Centrifuge tests on horizontal bearing characteristics of pile groups in coral sand

IF 5.7 1区 工程技术 Q1 ENGINEERING, GEOLOGICAL
Chunyan Wang, Xiao Li, Hanlong Liu, Xuanming Ding, Guangwei Cao, Chunyong Jiang, Yuting Zhang
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Abstract

Coral sand is characterized by the unique properties different from conventional sediments. To investigate the horizontal bearing characteristics of 2 × 2 pile groups in coral sand foundation, a series of centrifuge model tests were conducted, focusing on the effects of pile spacing and vertical dead loads. In this study, the load–displacement responses, bending moments, lateral deflections, and axial force variations were measured. Additionally, soil resistance, p−y curves, and p-multipliers were calculated and analyzed. Results show that increasing pile spacing from 3 to 5D and 7D enhanced the bearing capacity of the pile group by 24.7% and 77.0%, respectively. Compared to the leading pile, the rear pile exhibited reduced bending moments, increased lateral displacements, and lower soil resistance and p-multipliers due to pile–soil–pile interaction and the shadowing effect. Furthermore, the applied vertical dead load amplified the lateral displacement and bending moments of pile due to the P−Δ effect while enhancing soil resistance and increasing p-multipliers through vertical compression. These findings provide valuable insights for future experimental and theoretical research on pile groups in coral sand foundations.

珊瑚砂中群桩水平承载特性的离心试验
珊瑚砂具有不同于传统沉积物的独特性质。为研究珊瑚砂地基中2 × 2群桩的水平承载特性,开展了一系列离心模型试验,重点研究桩距和竖向自重对2 × 2群桩水平承载特性的影响。在这项研究中,测量了荷载-位移响应、弯矩、侧向挠度和轴向力的变化。此外,还计算和分析了土壤阻力、p- y曲线和p乘数。结果表明:桩距由3增至5D和7D,群桩承载力分别提高24.7%和77.0%;与前桩相比,后桩受桩-土-桩相互作用和阴影效应的影响,弯矩减小,侧向位移增大,土阻力和p乘数降低。竖向恒载作用下,由于P−Δ效应,桩侧位移和弯矩增大,竖向压缩作用下土体阻力增强,P乘数增大。这些发现为今后珊瑚砂基础桩群的实验和理论研究提供了有价值的见解。
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来源期刊
Acta Geotechnica
Acta Geotechnica ENGINEERING, GEOLOGICAL-
CiteScore
9.90
自引率
17.50%
发文量
297
审稿时长
4 months
期刊介绍: Acta Geotechnica is an international journal devoted to the publication and dissemination of basic and applied research in geoengineering – an interdisciplinary field dealing with geomaterials such as soils and rocks. Coverage emphasizes the interplay between geomechanical models and their engineering applications. The journal presents original research papers on fundamental concepts in geomechanics and their novel applications in geoengineering based on experimental, analytical and/or numerical approaches. The main purpose of the journal is to foster understanding of the fundamental mechanisms behind the phenomena and processes in geomaterials, from kilometer-scale problems as they occur in geoscience, and down to the nano-scale, with their potential impact on geoengineering. The journal strives to report and archive progress in the field in a timely manner, presenting research papers, review articles, short notes and letters to the editors.
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