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Small strain based method for predicting three-dimensional soil displacements induced by braced excavation

机译:基于小应变的支撑开挖引起的三维土壤位移预测方法

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摘要

Displacement control is a critical indicator of foundation design. Maximum deformations of soil induced by excavations are controlled by the allowable deformations of the adjacent structures. In order to evaluate potential damage of surrounding structures, Finite Element Method (FEM) is commonly adopted, predicting soil responses caused by excavations. As the numerical results obtained from FEM are greatly influenced by input material parameters of soil, inverse analysis is an effective method to obtain these parameters, which is based on the results of on-site testing. In this paper, inverse analysis based on the data of on-site testing considering Chicago clays is firstly conducted to get material parameters of soil. Then, with these input parameters, considering Hardening Soil model with Small Strain stiffness (HSS model), FEM program PLAXIS is used for parameter studies, producing coefficients in the equations of attenuation law of the displacements of the soil. Finally, considering the coupled relationship between the soil and the retaining wall, an empirical method is proposed by the authors to predict the three-dimensional displacements of soil induced by braced excavations. Validation has been done by comparisons between the results obtained by the proposed method and by other methods in the literature. (C) 2015 Elsevier Ltd. All rights reserved.
机译:位移控制是基础设计的关键指标。开挖引起的土壤最大变形受相邻结构的允许变形控制。为了评估周围结构的潜在破坏,通常采用有限元方法(FEM),预测开挖引起的土壤响应。由于从有限元法获得的数值结果受土壤输入材料参数的影响很大,因此基于现场测试的结果,反分析是获得这些参数的有效方法。本文首先基于考虑芝加哥粘土的现场测试数据进行反分析,以获取土壤的材料参数。然后,利用这些输入参数,考虑具有小应变刚度的硬化土模型(HSS模型),将FEM程序PLAXIS用于参数研究,从而在土体位移的衰减规律中产生系数。最后,考虑到土与挡土墙之间的耦合关系,作者提出了一种经验方法来预测支撑开挖引起的土的三维位移。通过比较所提出的方法和文献中其他方法获得的结果,进行了验证。 (C)2015 Elsevier Ltd.保留所有权利。

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