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Numerical simulation of dynamic response around shield tunnel in the soft soil area

机译:软土区盾构隧道周围动态响应的数值模拟

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When a subway train moves through a tunnel, vibrations are generated and transmitted to soils around the tunnel and adjacent structures. Subway train operation has an impact on the shield tunnel lining and the soils around tunnel, especially soft soils that are mostly marine sediments having poor engineering properties. An elastoplastic dynamic finite difference model was built by considering the hysteretic behavior of these marine soft soils and the interaction between the soils and the tunnel to study their dynamic response. Elastic and plastic constitutive models were adopted for tunnel lining and soft soils, respectively. Hysteretic damping was obtained with the Hardin-Drnevich model to reflect the hysteretic behavior of soil under the dynamic load. There are two peaks of the cumulative vertical displacement within 2s of train moving and it reaches a dynamic balance after 2s. The soil layers below the shield tunnel are under the compression and the soil layers above the tunnel are in the extrusion state, and turn to uplift. Maximum bending moment and shear forces of lining vary and appear at different places. A parametric study indicates that the speed of train and the interface have an impact on the dynamic behavior of soft soils.
机译:当地铁列车通过隧道移动时,产生振动并传递到隧道和相邻结构周围的土壤。地铁列车运行对盾隧道衬里和隧道周围的土壤产生影响,尤其是柔软的土壤,主要是船舶沉积物具有差的工程性质。通过考虑这些海洋软土的滞后行为以及土壤和隧道之间的相互作用来研究它们的动态响应,建立了弹塑性动态有限差模型。隧道衬里和软土采用弹性和塑料本构模型。用Hortin-Drnevich模型获得滞后阻尼,以反映动态负荷下土壤的滞后行为。在火车移动2S中有两个累积垂直位移的峰值,并且它在2S后达到动态平衡。屏蔽隧道下方的土层处于压缩下,隧道上方的土层处于挤出状态,然后转向升高。衬里的最大弯矩和剪切力有所不同,出现在不同的地方。参数研究表明火车的速度和界面对软土的动态行为产生了影响。

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