Cui Fujiang, Zheng Kaihong, Liu Peng, Wang Han
Beijing Aircraft Technology Research Institute, Commercial Aircraft Corporation of China, Ltd., Beijing 102211, China.
College of Aeronautics and Astronautics, Taiyuan University of Technology, Taiyuan 030024, China.
Sensors (Basel). 2024 Jan 25;24(3):784. doi: 10.3390/s24030784.
In this study, the coupled ordinary differential equations for the galloping of the first two modes in iced bundled conductors, including in-plane, out-of-plane, and torsional directions, are derived. Furthermore, through numerical analysis, the critical conditions of this modal galloping are determined in the range of wind speed-sag parameters, and the galloping patterns and variation laws in different parameter spaces are analyzed. The parameter space is then divided into five regions according to the different galloping modes. Under the multimodal coupling mechanism of galloping, the impact of single and two kinds of coupled mode galloping on the spatial nonlinear behavior is explored. The results reveal that the system exhibits an elliptical orbit motion during single mode galloping, while an "8" motion pattern emerges during coupled mode galloping. Moreover, two patterns of "8" motion are displayed under different parameter spaces. This research provides a theoretical foundation for the design of transmission lines.
在本研究中,推导了覆冰分裂导线前两种模态舞动(包括面内、面外和扭转方向)的耦合常微分方程。此外,通过数值分析,确定了风速-弧垂参数范围内该模态舞动的临界条件,并分析了不同参数空间下的舞动模式和变化规律。然后根据不同的舞动模式将参数空间划分为五个区域。在舞动的多模态耦合机制下,探究了单种和两种耦合模态舞动对空间非线性行为的影响。结果表明,单模态舞动期间系统呈现椭圆轨道运动,而耦合模态舞动期间出现“8”字形运动模式。此外,在不同参数空间下展示了两种“8”字形运动模式。本研究为输电线路设计提供了理论基础。