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Train-induced vibration prediction in tunnels using 2D and 3D FEM models in time domain

机译:时域中使用2D和3D有限元模型的列车在隧道中的振动预测

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The purpose of this study is to develop a 3D numerical FEM model of a railway tunnel to predict railway induced vibrations, which is calibrated and validated with in situ measurements. After that, two different 2D FEM models are constructed following the same assumptions as in the 3D model but different methodologies to introduce the loads. The results from the different models are used to determine the existing differences among each type of model, and the scope of each one. Vertical accelerations are obtained from each model and compared among them, concluding that the 3D FEM models provide more accurate results with a longer calculation time and require huge computational requirements. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是开发铁路隧道的3D数值有限元模型,以预测铁路引起的振动,并通过现场测量进行校准和验证。之后,按照与3D模型相同的假设,但采用不同的方法来引入载荷,构造了两个不同的2D FEM模型。来自不同模型的结果用于确定每种类型的模型之间的现有差异以及每种模型的范围。从每个模型获得垂直加速度并将它们进行比较,从而得出结论,3D FEM模型以更长的计算时间提供更准确的结果,并且需要巨大的计算需求。 (C)2015 Elsevier Ltd.保留所有权利。

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