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A theoretical derivation of the transients related to partial discharges in ellipsoidal voids

机译:椭圆空隙中的部分放电有关的瞬态的理论衍生

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Transients associated with partial discharges in ellipsoidal and spheroidal voids are derived in terms of the induced charges on the electrode. The relationship between the induced charge and the properties which are usually measured are discussed. Formulas are obtained from which conclusions can be drawn about the effects of the gas within the void as well as the size, shape, and location of voids. The method is illustrated by applying it to a spheroidal void in a simple disk-type gas-insulated-substation (GIS) spacer. It is found that the nonattaching gas generates an induced charge that is approximately an order of magnitude larger than that generated by the attaching gas. Inception voltages, however, are higher in the latter case by a factor of about 1.5 to 3. The induced charge is therefore proportional to the inverse of the distance from the axis of the electrode system to the center of the void.
机译:与椭圆形和球形空隙中的部分放电相关的瞬态,其就电极上的诱导电荷而导出。讨论了诱导电荷与通常测量的性质之间的关系。可以从哪些结论中获取公式,可以涉及气体在空隙内的效果以及空隙的尺寸,形状和位置。通过将其施加到简单的盘式气体绝缘 - 变电站(GIS)间隔物中的球形空隙来说明该方法。发现非附图气体产生诱导电荷,其大约大约大于由附接气体产生的级的级。然而,在后一种情况下,第二型情况下的成立电压约为1.5至3。因此,感应电荷与从电极系统的轴线到空隙的中心的距离的倒数成比例。

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