柔性临时沟箱土-结构相互作用:三维有限元模型的参数化研究

IF 0.8 Q3 ENGINEERING, MULTIDISCIPLINARY Modelling and Simulation in Engineering Pub Date : 2021-09-20 DOI:10.1155/2021/9949976
Miah Alam, O. Chaallal, B. Galy
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引用次数: 2

摘要

本文介绍了使用PLAXIS-3D有限元(FE)计算机代码进行的两个参数有限元研究的结果。考虑了以下目标和相应的参数:(i)评估钢槽箱盾构的土压力;研究的参数与土壤类型和材料有关,研究考虑了耕土、干砂、湿砂和敏感粘土;(ii)评估壕箱的材质及几何形状对土压力的影响;所研究的参数与沟槽箱材料(钢与铝)以及几何形状(板厚度和支柱直径)有关。这些研究包括模拟两个钢(或铝)壕箱盾堆叠在一起,以覆盖总6米(20英尺)深的壕沟。采用Mohr-Coulomb (MC)本构材料模型进行有限元分析。将有限元分析结果与敏感黏土的经验表观土压力图进行了比较。对比结果表明,土、沟箱相关参数对土压力有显著影响。
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Soil-Structure Interaction of Flexible Temporary Trench Box: Parametric Studies Using 3D FE Modelling
This paper presents the results of two parametric finite-element studies that were carried out using the PLAXIS-3D finite element (FE) computer code. The following objectives and corresponding parameters were considered: (i) to evaluate the soil pressure on the steel trench box shield; the parameters studied were related to soil type and material, and the study considered till, dry sand, wet sand, and sensitive clay soil; (ii) to assess the effect of trench box material and geometry on earth pressure; the parameters studied were related to trench box material (steel versus aluminum) as well as geometry (plate thickness and strut diameter). These studies included simulation of two steel (or aluminum) trench box shields stacked upon each other to cover the total 6 m (20 ft) deep trench. A Mohr-Coulomb (MC) constitutive material model was chosen for FE analysis (FEA). The FEA results were compared to empirical apparent earth pressure diagrams for a sensitive clay. Comparisons showed that the parameters related to the soil and the trench box have a significant influence on earth pressures.
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来源期刊
Modelling and Simulation in Engineering
Modelling and Simulation in Engineering ENGINEERING, MULTIDISCIPLINARY-
CiteScore
2.70
自引率
3.10%
发文量
42
审稿时长
18 weeks
期刊介绍: Modelling and Simulation in Engineering aims at providing a forum for the discussion of formalisms, methodologies and simulation tools that are intended to support the new, broader interpretation of Engineering. Competitive pressures of Global Economy have had a profound effect on the manufacturing in Europe, Japan and the USA with much of the production being outsourced. In this context the traditional interpretation of engineering profession linked to the actual manufacturing needs to be broadened to include the integration of outsourced components and the consideration of logistic, economical and human factors in the design of engineering products and services.
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