大约是施加电压的两倍,占用的空间也小得多。考虑了载流子迁移率随温度的变化以及电场对烃分子电离势的影响。负流光动力学很大程度上取决于电子迁移率的变化。另一方面,正流光主要依赖于给定施加电压峰值的施加脉冲电压上升时间。在两个极性中,较高的施加电压峰值形成更快的流光,称为高模式流光。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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