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Design Aspects of Industrial Distribution Systems to Limit Arc Flash Hazard

机译:工业配电系统的设计方面,以限制电弧闪燃危险

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摘要

Industrial distribution systems have been designed in the USA, considering prevalent standards, i.e., American National Standards Institute (ANSI), IEEE, National Electrical Code (NEC), Occupational Safety and Health Administration (OSHA), etc., and arc flash was not a consideration for designing electrical power systems in the industry. Functionality and economics were the important factors, and will always be so. However, the arc flash analysis and limiting the incident energy will usher a new parameter in system design. It can be demonstrated that in many current installations and new installations designed without considerations of limiting the arc flash energy, the hazard risk category exceeds the highest Class 4 personal protective equipment (PPE), i.e., an arc thermal performance exposure value (ATPV) of 40 cal/cm{sup}2. This paper discusses typical industrial distribution systems at low-voltage and medium-voltage levels and demonstrates the impact of system design decisions and protection on the incident energy and arc flash hazard reduction.
机译:美国已经在设计工业配电系统时考虑了流行的标准,即美国国家标准协会(ANSI),IEEE,国家电气法规(NEC),职业安全与健康管理局(OSHA)等,并且没有电弧闪光设计行业电力系统的考虑因素。功能和经济性是重要的因素,而且将永远如此。但是,电弧闪光分析和限制入射能量将在系统设计中引入新的参数。可以证明,在许多当前的设备和新设计的设备中,没有考虑限制电弧闪光能量的危害危险类别超过了最高的4级个人防护设备(PPE),即电弧热性能暴露值(ATPV)为40 cal / cm {sup} 2。本文讨论了低压和中压水平下的典型工业配电系统,并论证了系统设计决策和保护措施对入射能量和减少弧闪危害的影响。

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