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首页> 外文期刊>Journal of Engineering and Technological Sciences >An Evaluation of Pile-Raft Interaction in Cohesive Soils using 3D Finite Element Method
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An Evaluation of Pile-Raft Interaction in Cohesive Soils using 3D Finite Element Method

机译:三维有限元法评价三维有限元法中粘性土壤中桩筏相互作用

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摘要

This paper presents the results of a numerical study of soil-structure interaction in a piled-raft foundation system in clay soil by reviewing the deformation and load transfer mechanism of the piled-raft foundation system. ABAQUS was used to evaluate the interaction in the system, while a Mohr-Coulomb constitutive model was chosen to model the clay soil. Verification of the model was conducted by comparing the simulation result to an experimental laboratory result. The verification result showed that the model used in this research agreed well with the experimental laboratory research. Subsequently, a parametric study was performed by varying the pile spacing, raft size, pile length, and raft thickness. A parametric study was conducted on very stiff and hard clays. This study concludes that the load transfer mechanism in a piled-raft foundation system between the pile and raft foundation occurs after the pile reaches its ultimate capacity and is in the plastic zone.
机译:本文通过审查桩筏基础系统的变形和载荷传递机制,介绍了粘土土中堆积筏基础系统中土壤结构相互作用的数值研究的结果。 ABAQUS用于评估系统中的相互作用,而选择MOHR-CULOMB本构模型以模拟粘土土壤。通过将模拟结果与实验实验室结果进行比较来进行模型的验证。验证结果表明,本研究中使用的模型与实验实验室研究相同。随后,通过改变桩间距,筏子尺寸,桩长和筏厚度来执行参数研究。在非常僵硬和硬的粘土上进行参数研究。该研究得出结论,在桩桩达到其极限容量并在塑料区达到桩和筏基础之间的桩和筏基础之间的载荷转移机制。

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