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A methodology based on 2.5D FEM-BEM for the evaluation of the vibration energy flow radiated by underground railway infrastructures

机译:基于2.5D FEM-BEM的方法,用于评估地下铁路基础设施辐射的振动能量流量

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摘要

In this paper, a comprehensive numerical approach for modelling track/tunnel/soil systems in the context of ground-borne railway-induced vibration problems considering a full-space model of the soil is proposed. All the approach is formulated in the wavenumber-frequency domain and it consists of a coupled finite element-boundary element model of the tunnel/soil system, a semi-analytical model of the track, a multibody model for the vehicle and a model for the vibration propagation in the soil based on semi-analytical solutions of a cylindrical cavity in a full-space. This comprehensive approach has been developed with the aim of computing the vibration energy flow radiated upwards by underground railway tunnels. An axisymmetric formulation to deal with circular underground railway tunnels is included in the approach in order to improve the computational speed of the methodology. This formulation can also be used for other types of railway tunnels if a circular boundary of the boundary element mesh is considered. Since this methodology uses finite elements to model the tunnel structure, its modelling detail is higher than the previously developed methodologies dedicated to compute the vibration energy flow radiated by underground railway infrastructures, since they are based on semi-analytical modelling of the tunnel structure. The present methodology has been specifically designed to be used in general assessment studies about ground-borne underground railway-induced vibrations where decisions on the type of track and/or the application of mitigation measures at the source, as soft rail-pads, under-ballast or under-slab mats, have to be made. Moreover, this methodology can be used for the study of the vibration radiation patterns of railway tunnels.
机译:在本文中,提出了一种在考虑土壤全空间模型的地基铁路诱导的振动问题中建模轨道/隧道/土壤系统的综合数值方法。所有方法都是在波数频域中配制的,由隧道/土系统的耦合有限元 - 边界元模型组成,轨道的半分析模型,车辆的多体模型和模型全空间中圆柱腔半分析溶液的振动传播。这种综合方法已经开发出来,目的是计算地下铁路隧道向上辐射的振动能量流量。采用轴对称制剂以处理圆形地下铁路隧道,以提高方法的计算速度。如果考虑边界元素网的圆形边界,则该配方也可用于其他类型的铁路隧道。由于该方法使用有限元来模拟隧道结构,因此其建模细节高于以前开发的方法,以计算地下铁路基础设施辐射的振动能量流,因为它们是基于隧道结构的半分析建模。本方法专门设计用于一般性评估研究,关于地下铁路诱导的振动,其中关于轨道类型的决定和/或在源的缓解措施的应用,如软轨垫,在 - 必须制作镇流器或板块垫。此外,该方法可用于研究铁路隧道的振动辐射图案。

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