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On the basic phenomenon of soil-structure interaction on the free vibration response of beams: Application to railway bridges

机译:关于梁自由振动响应的土-结构相互作用的基本现象:在铁路桥梁中的应用

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The dynamic transverse response of beam type bridges under railway traffic is addressed in this contribution. In particular, how soil-structure interaction may affect the critical or resonant velocities and the associated vibratory amplitudes is evaluated in detail. Resonance in beams, due to the circulation of equidistant loads, is highly influenced by the free vibration response that every single load leaves after traversing the structure. On this basis a numerical investigation is carried out analysing the effects of the wave propagation problem on the free vibration response of simply-supported beams in a wide range of travelling velocities. To this end a coupled three-dimensional boundary element-finite element model formulated in the time domain is used to reproduce the soil and structural behaviour, respectively. A catalogue of bridge deck typologies is defined, covering lengths, associated linear masses and fundamental frequencies that may experience high levels of transverse accelerations under resonant conditions, for nowadays existing trains and design velocities, Lengths ranging from 12.5 to 25 m are evaluated, along with fundamental frequencies covering most common typologies. A homogeneous soil is considered with shear wave velocities in the interval 150 to 365 m/s. From the single load free vibration parametric analysis conclusions are derived regarding the conditions of maximum free vibration and cancellation of the deck response. These conclusions are used afterwards to justify how resonant amplitudes of the bridge under the circulation of railway convoys may be affected by the soil properties, leading to substantially amplified responses or to almost imperceptible ones, and a numerical example is included to show the aforementioned situations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:此贡献解决了梁式桥梁在铁路交通下的动态横向响应。特别是,详细评估了土壤与结构的相互作用如何影响临界或共振速度以及相关的振动幅度。由于等距载荷的循环,梁中的共振受到遍历结构后每个单个载荷离开的自由振动响应的极大影响。在此基础上,进行了数值研究,分析了波传播问题对大范围行进速度下简支梁自由振动响应的影响。为此,在时域中建立了耦合的三维边界元-有限元模型,分别用于再现土壤和结构特性。定义了桥面板类型目录,涵盖了在共振条件下可能经历高水平加速度的长度,相关的线性质量和基本频率,对于当今的现有列车和设计速度,评估范围为12.5至25 m,以及基本频率涵盖最常见的类型。认为均质土壤的剪切波速度介于150至365 m / s之间。从单次无载荷振动参数分析得出有关最大自由振动和甲板响应抵消的条件的结论。这些结论随后被用来证明在铁路车队的循环下桥梁的共振振幅如何受到土壤性质的影响,从而导致反应的实质性放大或几乎不可察觉的响应,并且包括一个数值示例来说明上述情况。 (C)2016 Elsevier Ltd.保留所有权利。

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