Power Factor Relevance on Arc Flash A.C

G. Parise, P. Scarpino
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引用次数: 1

Abstract

This paper upgrades a method, proposed to calculate the incident energy and the arc-flash boundary in a previous paper, and introduces a simplified calculation of the arc fault current. The approximated method, proposed as complementary to the method of the IEEE 1584–2018 guide, aims to have a physical understanding of the phenomenon and adopts factors to analyze singularly the various parameters of influence related to the effective value of the bolted short-circuit current, the nominal voltage of the electrical system, the configuration and gap of the electrodes. The results obtained with the proposed approximate calculation are completely comparable with the results obtained with the IEEE 1584–2018 guide, confirming the validity of introduced factors and equations. This paper deals particularly with the relevance of the power factor of the bolted short circuit current in the characterization of the arc fault, the arc voltage value, the arc current and its behavior, continuous or pulsating. Therefore, the knowledge of the arc fault current and of the power factor, which the IEEE 1584 guide does not consider, allows to easily evaluate the operational value of the arc resistance.
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电弧闪络交流的功率因数相关性
本文对前人提出的入射能量和电弧闪弧边界的计算方法进行了改进,提出了电弧故障电流的简化计算方法。作为IEEE 1584-2018指南方法的补充,提出了近似方法,旨在对现象进行物理理解,并采用因子奇异分析与螺栓短路电流有效值、电气系统标称电压、电极配置和间隙相关的各种影响参数。所提出的近似计算结果与IEEE 1584-2018指南的结果完全可比,证实了所引入的因子和方程的有效性。本文重点讨论了螺栓短路电流的功率因数与电弧故障表征、电弧电压值、电弧电流及其连续或脉动行为的关系。因此,了解电弧故障电流和功率因数(IEEE 1584指南没有考虑)可以很容易地评估电弧电阻的工作值。
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