Three-dimensional finite element analysis of a vertical anchor embedded in granular soil

IF 2.3 Q2 ENGINEERING, GEOLOGICAL International Journal of Geotechnical Engineering Pub Date : 2023-02-07 DOI:10.1080/19386362.2023.2195730
Rowshon Jadid, A. R. Shahriar, Md Rejwanur Rahman, Subashish Kundu Sunny
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Abstract

ABSTRACT The present study aims at investigating the behaviour of concrete anchor blocks in cohesionless soil through numerical modelling. A three-dimensional finite element analysis using PLAXIS 3D was conducted to examine the effect of various factors, including anchor shape, embedment depth, and the presence of a groundwater table, on the pullout resistance of anchor blocks. The results showed that anchor shape affects the pullout resistance, particularly for anchor blocks with small aspect ratios. The presence of groundwater table between the ground surface and the base of the anchor block affects the pullout resistance of the anchor block. Based on the results, an empirical correlation was developed to account for the effect of the groundwater table on pullout capacity. The study also compared different pullout capacity prediction models with the results of the numerical simulations for varying embedment depth ratios. The failure modes of the soil body were critically observed and discussed.
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颗粒土中竖向锚杆的三维有限元分析
摘要本研究旨在通过数值模拟研究混凝土锚块在无粘性土壤中的性能。使用PLAXIS 3D进行三维有限元分析,以检查各种因素对锚块抗拔力的影响,包括锚形状、埋置深度和地下水位的存在。结果表明,锚的形状对抗拔性能有影响,特别是对于纵横比较小的锚块。地下水位在地面和锚块底部之间的存在影响锚块的抗拔性。基于这些结果,建立了一个经验相关性来解释地下水位对拉拔能力的影响。该研究还将不同的拉拔能力预测模型与不同埋深比的数值模拟结果进行了比较。对土体的破坏模式进行了严格的观察和讨论。
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来源期刊
CiteScore
5.30
自引率
5.30%
发文量
32
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