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Study of Dynamic Impacts on Transmission-Line Systems Attributable to Conductor Breakage Using the Finite-Element Method

机译:用有限元方法研究导体断裂对输电线路系统的动态影响

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摘要

The residual static load (RSL) is defined in the ASCE 74 standard as the loading criteria for a broken wire condition. However, a transmission line designed on the basis of the RSL may be unsafe because the RSL takes no account of the dynamic impact effect. This study develops a general finite-element analysis procedure to resolve the conductor breakage problem and to determine the broken wire load (BWL) for the transmission-line design. The developed procedure can account for the impinging and friction effects between the broken conductor and the ground. A three-span transmission line with the line configurations previously tested at full-scale was examined, and the results showed that the developed procedure could predict a realistic time history of responses. The developed procedure was then applied to a nine-span transmission line, and the results showed that the peak BWL was significantly greater than the RSL, indicating that the peak BWL instead of the RSL should be used to check the extreme load case for the conductor's breakage condition.
机译:残余静载荷(RSL)在ASCE 74标准中定义为断线情况下的载荷标准。但是,基于RSL设计的传输线可能不安全,因为RSL不考虑动态影响。这项研究开发了一种通用的有限元分析程序,以解决导体断裂问题并确定传输线设计的断线负载(BWL)。制定的程序可以解决断开的导体与地面之间的碰撞和摩擦影响。检查了三跨传输线,该传输线具有先前在满量程下测试过的线路配置,结果表明,开发的程序可以预测响应的真实时间历史。然后将开发的程序应用于9跨传输线,结果表明峰值BWL明显大于RSL,这表明应使用峰值BWL代替RSL来检查导体的极端负载情况。破损情况。

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