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Numerical Investigation on Galloping of Iced Quad Bundle Conductors

机译:冰四束束导体舞动的数值研究

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The aerodynamic coefficients of each subconductor in an iced quad bundle conductor covered with crescent-shaped and sector-shaped cross-sections were determined by the wind tunnel test. A cable element with torsional degree of freedom used to simulate the iced conductor is obtained in ABAQUS software by releasing the two bending degrees of freedom and setting the material to be incompressible. The aerodynamic loads varying with the angle of attack during moving of the bundle conductor are applied on the cable elements used to discretize the iced subconductors through the user-defined element subroutine UEL in ABAQUS. The numerical method verified by two examples is employed to investigate galloping of iced quad bundle conductors at different wind speed, initial angle of attack, ice thickness, ice shape, and span length, and the results reflect the influences of these parameters on the galloping behavior of the quad bundle conductor, which is important for the development of anti-galloping technology.
机译:通过风洞试验确定覆盖有月牙形和扇形截面的冰四束导体中每个子导体的空气动力学系数。通过释放两个弯曲自由度并将材料设置为不可压缩,可以在ABAQUS软件中获得用于模拟冰导体的具有扭转自由度的电缆元件。气动载荷随束导体移动过程中迎角的变化而变化,并通过ABAQUS中用户定义的元素子程序UEL施加在用于离散化冰导体的电缆元素上。通过两个实例验证的数值方法用于研究在不同风速,初始迎角,冰厚度,冰形状和跨度长度下的冰四方束导体的舞动,结果反映了这些参数对舞动行为的影响。四束导体,这对于防振颤技术的发展很重要。

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