温升对电力电缆泄漏电流和击穿的影响

Y. Abed
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引用次数: 4

摘要

本文报道了在交流高压和直流高压下,温升对电力电缆泄漏电流和热击穿影响的实验研究。建立了泄漏电流与绝缘温度之间的经验关系式。研究发现,当保温材料产生的热量大于周围土壤的散热量时,就会发生热击穿。研究了泄漏电流随温度的变化规律,发现泄漏电流随绝缘温度的升高而增大。电力电缆的泄漏电流可以预测电缆的临界击穿电压。可以预期,通过测量工作温度下的泄漏电流可以检测到显著的劣化,特别是如果劣化已经发展到电缆即将失效的地步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of temperature rise on leakage current and breakdown of power cables
The present work reports an experimental investigation of the effect of temperature rise on the leakage current and thermal breakdown in power cables under both A. C. and D. C. high voltages. An empirical equation was found to give the relation between the leakage current and the temperature of the insulation. It was observed that the thermal breakdown occurs when the heat generation in the insulation is larger than the heat dissipation in the surrounding soil. The variation of the leakage current with the temperature was well investigated and it was found that the leakage current increases with the increasing of insulation temperature. Leakage current in power cable predicts the critical breakdown voltage of the cable. It was anticipated that a significant of deterioration could be detected by measuring the leakage current at the operating temperature especially if the deterioration had progressed to a point where the cable failure is imminent.
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