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ARC-FLASH INCIDENT ENERGY REDUCTION USING ZONE SELECTIVE INTERLOCKING

机译:使用区域选择性联锁电弧闪光入射能量减少

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As a result of new requirements in NFPA 70E, many facilities are performing arc-flash hazard analyses to better understand how to protect personnel from the possibility of being injured in an arc-flash incident. In many cases in the petrochemical industry, it is unsafe or not practical to shut down electrical equipment to do work. This paper explores practicable options that a facility has to reduce incident energy levels in existing low-voltage systems where the arc-flash hazard analysis results in unacceptably high levels. It will also explore a case study, in the Gulf of Mexico, where an offshore oil production platform was able to cost effectively reduce incident energy levels from approximately 170 calories/cm~2 to under 15 calories/cm~2 by implementing a zone selective interlocking system into their low-voltage switchgear. The selection process logic involving equipment, personnel considerations and commissioning will all be addressed.
机译:由于NFPA 70E中的新要求,许多设施正在进行Arc-Flash危险分析,以更好地了解如何保护人员免受弧形事件中受伤的可能性。在石油化工行业的许多情况下,关闭电气设备工作是不安全的或不实用。本文探讨了实用性选项,即设施必须降低现有的低压系统中的入射能量水平,其中电弧闪光危险分析导致不可接受的高水平。它还将探索墨西哥湾的案例研究,其中海上石油生产平台能够通过实施区域选择性从大约170卡路里/ cm〜2到15卡路里/厘米〜2的入射能量水平。将互锁系统进入其低压开关设备。涉及设备,人员考虑和调试的选择过程逻辑将全部得到解决。

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