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Arc-Flash Risk Level Calculations based on Computer Simulations and Measures to Avoid Hazards

机译:基于计算机模拟和避免危险措施的弧闪风险等级计算

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Safety of the electricity distribution personnel during maintenance, repair, test, and measurement in the distribution areas is in the thread of the energy of the electric arcs due to potential short circuit faults. Unfortunately, every year people are injured, burned or killed because of these accidents. In parallel with population increase at metropolitan cities, short circuit levels of the power system, and thereby arc-flash risk levels, increase. This study provides a general overview of the arc-flash analysis and measures to avoid hazards. Arc flash hazard levels are calculated based on computer simulations which are performed by DigSilent PowerFactory power system analysis software. IEEE 1584 and NFPA 70 standards are considered in assessing the simulation results. Temporary change of relay coordination technique (temporary maintenance switching) is investigated as a solution for the substations in which arc-flash hazard level is beyond acceptable levels. Numerical analysis are performed for several medium and low voltage substations in the territory of EnerjiSA Distribution Companies in Turkey.
机译:由于潜在的短路故障,配电人员在配电区的维护,维修,测试和测量期间的安全在于电弧能量的方向。不幸的是,每年都有人因这些事故受伤,燃烧或死亡。在大城市人口增加的同时,电力系统的短路水平以及由此产生的弧闪风险水平也随之增加。这项研究概述了弧闪分析和避免危险的措施。电弧闪光危害等级是根据DigSilent PowerFactory电力系统分析软件执行的计算机模拟计算得出的。在评估仿真结果时考虑使用IEEE 1584和NFPA 70标准。研究了继电器协调技术的临时变更(临时维护切换),作为电弧闪燃危险等级超过可接受水平的变电站的解决方案。在土耳其的EnerjiSA配电公司境内对几个中低压变电站进行了数值分析。

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