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Numerical modelling of vibrations from a Thalys high speed train in the Groene Hart tunnel

机译:Groene Hart隧道中Thalys高速列车振动的数值模拟

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This paper presents a numerical study of vibrations due to a Thalys high speed train in the Groene Hart tunnel, which is part of the high speed link South between Amsterdam and Antwerp and the world's largest bored tunnel.A coupled periodic finite element-boundary element model is used to predict the free field response due to the passage of a Thalys high speed train in the Groene Hart tunnel. A subdomain formulation is used, where the track and the tunnel are modelled using a finite element method, while the soil is modelled as a layered half space using a boundary element method. The tunnel and the soil are assumed to be invariant in the longitudinal direction, but modelled as a periodic structure using the Floquet transformation. A general analytical formulation to compute the response of three-dimensional periodic media excited by moving loads is adopted.The Groene Hart area is marshy and completely saturated. The top soil consists of layers of peat and clay with a very low density and shear wave velocity. The numerical model allows to understand the effect of these soft layers on vibration levels, resulting in an amplification of the horizontal response and a large contribution of the quasi-static forces at high train speeds. Vibration levels are assessed using the Dutch SBR guideline. It is concluded that the operation of high speed railway traffic in the Groene Hart tunnel is not expected to cause serious vibration problems.
机译:本文对Groene Hart隧道中Thalys高速列车的振动进行了数值研究,该隧道是阿姆斯特丹和安特卫普之间的高速铁路南部和世界上最大的钻孔隧道的一部分。耦合周期有限元-边界元模型用于预测由于Groene Hart隧道中Thalys高速列车通过而产生的自由场响应。使用子域公式,其中使用有限元方法对轨道和隧道进行建模,而使用边界元方法将土壤建模为分层的半空间。假定隧道和土壤在纵向上是不变的,但是使用Floquet变换将其建模为周期性结构。采用一般的解析公式来计算由移动载荷激发的三维周期性介质的响应。格罗内·哈特(Groene Hart)区域是泥泞的并且完全饱和。表层土壤由泥炭和粘土组成,密度和剪切波速非常低。数值模型允许理解这些软层对振动水平的影响,从而导致水平响应的放大以及在高列车速度下准静态力的很大贡献。使用荷兰SBR指南评估振动水平。结论是,格罗内·哈特隧道的高速铁路交通运营不会引起严重的振动问题。

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