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The Role of Methylnaphthalene in EHV Cable Oil as Related to Oil Breakdown and Discharge Velocity

机译:甲基萘在超高压电缆油中的作用与油分解和排放速度的关系

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摘要

This experimental investigation explores the effect of high voltage lightning surges on the insulating oil used in the oil filled extra high voltage cables that serve electric power networks worldwide. Using non-uniform electrode configuration, the breakdown voltage and corresponding discharge propagation velocities in oil samples that are doped with trace amounts of 1-Methylnaphthalene are investigated under both polarities of applied stresses in gap spacing of up to 10 mm. Two distinct ranges of additive concentrations are observed which effect these characteristics. Generally, the positive discharge growth decreases with increase in gap spacing while the negative ones show opposite behaviour. Anomalous behaviour of discharge growth is observed at an optimum concentration of additive, as it attains supersonic velocity which increases with the increase in gap spacing. A correlation between the positive impulse breakdown voltage and the discharge propagation velocity is also established.
机译:这项实验研究探索了高压雷电浪涌对填充油的超高压电缆中使用的绝缘油的影响,这些电缆为全球的电力网络服务。使用非均匀电极配置,在施加应力的两个极性下,在间隙间距最大为10 mm的情况下,研究了掺杂痕量1-甲基萘的油样品中的击穿电压和相应的放电传播速度。观察到影响这些特性的两个不同的添加剂浓度范围。通常,正极放电的增长随着间隙间距的增加而降低,而负极放电则表现出相反的行为。在添加剂的最佳浓度下观察到了放电生长的异常行为,因为它达到了超音速,并且随着间隙间距的增加而增加。在正脉冲击穿电压和放电传播速度之间也建立了相关性。

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