Lateral load-carrying mechanism of driven battered minipiles

IF 5.6 1区 工程技术 Q1 ENGINEERING, GEOLOGICAL
Sanchari Mondal, Mahdi M. Disfani
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引用次数: 0

Abstract

The lateral load-carrying mechanism of vertically installed and battered minipiles is evaluated using 1g-physical and numerical modelling. Single minipiles with batter angles of 0°, ± 25° and ± 45° are tested under lateral load in medium dense and dense sand. The minipiles are instrumented with fibre Bragg grated optic fibres to obtain a strain profile (two-dimensional) along the minipile shaft. A calibrated numerical model is further adopted to produce p–y curves for battered minipiles at various node deflections. The ratio of soil reaction of battered minipiles to vertically installed minipiles is observed to change with both deflection and depth of the minipile. An analytical solution is developed based on the decomposition of lateral load into skin friction and passive pressure for battered minipiles. A reduction factor is proposed that considers a decrease in passive pressure when the minipile is loaded in the opposite direction of the batter. The analytical solution is capable of accounting for soil properties, pile rigidity and the angle of inclination of battered minipiles. The analytical method is subsequently verified for cohesive soils using full-scale field results. The ratio of the ultimate lateral load of battered minipiles to vertical minipiles presented in the literature corroborated the findings of this study.

Abstract Image

驱动式撞击微型桩的侧向承载机制
采用 1g 物理和数值模型评估了垂直安装和撞击式微型桩的横向承载机制。在中密度和高密度砂中,对撞击角为 0°、± 25°和± 45°的单个微型桩进行了横向荷载测试。微型桩上安装了布拉格光栅光纤仪器,以获得沿微型桩轴的应变曲线(二维)。此外,还采用了一个经过校准的数值模型,以生成不同节点挠度下撞击微型桩的 p-y 曲线。据观察,撞击式微型桩与垂直安装的微型桩的土壤反力比会随着微型桩的挠度和深度而变化。根据将侧向荷载分解为表面摩擦力和被动压力的方法,为撞击式微型桩制定了一个分析解决方案。还提出了一个折减系数,该系数考虑了当微型桩受到与撞击方向相反的荷载时被动压力的减小。分析解决方案能够考虑土壤特性、桩的刚度和撞击式微型桩的倾斜角度。分析方法随后利用全尺寸现场结果对粘性土进行了验证。文献中介绍的撞击式微型桩与垂直式微型桩的极限侧向荷载比证实了本研究的结果。
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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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