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Flexible Temporary Shield in Soft and Sensitive Clay: 3D FE Modelling of Experimental Field Test

机译:软敏感粘土中灵活的临时屏蔽:3D实验田间测试的FE模型

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A finite-element (FE) numerical study using PLAXIS-3D software was carried out to reproduce and validate a full-scale experimental in situ test and to investigate the earth pressure on a flexible temporary trench box shield in soft and sensitive clay soil. The excavation trench model was 6?m (20?ft) deep and was considered as nonlinear and anisotropic clay. A 45?kPa (0.94?ksf) surface overload on top of the soil near the trench box was also simulated to produce a maximum load case on the flexible wall of the shield. Both Mohr-Coulomb (MC) and hardening soil (HS) constitutive soil models were considered for FE analysis. Different values of the modulus reduction factor (MRF) and the coefficient of earth pressure at rest ( ) were considered to validate the model. For a specific shear strength profile, FE analysis with a linear elastoplastic soil model showed relatively small differences in soil pressure with the field test results along the depth of the trench. Results were also compared with the predictions of well-established analytical formulae.
机译:进行了使用PLAXIS-3D软件的有限元(FE)数值研究,以再现并验证了一种全规模的实验原位测试,并研究了软敏感粘土土壤中柔性临时沟槽屏蔽上的接地压力。挖掘沟槽模型为6?m(20≤ft)深,被认为是非线性和各向异性粘土。还模拟了45?KPA(0.94 kSF)在沟槽盒附近的土壤顶部的表面过载,以在屏蔽的柔性壁上产生最大载荷盒。考虑了MoHR-Coulomb(MC)和硬化土壤(HS)组成的土壤模型进行FE分析。考虑模量减少因子(MRF)的不同值和休息()的接地压力系数以验证模型。对于特定的剪切强度剖面,用线性弹塑性土壤模型的Fe分析表现出沿着沟槽深度的现场测试结果对土壤压力的差异相对较小。结果也与既定的分析配方的预测进行了比较。

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