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Experimental and numerical analysis of damage characteristics to opgw strands under first lightning strike and continuous current

机译:第一次雷击下OPGW股线损伤特性的实验和数值分析及连续电流

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摘要

Optical fiber ground wires (OPGWs) are used to protect power transmission lines from lightning strikes. A lightning test system with a tension device was established to study the properties and influence factors of lightning damage for OPGWs under multiple consecutive lightning strikes composed of current impulse and continuous current. The lightning damage can be divided into arc sweeping damage, melting damage and ab-lation damage. The lightning energy injected through a W-Cu electrode was the most concentrated, leading to the most serious ablation damage and the smallest sweeping damage area. As the action integral and external tensile force increased, the lightning damage became more severe. The broken strands and ablation damage volume decreased as the discharge gap increased from 20 to 40 mm. In addition, a 3D finite element simulation of lightning melting damage was conducted considering the lightning test conditions. When 1850 K, which is close to the melting point of steel, was selected as the criterion temperature for melting damage, the deviations between the simulation and experimental results were less than 10%.
机译:光纤接地线(OPGWS)用于保护雷击的电力传输线。建立了一种带有张力装置的闪电测试系统,以研究由电流脉冲和连续电流组成的多个连续闪电撞击耐光损伤的特性和影响因素。雷电损坏可分为闪烁扫描损坏,熔化损坏和AB损伤。通过W-Cu电极注入的闪电能量是最浓烈的,导致最严重的消融损坏和最小的扫伤区域。随着动作积分和外部拉伸力的增加,雷击变得更加严重。由于排出间隙增加到20至40mm,残余的股线和消融损伤体积减小。此外,考虑到闪电试验条件,进行了雷电熔断损坏的3D有限元模拟。选择接近钢的熔点的1850 k作为熔化损坏的标准温度时,模拟和实验结果之间的偏差小于10%。

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