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SUB-STRUCTURING APPROACH OF THE PREDICTION OF BUILDING VIBRATIONS INDUCED BY RAILWAY TRAFFIC

机译:铁路交通诱导建筑振动预测的子结构方法

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This paper presents a sub-structuring approach to predict the building vibrations generated by railway traffic. The three-dimensional building is simulated by rectangular plates supported by a distribution of columns and is modelled by the dynamic stiffness method. The building model is coupled with the layered half-space by using the continuity condition. The building vibrations generated by surface railways and underground railways are examined by two case studies. In the two cases, the analytical models are applied to calculate the incident wave field generated by railway traffic. The proposed method shows sufficient efficiency, making it suitable for performing many types of parametric studies and large-scale vibration predictions. It is found that the building vibration levels decrease as the distance from the building to the railway line increases, which is induced by the attenuation of the waves due to geometrical spreading in the soil. The floating slab can significantly reduce the building vibration levels starting from its cut-off frequency.
机译:本文提出了一种副结构化方法,以预测铁路交通产生的建筑振动。三维建筑物由由柱分布支撑的矩形板模拟,并由动态刚度法建模。建筑模型通过使用连续性条件与分层半空间耦合。两种案例研究检查了地面铁路和地下铁路产生的建筑振动。在这两种情况下,应用分析模型来计算铁路交通产生的事件波场。该方法显示了足够的效率,使其适用于执行许多类型的参数研究和大规模振动预测。结果发现,随着从建筑物到铁路线的距离增加,建筑振动水平降低,这是通过土壤中的几何扩散而衰减波的衰减引起的。浮动板可以显着降低从其截止频率开始的建筑振动水平。

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