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Optimal design of passive viscous dampers for controlling the resonant response of orthotropic plates under high-speed moving loads

机译:被动粘滞阻尼器在高速移动荷载作用下控制正交各向异性板共振响应的优化设计

摘要

In this article, the resonant response of plates traversed by moving loads is addressed being its main application the dynamic performance of railway bridges underhigh-speed traffic. An innovative alternative to reduce the deck inadmissible oscillations that may appear in short simply supported structures in resonant conditions is proposed, based on artificially increasing the superstructure damping by retrofitting the deck with fluid viscous dampers. A particular auxiliary structure transforming the deck vertical deflection into relative movement within the devices is envisaged, being the main objectives of the study to optimise the retrofitting system parameters and to prove its efficiency under the action of railway vehicles. For these purposes, the retrofitted deck behaviour is first investigated using an orthotropicplate model underharmonic excitation. On the basis of an analytical approach, a dimensionless version of the equations of motion is presented, the governing parameters are extracted and an intensive sensitivity analysis of the plate response is performed. Finally, analytical closed-form expressions for the optimal dampers constants are derived and their adequacy is numerically evaluated. To this end, an existing bridge belonging to the Spanish Railway network is analysed using a three-dimensional finite element code specifically programmed by the authors for this application. In the end the controlling effect of the retrofitting system and the applicability of the optimal parameters analytical expressions are proven for a wide range of circulating velocities.
机译:在本文中,移动荷载作用下的板的共振响应被认为是其主要应用在高速交通下铁路桥梁动力性能方面的主要应用。提出了一种创新的替代方案,以减少在共振条件下短时简支结构中可能出现的甲板不允许的振动,这是通过在甲板上加装流体阻尼器来人为增加上层建筑阻尼的基础上提出的。设想了一种特殊的辅助结构,将甲板的垂直挠度转换为设备内的相对运动,这是研究的主要目标,以优化改造系统参数并证明其在铁路车辆作用下的效率。为此,首先使用正交各向异性板模型在谐波激励下研究改装后的甲板性能。在分析方法的基础上,提出了运动方程的无量纲形式,提取了控制参数,并对板响应进行了深入的灵敏度分析。最后,推导了最佳阻尼器常数的解析闭合形式表达式,并对其数值进行了评估。为此,使用作者为该应用专门编程的三维有限元代码分析了属于西班牙铁路网的现有桥梁。最终证明了改造系统的控制效果和最佳参数的分析表达式适用于各种循环速度。

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