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Plasticity Solutions of an Undrained Cavity Contraction for the Prediction of Soil Behaviour around Tunnels

机译:隧道周围土体行为预测的不排水型腔收缩的塑性解

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Cavity contraction method has been used for decades for the design of tunneling and the prediction of ground settlement, by modelling the cavity unloading process from the in-situ stress state. Analytical solutions of undrained cavity contraction in a unified state parameter model for clay and sand (CASM) are used in this paper to predict the soil behaviour around tunnels. CASM is a critical state soil model with two additional material constants, which has the ability to capture the overall behaviour of clay and sand under both drained and undrained loading conditions. Large-strain and effective stress analyses of cavity contraction provide the distributions of stress/strain within elastic and plastic regions around tunnels. The effects of ground condition and soil model parameters are investigated from the results of stress paths and cavity contraction curves. Comparisons are also provided between the predicted and measured behaviour of tunneling, using data of centrifuge tunnel test in clay. To account for the effect of free ground surface, Loganathan & Poulos's method using undrained gap parameter is incorporated to estimate tunneling induced ground surface settlement.
机译:通过根据现场应力状态对型腔卸载过程进行建模,型腔收缩方法已用于隧道设计和地面沉降预测数十年了。本文采用黏土和砂土的统一状态参数模型(CASM)中的不排水孔洞收缩的解析解来预测隧道周围的土壤行为。 CASM是具有两个附加材料常数的临界状态土壤模型,具有在排水和不排水荷载条件下捕获粘土和沙子总体行为的能力。空腔收缩的大应变和有效应力分析提供了隧道周围弹性和塑性区域内的应力/应变分布。从应力路径和空腔收缩曲线的结果研究了地面条件和土壤模型参数的影响。使用粘土中的离心隧道试验数据,还可以比较隧道的预测行为和实测行为。为了考虑自由地面的影响,采用了不排水间隙参数的Loganathan&Poulos方法来估计隧道引起的地面沉降。

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