Ultimate Lateral Resistance of Piles in Cohesive Soil

L. Hazzar, M. Karray, M. Bouassida, M. Hussien
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引用次数: 17

Abstract

Abstract The ultimate lateral resistance of piles in cohesive soil is studied using the well-known finite difference code, FLAC2D. The Modified Cam Clay (MCC) constitutive relation is adopted in the analyses to model the cohesive soil behavior, whereas the structural pile model with three degree of freedoms, available in FLAC2D library, is adopted to model the piles. The reliability of Broms's method, still used in the current design practice of piles under lateral loads, is verified. Comparisons between the ultimate lateral resistances of piles and those deduced from the graphs proposed by Broms (1964) are presented in graphs. Different factors thought to affect the lateral resistance of piles in cohesive soil, not adequately considered in Broms's method, such as clay stiffness, pile length, pile diameter and axial load are parametrically studied. A special concern is devoted to elucidate the effects of over-consolidation ratio (OCR) on the ultimate lateral resistance of piles in cohesive soil.
粘性土中桩的极限侧阻力
摘要采用有限差分程序FLAC2D对粘性土中桩的极限侧阻力进行了研究。分析中采用修正Cam Clay (MCC)本构关系来模拟黏性土的行为,采用FLAC2D库中的三自由度结构桩模型来模拟桩的行为。验证了Broms方法的可靠性,该方法目前仍用于桩侧荷载下的设计实践。将桩的极限侧阻力与从Broms(1964)提出的图中推断出的桩的极限侧阻力进行比较,并以图的形式给出。对Broms方法中未充分考虑的粘土刚度、桩长、桩径和轴向荷载等影响粘性土中桩侧阻力的因素进行了参数化研究。研究了超固结比(OCR)对粘性土中桩的极限侧阻力的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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