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Dynamic response analysis of suspended beams subjected to moving vehicles and multiple support excitations

机译:车辆移动和多种支撑激励作用下悬梁的动力响应分析

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For dynamic analysis of a suspended beam subject to the simultaneous action of moving oscillators and multiple support motions, we need to deal with nonlinear interaction problems in conjunction with time-dependent boundary conditions. In this study, the total response of the suspended beam is decomposed into two parts: the pseudo-static response and the inertia-dynamic component. Then, the pseudo-static displacement is analytically obtained by exerting the support movements on the suspended beam statically and the governing equations in terms of the inertia-dynamic component as well as moving oscillators are transformed into a set of coupled generalized equations by Galerkin's method. Instead of solving the coupled equations containing pseudo-static support excitations and moving oscillators, this study treats all the nonlinear coupled terms as pseudo forces and solves the decoupled equations using the Newmark method with an incremental-iterative approach. Numerical investigations demonstrate that the present solution technique is available in dealing with the vehicle/bridge interaction problem involving multiple support motions, and that appropriate adjustments of cable sag ratios subject to the condition of identical bridge frequencies are beneficial for mitigating the earthquake-induced vibration of suspended bridge/vehicle coupling system.
机译:对于受振动器同时作用和多种支撑运动同时作用的悬梁的动力学分析,我们需要结合时变边界条件来处理非线性相互作用问题。在这项研究中,悬挂梁的总响应被分解为两部分:伪静态响应和惯性-动力分量。然后,通过将支撑运动静态地施加到悬臂梁上来解析获得伪静态位移,并根据Galerkin方法将惯性动力分量以及运动振荡器的控制方程式转化为一组耦合的广义方程式。代替求解包含伪静态支持激励和运动振荡器的耦合方程,本研究将所有非线性耦合项视为伪力,并使用带有增量迭代方法的Newmark方法求解解耦方程。数值研究表明,本解决方案技术可用于处理涉及多种支撑运动的车辆/桥梁相互作用问题,并且在相同桥梁频率的条件下适当调整电缆垂度比对于减轻地震引起的地震振动是有益的。悬索桥/车辆耦合系统。

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