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首页> 外文期刊>International journal of geomechanics >Upper-Bound Finite-Element Analysis of Characteristics of Critical Settlement Induced by Tunneling in Undrained Clay
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Upper-Bound Finite-Element Analysis of Characteristics of Critical Settlement Induced by Tunneling in Undrained Clay

机译:不排水粘土中隧穿引起的临界沉降特征的上限有限元分析

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An interesting operation has been developed to estimate the critical normalized surface settlement for shallow tunnels in undrained clay (idealized as a homogeneously Tresca material). The upper-bound finite-element method in combination with a plastic-dissipation-based mesh adaptive strategy is used to obtain upper-bound solutions and velocity fields. Based on the vertical velocity field, the corresponding critical surface settlement field is obtained by introducing an assumed constraint related to soil deformation. The results show that the critical normalized surface settlement pattern is similar to a plug with concentrated strain at the bottom, and the calculated settlement data are fitted well by superimposing two Gaussian curves. The widths of the main settlement trough and the plug increase with increasing dimensionless unit weight D/c, and the plug-type settlement pattern is easily recognized with an increase of dimensionless depth H/D. For different combinations of H/D and D/c, a new normalized equation is developed to evaluate the critical normalized surface settlement. The results agree reasonably well with the solutions reported in the literature.
机译:已经开发出一种有趣的操作来估算不排水粘土(理想化为均匀的Tresca材料)中浅层隧道的临界归一化表面沉降。上限有限元方法与基于塑性耗散的网格自适应策略相结合,用于获得上限解和速度场。根据垂直速度场,通过引入与土壤变形有关的假定约束条件,获得相应的临界表面沉降场。结果表明,临界归一化表面沉降模式与底部集中应变的栓塞相似,并且通过叠加两条高斯曲线可以很好地拟合计算的沉降数据。随着无量纲单位重量D / c的增加,主沉降槽和塞子的宽度增加,并且随着无量纲深度H / D的增加,容易识别塞子型沉降图案。对于H / D和D / c的不同组合,开发了一个新的归一化方程来评估临界归一化表面沉降。结果与文献报道的解决方案相当吻合。

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