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Development of a Method of Calculating the Melting Characteristics of OPGW Strands Due to DC Arc Simulating Lightning Strike

机译:直流电弧模拟雷击导致OPGW钢绞线熔化特性计算方法的发展

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Some strands of composite fiber-optic ground wire (OPGW) are sometimes melted and broken by high-energy lightning strikes. DC arc tests simulating lightning strikes have been performed to obtain the melting and breaking characteristics of OPGW strands. The tests have to be performed under many conditions concerning the arc (e.g., current, duration, polarity, gap length) and the OPGW (e.g., size, type, and number of strands) to clarify the melting and breaking characteristics of the strands. In this paper, the calculations regarding the melting characteristics of strands are performed considering the transferred heat and its area from the arc to the strands under the aforementioned conditions. The melting characteristics of strands are calculated with an arc current of 1–100 kA considering the measured current of actual lightning. The calculation results of the strand melting duration depending on arc current show good agreement with the experimental values obtained in dc arc tests.
机译:某些复合纤维接地线(OPGW)有时会被高能雷击熔化并折断。已经进行了模拟雷击的直流电弧试验,以获得OPGW线束的熔化和断裂特性。测试必须在许多有关电弧(例如电流,持续时间,极性,间隙长度)和OPGW(例如线束的尺寸,类型和数量)的条件下进行,以阐明线束的熔化和断裂特性。在本文中,考虑到在上述条件下从电弧到钢绞线的传热及其面积,对钢绞线的熔融特性进行了计算。考虑到实际雷电的测量电流,以1–100 kA的电弧电流计算线束的熔化特性。取决于电弧电流的线束熔化持续时间的计算结果与直流电弧试验中获得的实验值显示出良好的一致性。

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