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Simulations of the controlling effect of interphase spacers on conductor galloping

机译:相间垫片对导体舞动控制效果的模拟

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Conductor galloping on overhead transmission lines can be a major problem and the interphase spacers is a countermeasure which has been found to be effective. There is, however, little theoretical basis for their use and for defining their design parameters. In this paper, a galloping simulation model is used in which the aerodynamic force is replaced by a sinusoidal excitation with a frequency equal to the natural vertical galloping frequency of the line. This is used to analyze the ability of interphase spacers to control the galloping amplitude. A full-scale free oscillation test on a triple-span transmission line was conducted and good agreement was obtained with the simulation calculation. Then by simulation, the changes of galloping amplitude and conductor tension were determined in terms of the initial excitation amplitude, both with and without interphase spacers. The dynamic spacer tension during galloping was also computed. The results clearly indicated the effectiveness of interphase spacers to control galloping, and show that the methods used will be useful and applicable to the design of interphase spacers to control galloping and to determine where they can best be deployed.
机译:架空输电线上的导体疾驰可能是一个主要问题,相间隔离层是已发现有效的对策。但是,它们的使用和定义其设计参数的理论依据很少。在本文中,使用了一个疾驰仿真模型,其中用正弦激励代替了空气动力,该正弦激励的频率等于线路的自然垂直疾驰频率。这用于分析相间垫片控制舞动幅度的能力。在三跨传输线上进行了全面的自由振荡测试,并与仿真计算取得了良好的一致性。然后通过仿真,在有和没有相间隔物的情况下,根据初始激励幅度确定了驰豫幅度和导体张力的变化。还计算了奔腾过程中的动态垫片张力。结果清楚地表明了相间隔离物控制舞动的有效性,并表明所使用的方法将对相间隔离物的设计有效且适用于控制舞动并确定最佳部署位置。

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