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Electrical Treeing Caused by Rapid DC-Voltage Grounding of XLPE Cable Insulation

机译:交联聚乙烯绝缘层快速直流电压接地引起的电树

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This report presents results from an experimental investigation using Rogowski shaped test objects with needle implants, either fully insulated or in contact with one of the electrodes. In both cases abrupt grounding caused electric breakdown to be initiated at a voltage much lower than the short term breakdown voltage. Reduced breakdown strength occurred due to increased DC pre-stress level, number of rapid voltage groundings and rate of voltage reduction. The observations are explained by the concept of a field limited space charge injection (FLSC). When slowly increasing the applied voltage a cloud of homo charge is likely to be injected into the high field region around the needle tip resulting in reduced local electric stress preventing electrical tree formation. In case of rapid voltage grounding the injected charge will move in the opposite direction, towards the tip electrode. Due to the high local field enhancement, increased electric conductivity, high dissipated power and electromechanical forces may cause electrical treeing and breakdown.
机译:该报告提供了使用Rogowski形状的测试对象进行实验研究的结果,该测试对象带有完全绝缘的或与其中一个电极接触的针头植入物。在这两种情况下,突然的接地都会在远低于短期击穿电压的电压下引发电击穿。由于增加的直流预应力水平,快速的电压接地数量和降压速率导致击穿强度降低。通过场受限空间电荷注入(FLSC)的概念解释了这些观察结果。当缓慢增加施加的电压时,很可能将均匀电荷的云注入到针尖周围的高电场区域中,从而导致局部电应力降低,从而阻止了电树的形成。在快速电压接地的情况下,注入的电荷将朝着尖端电极沿相反方向移动。由于高的局部电场增强,增加的电导率,高的耗散功率和机电力可能会导致电树和击穿。

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