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首页> 外文期刊>International journal of geomechanics >Train-Induced Vibrations from a Tunnel in a Layered Half-Space with Varied Groundwater Table
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Train-Induced Vibrations from a Tunnel in a Layered Half-Space with Varied Groundwater Table

机译:用各种地下水位的分层半空间中的隧道训练振动

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摘要

This paper presents an analytical method to analyze the effect of the variation in the groundwater table on train-induced vibrations from subway tunnels. The soil above the groundwater table is considered as a dry single-phase medium, while the soil under the groundwater table is simulated as a saturated porous medium. The solution for wave propagation in a multilayered half-space is derived by using the transfer matrix method. By using the wave transformation, the multilayered soil is subsequently coupled with the tunnel via boundary conditions at their interface. The train-induced vibrations are computed by coupling the proposed tunnel-soil model with the vehicle-track model. The numerical results demonstrate that the displacement field tends to that of a saturated half-space when the groundwater table is above the tunnel, while it tends to that of a dry single-phase half-space as the groundwater table is under the tunnel. The vibration levels increase as the groundwater table drops. Furthermore, the effect of the variation in the groundwater table becomes more significant as the soil permeability decreases.
机译:本文介绍了分析方法,分析地下水表中的地下水位突出振动的效果。地下水位上方的土壤被认为是干燥的单相介质,而地下水位下的土壤被模拟为饱和多孔介质。通过使用传递矩阵法导出多层半空间中的波传播的解决方案。通过使用波形变换,随后通过边界条件在其界面上与隧道耦合。通过与车辆轨道模型耦合所提出的隧道土模型来计算列车诱导的振动。数值结果表明,当地下水位在隧道上方时,位移场倾向于饱和半空间的那个,而当地下水位表位于隧道下方,它倾向于干燥单相半空间的饱和单相半空间。随着地下水位下降,振动水平增加。此外,随着土壤渗透性降低,地下水位的变化的效果变得更加重要。

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