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Arc length vs. electrode gap for underground cable arc flash hazard analysis

机译:电弧长度与电极间隙用于地下电缆电弧闪光危险分析

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The test lab, in association with a major US utility conducted laboratory arc flash testing on various types of cables and cable joints. The objective was to provide the utility with an accurate tool to predict the incident energy levels released by arc faulted underground cables, and thus assist in PPE selection for workers in underground vaults. From the testing results and subsequent analyses, it was deduced that arc lengths from cables can be considerably longer than the distance between the conductor and the shield of the cable; arc lengths should be used in the calculations instead of bus gap distances. The actual arc length at a cable fault in the testing was as long as 18". Further testing is recommended to improve the accuracy for a variety of cable types, arc currents and durations, and to allow the results to be more confidently extrapolated. This paper presents laboratory arc flash testing results for several types of underground cables and cable joints widely used on the utility's distribution system. It demonstrates the differences between the electrode or bus gap distance and arc length, as well as the importance of using the arc length as one of the parameters when conducting incident energy calculations.
机译:测试实验室与主要的美国公用事业公司在各种类型的电缆和电缆接头上进行了实验室电弧闪光测试。该目的是提供一种准确的工具,以预测电弧断层电缆释放的入射能量水平,从而有助于地下拱顶的工人选择PPE选择。从测试结果和随后的分析中,推导出电缆的电弧长度可以比​​导线和电缆屏蔽之间的距离相当长;应在计算中使用电弧长度而不是总线间隙距离。测试中的电缆故障的实际电弧长度长达18“。建议进一步测试,以提高各种电缆类型,电弧电流和持续时间的准确性,并使结果更加自信地推断出来。这个纸张为公用事业分配系统广泛使用的几种地下电缆和电缆接头提供了实验室电弧闪光测试结果。它展示了电极或母线间隙距离和弧长之间的差异,以及使用弧长度的重要性导致事件能量计算时的一个参数。

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