嵌入刚性非饱和粘土中的侧向荷载桩非线性力学行为的高级数值模拟

IF 0.4 4区 工程技术 Q4 ENGINEERING, CIVIL Journal of the South African Institution of Civil Engineering Pub Date : 2023-06-27 DOI:10.17159/2309-8775/2023/v65n2a4
K. Braun, N. Bakas, G. Markou, S. Jacobsz
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引用次数: 0

摘要

捕获和理解嵌入土壤中的钢筋混凝土桩的极限状态行为需要使用先进的工具或昂贵的测试性能。在刚性非饱和粘土剖面中预埋钢筋混凝土桩进行了现场荷载试验。然而,尽管原位实验可以为工程师提供有价值的见解,但其成本和时间限制也受到限制,特别是在处理土壤材料特性、桩的大小或桩的材料特性的参数化调查时。本研究工作的目的是通过详细的三维建模,对横向加载全尺寸桩的非线性力学行为进行数值模拟,并进行深入的参数调查,为实际物理实验无法回答的未知因素提供答案。此外,这项工作将作为一个试点项目,用于为开发多种土壤-结构相互作用模型铺平道路,这些模型将用于生成一个数据集,该数据集有助于通过机器学习算法创建预测模型。根据本研究工作的需要,采用8节点等参六面体单元对钢筋混凝土桩进行离散,并采用涂抹裂缝法计算裂缝。钢筋和箍筋采用内嵌钢筋单元进行模拟,土域采用8节点六面体单元进行离散。非线性分析中所假定的大部分材料性能都是根据相关的实验室实验确定的。数值研究表明,所建立的数值模型能够较准确地再现试验结果,同时对土域和钢筋混凝土域的破坏机制都有深入的了解。
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Advanced numerical modelling of the nonlinear mechanical behaviour of a laterally loaded pile embedded in stiff unsaturated clay
Capturing and understanding the ultimate limit state behaviour of reinforced concrete piles embedded in soil requires the use of advanced tools or the performance of expensive tests. An experiment was performed where reinforced concrete piles embedded in a stiff unsaturated clay profile were load-tested on-site. However, even though in-situ experiments can provide engineers with valuable insight, their cost and time limitations come with restrictions, especially when dealing with a parametric investigation on the soil's material properties, the size of the piles, or the piles' material properties. The objective of this research work was to numerically model the nonlinear mechanical behaviour of laterally loaded full-scale piles through detailed 3D modelling, and perform an in-depth parametric investigation to provide answers to unknown factors that the actual physical experiment could not answer. Furthermore, this work serves as a pilot project that will be used to pave the way in developing multiple soil-structure interaction models that will be used to generate a dataset that helps the creation of predictive models through machine learning algorithms. For the needs of this research work, the reinforced concrete piles were discretised with 8-noded isoparametric hexahedral elements that accounted for cracking through the smeared crack approach. Steel reinforcement bars and stirrups were simulated as embedded rebar elements, while the soil domain was also discretised through 8-noded hexahedral elements. Most of the required material properties assumed during the nonlinear analyses were defined according to relevant laboratory experiments. According to the numerical investigation, it was found that the proposed numerical model has the ability to reproduce the experimental results with high accuracy, while providing in-depth insight on the failure mechanisms for both the soil and reinforced concrete domains.
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来源期刊
CiteScore
0.70
自引率
25.00%
发文量
19
审稿时长
>12 weeks
期刊介绍: The Journal of the South African Institution of Civil Engineering publishes peer reviewed papers on all aspects of Civil Engineering relevant to Africa. It is an open access, ISI accredited journal, providing authoritative information not only on current developments, but also – through its back issues – giving access to data on established practices and the construction of existing infrastructure. It is published quarterly and is controlled by a Journal Editorial Panel. The forerunner of the South African Institution of Civil Engineering was established in 1903 as a learned society aiming to develop technology and to share knowledge for the development of the day. The minutes of the proceedings of the then Cape Society of Civil Engineers mainly contained technical papers presented at the Society''s meetings. Since then, and throughout its long history, during which time it has undergone several name changes, the organisation has continued to publish technical papers in its monthly publication (magazine), until 1993 when it created a separate journal for the publication of technical papers.
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