A study of ARC flash incident energy variations based on MCC unit configuration

R. Bugaris, D. Doan
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Abstract

There has been significant progress on arc-flash research in recent years, but there has been little focus on how the internal configuration of equipment affects the incident energy released. The relationship between low voltage motor control center (MCC) unit configurations and incident energy exposure resulting from an arc flash is examined in this study. Testing was conducted using actual MCC structures and units. The design of experiment methodology was used to analyze several MCC configuration variables, including unit type, unit size, percent fill of unit, power wire size and length, location of the unit within the structure, and their relationships to incident energy as well as arcing duration and arcing current. The results from 24 arcing tests were analyzed and the magnitude of incident energy measured during the events was observed to be related to the percent fill of components within the units, and properties of interior unit surfaces.
基于MCC单元结构的电弧闪光入射能量变化研究
近年来,电弧闪光的研究取得了重大进展,但对设备内部结构如何影响入射能量释放的研究却很少。本文研究了低压电机控制中心(MCC)单元配置与电弧闪蒸产生的入射能量暴露之间的关系。使用实际的MCC结构和单元进行了测试。利用实验方法的设计,分析了MCC的几个配置变量,包括单元类型、单元尺寸、单元填充百分比、电源线尺寸和长度、单元在结构中的位置,以及它们与入射能量、电弧持续时间和电弧电流的关系。分析了24次电弧试验的结果,并观察到在事件期间测量的入射能量大小与单元内组件的填充百分比和单元内部表面的特性有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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