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Determine the Electrode Configuration and Sensitivity of the Enclosure Dimensions when Performing Arc Flash Analysis

机译:在执行弧闪分析时确定电极配置和外壳尺寸的灵敏度

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Arc flash hazard prediction methods have become more sophisticated because the knowledge about arc flash phenomenon has advanced since the publication of IEEE Std. 1584-2002 [17]. The IEEE Std. 1584-2018 [13] has added parameters for more accurate arc flash incident energy, arcing current and protection boundary estimation. The parameters in the updated estimation models include electrode configuration, open circuit voltage, bolted fault current, arc duration, gap width, working distance, and enclosure dimension. The sensitivity and effect changes of other parameters have been discussed the previous literatures [8] [9] [11] [2] [12] [15], this paper explains the fundamental theory on the selection of electrode configurations and performs sensitivity analysis of the enclosure dimension, that have been introduced in the IEEE Std. 1584-2018. According to the newly published model for incident energy (IE) estimation, the IE between VCB (Vertical Electrodes inside a metal Box) and HCB (Horizontal Electrodes inside a metal Box) can differ by a factor of two with other parameters constant. Using HCB as the worst-case scenario to determine the personal protection requirements [7] [10] may not be the best practice in all circumstances. This paper provides guidance for electrode configuration selection and a sensitivity analysis for determining a reasonable engineering margin when actual dimension is not available.
机译:自从IEEE Std发布以来,关于电弧闪光现象的知识已经发展起来,电弧闪光危害预测方法已经变得更加复杂。 1584-2002 [17]。 IEEE标准1584-2018 [13]增加了一些参数,用于更精确的电弧闪光入射能量,电弧电流和保护边界估计。更新后的估算模型中的参数包括电极配置,开路电压,螺栓故障电流,电弧持续时间,间隙宽度,工作距离和外壳尺寸。先前的文献[8] [9] [11] [2] [12] [15]讨论了其他参数的灵敏度和效果变化,本文解释了有关电极配置选择的基本理论并进行了灵敏度分析。外壳尺寸,已在IEEE标准中引入。 1584-2018。根据新发布的入射能量(IE)估计模型,在其他参数不变的情况下,VCB(金属盒内的垂直电极)和HCB(金属盒内的水平电极)之间的IE可以相差2倍。在某些情况下,使用六氯苯作为最坏的情况来确定人身保护要求[7] [10]可能不是最佳做法。本文为电极配置选择和灵敏度分析提供了指导,以在无法提供实际尺寸时确定合理的工程裕度。

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