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3D seismic responses of a long lined tunnel in layered poro-viscoelastic half-space by a hybrid FE-BE method

机译:层状粘弹性半空间中长排隧道的三维地震响应的混合有限元分析

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This paper aims to study the seismic responses of a long lined tunnel embedded in a water-saturated poro-viscoelastic half-space, with focus on wave passage effects. The poro-viscoelastic half-space is modeled by the Biot's theory and the soil nonlinearity is considered via an equivalent linear approach. The seismic responses of the tunnel structure are simulated by a 2.5D hybrid FE-BE method. A total of 72 cases of different incident angles for plane SV- and P1-waves are simulated, in order to conduct a systematic study on the tunnel seismic responses, in terms of longitudinal internal forces and strains, as well as seismic pore pressure and soil stresses. It is shown that the spatial variation of earthquake ground motion due to wave passage effects results in considerable longitudinal internal forces of the tunnel lining, which cannot be overlooked for seismic design. The responses of the tunnel depend on both the horizontal and vertical incident angles of the seismic waves. It is also shown that the 2D scenario with perpendicularly incident SV-waves, which is commonly considered in engineering practice, may lead to nonconservative seismic design, especially for tunnels in saturated soil.
机译:本文旨在研究嵌在水饱和多孔粘弹性半空间中的长衬砌隧道的地震响应,重点是波通过效应。孔-粘弹性半空间是根据比奥(Biot)理论建模的,并且通过等效线性方法考虑了土壤非线性。隧道结构的地震响应通过2.5D混合FE-BE方法进行模拟。总共模拟了72个平面SV波和P1波入射角的情况,以便从纵向内力和应变以及地震孔隙压力和土壤的角度对隧道地震响应进行系统的研究。压力。结果表明,由于波浪通过效应引起的地震地震动的空间变化会导致隧道衬砌产生相当大的纵向内力,这在地震设计中是不容忽视的。隧道的响应取决于地震波的水平和垂直入射角。还表明,在工程实践中通常考虑具有垂直入射SV波的2D场景,这可能导致非保守地震设计,尤其是对于饱和土壤中的隧道。

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