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Experimental validation of a numerical model for the ground vibration from trains in tunnels

机译:隧道列车地面振动数值模型的实验验证

摘要

Ground vibration and ground-borne noise from trains in tunnels are attracting increasing attention from researchers and engineers. They are important environmental issues related with the operation of underground networks in intensively-populated urban areas. An accurate prediction for this train-induced vibration can be very helpful in the implementation of countermeasures to achieve the control of vibration or noise levels. In this paper, a numerical model is introduced based on the 2.5D Finite Element / Boundary Element methodology. The part of the metro line concerned is built with a cast-iron tunnel lining. The tunnel structure and the track are modelled with finite elements while the ground is modelled using boundary elements. Then the 2.5D tracktunnel-ground model is coupled with a multiple-rigid body vehicle model to determine the response caused by the passage of a train. To validate the prediction results, measurements have been carried out of the vibration of the rail, tunnel invert, tunnel wall and ground surface when the train is passing by and these are compared with the predictions with good agreement.
机译:隧道中火车的地面振动和地面传播的噪声越来越引起研究人员和工程师的关注。它们是与人口稠密的城市地区的地下网络运营相关的重要环境问题。对这种列车引起的振动的准确预测对于实施对策以实现对振动或噪声水平的控制非常有帮助。在本文中,基于2.5D有限元/边界元方法引入了一个数值模型。有关地铁线路的一部分用铸铁隧道衬砌而成。隧道结构和轨道使用有限元建模,而地面则使用边界元建模。然后将2.5D隧道地面模型与多刚体车辆模型耦合,以确定由火车通过引起的响应。为了验证预测结果,已对火车经过时对铁轨,隧道倒置,隧道壁和地面的振动进行了测量,并将这些振动与预测进行了很好的比较。

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