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Dynamic Interaction Analysis Of Urban Transit Maglev Vehicle And Guideway Suspension Bridge Subjected To Gusty Wind

机译:风速作用下的城市轨道交通磁悬浮车辆与导轨悬索桥动力相互作用分析

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摘要

This paper presents a theoretical model for a guideway suspension bridge that is crossed by the urban maglev vehicle when subjected to gusty winds. By combining the eleven-DOF maglev vehicle model and the modal properties of the guideway bridge, the coupled equations of motion are derived. The governing equations are solved in a time domain using the simulated rail roughness and wind fluctuation velocities. Numerical simulations of the maglev vehicle running on the guideway suspension bridge revealed that the vibrations of the vehicle are sensitively affected by its speed and by wind forces because of the strong vehicle-bridge interaction. The ride quality of the maglev vehicle can be diminished by the low frequency vibrations induced by the guideway bridge as well as by turbulent wind.
机译:本文提出了一种轨道悬索桥的理论模型,该悬索桥在遇到阵风时会被城市磁悬浮车辆穿越。通过结合十一自由度磁悬浮车辆模型和导轨桥的模态特性,得出运动耦合方程。使用模拟的轨道粗糙度和风波动速度在时域中求解控制方程。在导轨悬索桥上行驶的磁悬浮车辆的数值模拟表明,由于强烈的车桥相互作用,车辆的振动受到速度和风力的影响。磁悬浮列车的行驶质量会因导轨桥以及湍流引起的低频振动而降低。

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