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A transfer function method to predict building vibration and its application to railway defects

机译:传递函数法预测建筑物振动及其在铁路缺陷中的应用

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This work presents a simplified method to evaluate building shaking due to arbitrary base excitations, and an example application to railway problems. The model requires minimal computational effort and can be applied to a wide range of footing shapes, thus making it attractive for scoping-type analysis. It uses the soil excitation spectrum at the building footing location as it's input, and computes the building response at any arbitrary location within it's 3D structure. To show an application of the model versatility, it is used to compute building response due to a variety of singular railway defects (e.g. switches/crossings). It is however suitable for more general applications including railway problems without defects. The approach is novel because current railway scoping models do not use soil-structure transfer functions combined with free-field response to estimate building vibration by railway defects. First the soil-structure interaction approach is outlined for both rigid and flexible footings. Then it is validated by comparing results against a comprehensive fully-coupled 3D FEM-BEM model. Finally, it is used to analyse the effect of a variety of variables related to railway defects on building response. Local track defects are shown to have a strong influence on building vibrations. Further, vibration levels close to the threshold of human comfort are found in buildings close to the railway line. Overall the new approach allows for the computation of building vibrations accounting for soil-structure interaction, floor amplification and the measured/computed free-field response due to railway traffic using minimal computational effort. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项工作提出了一种评估由于任意基础激励引起的建筑物震动的简化方法,并给出了在铁路问题上的示例应用。该模型所需的计算工作量最少,可以应用于各种基础形状,因此对于范围类型分析很有吸引力。它使用建筑物立足点的土壤激发光谱作为输入,并计算3D结构中任意位置的建筑物响应。为了展示模型多功能性的应用,它用于计算由于各种奇异的铁路缺陷(例如道岔/人行横道)而引起的建筑物响应。但是,它适用于更普通的应用,包括无缺陷的铁路问题。该方法是新颖的,因为当前的铁路范围模型没有使用土壤结构传递函数和自由场响应来结合铁路缺陷来估计建筑物振动。首先,概述了刚性和柔性基础的土壤-结构相互作用方法。然后,通过将结果与全面的完全耦合的3D FEM-BEM模型进行比较来对其进行验证。最后,它用于分析与铁路缺陷有关的各种变量对建筑物响应的影响。已显示局部轨道缺陷对建筑物的振动有很大的影响。此外,在靠近铁路线的建筑物中发现接近人类舒适性阈值的振动水平。总的来说,新方法允许使用最小的计算量来计算建筑物振动,从而考虑到土壤与结构的相互作用,地面放大以及由于铁路交通而导致的测量/计算的自由场响应。 (C)2019 Elsevier Ltd.保留所有权利。

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