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Impact of available fault current variations on arc-flash calculations

机译:可用故障电流变化对弧闪计算的影响

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Prior to the arrival of the arc-flash hazard analysis and incident energy calculations, it was common practice to perform short-circuit studies assuming an infinite source on the primary of the service transformer. With the main goal of a short-circuit study being to compare the maximum calculated short-circuit current to the short-circuit rating of protective devices, using an infinite source resulted in the most conservative short-circuit current. However, since the amount of energy available in an arc-flash incident is not only dependent on the available short-circuit current, but also on the clearing time of the protective device, the assumption of an infinite source on the transformer primary will not guarantee the most conservative results for incident energy calculations downstream of the transformer. This paper examines the effect of utility available fault current on incident energy calculations and provides the study engineer with a list of reasonable assumptions that can be made in the event that actual utility fault information is not available.
机译:在出现飞弧危害分析和入射能量计算之前,通常的做法是在服务变压器的一次绕组上假设源无限的情况下进行短路研究。短路研究的主要目的是将计算出的最大短路电流与保护装置的短路额定值进行比较,使用无限大的电源可产生最保守的短路电流。但是,由于闪弧事件中的可用能量不仅取决于可用的短路电流,而且取决于保护装置的清除时间,因此在变压器一次侧上使用无限源的假设将无法保证对于变压器下游的入射能量计算,最保守的结果。本文研究了公用事业可用故障电流对入射能量计算的影响,并为研究工程师提供了一系列合理的假设,这些假设可以在没有实际的公用事业故障信息的情况下进行。

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