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Current-Limiting Fuses: New NFPA 70-2017 Section 240.67, Arc Modeling, and an Assessment Based on the IEEE 1584-2002

机译:限流熔断器:新的NFPA 70-2017第240.67节,电弧建模和基于IEEE 1584-2002的评估

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摘要

When operating in current-limiting mode, current-limiting fuses can effectively mitigate the heat and pressure hazards associated with an arc event because they limit the current in the first one-quarter cycle and interrupt current flow in less than 8.3 ms. The effectiveness of current-limiting fuses is reinforced by their inclusion in NFPA 70E-2015: Note to Table 130.7(C)(15)(A)(b), Annex D.4.6, and Annex O.2.4(4). The incident energy levels associated with current-limiting fuses can be determined from the IEEE Standard 1584-2002, IEEE Guide for Performing Arc-Flash Hazard Calculations. IEEE 1584-2002 presents a method for directly determining incident energy without first determining arc current or arc duration. The fuse equations were derived from 600-V arc tests involving a range of current-limiting fuse sizes. These data are reviewed to assess the performance of current-limiting fuses in reducing arc energy in accordance with NFPA 70-2017 Section 240.67. The IEEE 1584-2002 equations are used to assess the performance of these fuses in comparison with an arc energy reduction maintenance switch and the combination of both technologies. The viability of predicting arc current and incident energy for installations involving current-limiting fuses and implementing NEC Section 240.67 using general arc models is discussed.
机译:在限流模式下工作时,限流熔断器可以有效减轻与电弧事件相关的热量和压力危害,因为它们在第一个四分之一周期内限制了电流,并在不到8.3 ms的时间内中断了电流。 NFPA 70E-2015中加入了限流熔断器,从而提高了其有效性:表130.7(C)(15)(A)(b),附件D.4.6和附件O.2.4(4)的说明。与限流熔断器相关的入射能级可以从IEEE标准1584-2002,IEEE弧闪危险计算指南中确定。 IEEE 1584-2002提出了一种无需先确定电弧电流或电弧持续时间即可直接确定入射能量的方法。保险丝方程式是从600-V电弧测试得出的,涉及一系列限流保险丝尺寸。根据NFPA 70-2017第240.67节的规定,对这些数据进行了评估,以评估限流熔断器在降低电弧能量方面的性能。与电弧能量减少维护开关以及两种技术的组合相比,IEEE 1584-2002公式用于评估这些熔断器的性能。讨论了预测包含限流熔断器的设备的电弧电流和入射能量的可行性,并使用通用电弧模型实施NEC 240.67节。

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