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Dynamic response of a double-deck circular tunnel embedded in a full-space

机译:全空间嵌入双层圆形隧道的动力响应

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A three-dimensional dynamic model for calculating the ground-borne vibrations generated by harmonic loads applied on the interior floor of a double-deck circular tunnel is developed. The response of the system is obtained coupling the interior floor subsystem and the tunnel-soil subsystem in the wavenumber-frequency domain. The interior floor is modeled as a thin plate of infinite length in the train circulation direction and the tunnel-soil system is described using the Pipe in Pipe model. Some numerical instabilities of the resulting expressions are overcome by using analytic approximations. The results show that the dynamic behavior of the interior floor clearly influences the magnitude of the coupling loads acting on the tunnel structure. The soil response to a harmonic load acting on the double-deck tunnel is compared to the one obtained for the case of a simple tunnel finding significant differences between them for the whole range of frequencies studied. The proposed model extends the prediction of train induced vibrations using computationally efficient models to this type of tunnel structure. (C) 2016 Published by Elsevier Ltd.
机译:建立了三维动力学模型,用于计算由双层圆形隧道内地板施加的谐波载荷产生的地基振动。系统的响应是在波数-频率域内耦合内部地板子系统和隧道-土壤子系统获得的。内部地板被建模为沿列车循环方向无限长的薄板,并且使用“管中管”模型描述了隧道-土壤系统。通过使用解析逼近,可以克服所得表达式的某些数值不稳定性。结果表明,内部地板的动态行为明显影响作用在隧道结构上的耦合载荷的大小。将土壤对作用在双层隧道上的谐波载荷的响应与在简单隧道的情况下获得的响应进行比较,发现在整个研究频率范围内,简单隧道的情况之间存在显着差异。所提出的模型将使用计算有效模型将列车引起的振动的预测扩展到这种类型的隧道结构。 (C)2016由Elsevier Ltd.出版

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