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An analytical evaluation of the factor k2 for protective conductors

机译:对保护导体的系数k 2 的分析评估

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At the occurrence of phase-to-ground faults, abnormal levels of thermal energy I2t, due to the Joule effect, will be developed during the clearing time that protective devices take to operate. The I2t, also referred to as specific energy or Joule Integral, is accumulated within the elements forming the fault-loop, such as the protective conductors (also referred to as equipment grounding conductors), responsible to return ground-fault currents to the source. As a consequence, the temperature of these conductors elevates and may exceed, in the case of an incorrect design, the maximum value that their insulation can withstand. This dangerous situation can cause the failure of the conductor insulation and/or trigger fires in neighboring materials. The maximum I2t that protective conductors can endure is, therefore, crucial in order to guarantee the electrical safety. The parameters on which the maximum I2t depends are described by the factor k2, which will be herein discussed and analytically evaluated. The intention of the authors is to provide a theoretical support to the Power Systems Grounding Working Group of the Technical Books Coordinating Committee IEEE P3003.2 “Recommended Practice for Equipment Grounding and Bonding in Industrial and Commercial Power Systems”; the working group is currently elaborating a dot standard based on the IEEE standard 142-2007, also referred to as the Green Book. To this purpose, a comparison with existing formulae, currently present in codes, standards of the International Electrotechnical Commission (IEC) and of the IEEE, as well as in literature, will be also presented.
机译:在发生相接地故障时,由于焦耳效应,在保护装置投入运行的清理时间内会产生异常的热能I 2 t。 I 2 t(也称为比能量或焦耳积分)累积在形成故障回路的元件(例如保护导体(也称为设备接地导体))内,将接地故障电流返回到电源。结果,在设计错误的情况下,这些导体的温度会升高并可能超过其绝缘可以承受的最大值。这种危险情况可能导致导体绝缘失效和/或在附近的材料中引发火灾。因此,保护​​导体可以承受的最大I 2 t对于保证电气安全至关重要。最大I 2 t所依赖的参数由因子k 2 描述,将在此处进行讨论和分析评估。作者的目的是为技术书籍协调委员会IEEE P3003.2“工业和商业电源系统中设备接地和连接的推荐做法”的电源系统接地工作组提供理论支持;该工作组目前正在制定基于IEEE 142-2007标准的点标准,也称为绿皮书。为此,还将与现有的公式进行比较,该公式当前存在于国际电工委员会(IEC)和IEEE的规范,标准以及文献中。

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