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Analytical study on dynamic responses of a curved beam subjected to three-directional moving loads

机译:三向运动载荷作用下弯梁动力响应的解析研究

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摘要

Considering the warping resistance, inertia force and moving three-directional loads, a more comprehensive set of governing equations for vertical, torsional, radial and axial motions of the curved beam are derived. The analytical solutions for vertical, torsional, radial and axial responses of the curved beam subjected to three-directional moving loads are obtained, using the Galerkin method to discretize the partial differential equations and the modal superposition method to decouple the ordinary differential equations. The analytical results are compared with the numerical integration and a published work to verify the validity of the proposed solutions. Effects of Galerkin truncation terms and damping ratio on solution convergence are also discussed. Considering first-mode and higher-mode truncation respectively, the conditions of resonance and cancellation are analyzed for vertical, torsional, radial and axial motions of the curved beam. Taking a curved bridge under passage of a vehicle as an example, the influences of system parameters, such as vehicle speed, braking acceleration, bridge curve radius, bridge span and bridge deck elastic modulus, on bridge midpoint vibration are explored. The proposed approach and results may be beneficial to enhance understanding the three-directional vehicle-induced dynamic responses of curved bridges. It is shown that when the axial motion, or the multiple moving loads are involved, the first-order truncation are not accurate enough and one should use higher-mode truncation to study the responses of curved beams. In addition, it is necessary to consider damping in the vibration study of curved beams.
机译:考虑到翘曲阻力,惯性力和运动的三个方向的载荷,得出了弯曲梁的垂直,扭转,径向和轴向运动的一套更全面的控制方程。利用Galerkin法离散偏微分方程,模态叠加法解耦常微分方程,得到了弯梁在三向运动载荷下的竖向,扭转,径向和轴向响应的解析解。将分析结果与数值积分和已发表的工作进行比较,以验证所提出解决方案的有效性。还讨论了Galerkin截断项和阻尼比对解收敛的影响。分别考虑第一模式和更高模式的截断,分析了弯曲梁的垂直,扭转,径向和轴向运动的共振和抵消条件。以车辆通过时的弯桥为例,探讨了车速,制动加速度,桥弯半径,桥跨度和桥面弹性模量等系统参数对桥中点振动的影响。所提出的方法和结果可能有益于增强对弯桥的车辆的三向动力响应的理解。结果表明,当涉及轴向运动或多个运动载荷时,一阶截断不够精确,应使用高模截断研究弯曲梁的响应。另外,在弯曲梁的振动研究中必须考虑阻尼。

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