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Investigation on Galloping of D-Shape Iced 6-Bundle Conductors in Transmission Tower Line

机译:传输塔线D形6束导体宏观研究

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摘要

The first comprehensive test base of electrical test transmission line in China has been established. Galloping response characteristics of real test tower-line system covered with D-shape ice model under natural wind load has been recorded. According to the structural details of the test tower-line, the detailed numerical model of the three spans tower-line system has been set up by nonlinear finite element method (FEM). Then, the digital stochastic wind field is presented. Galloping behaviors of the D-shape iced 6-bundle conductors in the test line under stochastic wind field is numerically simulated. Finally, the dynamic response of displacements, galloping traces, galloping modes, and frequencies are obtained. The numerical simulation results are consistent with the measured galloping characteristics results of the test transmission tower-line, which verifies the efficiency of the numerical model. It is demonstrated that the established FEM numerical method can be applied to investigate galloping behaviors of tower-line. Meanwhile, based on the numerical simulation results, the variation of stress and displacement of tower during galloping is also discussed.
机译:建立了中国电气试电线的第一个综合测试基础。记录了自然风负荷下的D形冰型模型覆盖的真实测试塔线系统的疾驰响应特性。根据试验塔线的结构细节,由非线性有限元方法(FEM)建立了三个跨度塔线系统的详细数值模型。然后,提出了数字随机风力场。在数值模拟随机风电场下测试线中的D形冰的6束导体的D形6束导体的疾驰行为在数值上模拟。最后,获得了位移,疾驰迹线,疾驰模式和频率的动态响应。数值模拟结果与测试传输塔线的测量良好特性结果一致,这验证了数值模型的效率。结果证明,建立的有限元数方法可以应用于调查塔线的疾驰行为。同时,基于数值模拟结果,还讨论了疾驰期间塔应力和位移的变化。

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