The performance of laterally loaded piles in layered sandy soils under variable degree of saturation

A. M. M. Hasan, R. Hummadi, Omed Azeez
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引用次数: 0

Abstract

This paper investigates the capacity of a single laterally loaded pile in single- and multi-layered sandy soils under dry, unsaturated and saturated conditions for a wide range of void ratios. Two Linear ariable Differential Transformers (LVDT) were employed to measure lateral displacements. For unsaturated tests, on one layer and two layered sandy soils, suction was controlled using the hanging column technique. Two different suction levels were applied to the soils. The results demonstrated that, the capacity of a single laterally loaded pile in single- and multi-layered sandy soils, under unsaturated conditions, were greater than those in dry and saturated conditions for loose, medium and dense states. Comparison between experimental data for unsaturated tests and several proposed mathematical expressions in the literature for calculating the capacity of a single laterally loaded pile in sandy soils showed a significantly good fit between measured and predicted values of the capacity of the piles where Bishop’s stress is used in the expressions instead of effective stress, confirming the importance of inclusion of suction and degree of saturation in mathematical models when unsaturated conditions of soils were investigated.
层状砂土中不同饱和度下横向荷载桩的性能
本文研究了在大空隙比范围内的干燥、非饱和和饱和条件下单层和多层砂土中单桩横向荷载的承载力。采用两台线性可变差动变压器(LVDT)测量横向位移。非饱和试验中,在单层和双层砂土上,采用悬挂柱技术控制吸力。对土壤施加了两种不同的吸力水平。结果表明:在非饱和条件下,单桩横向荷载作用于单层和多层砂土中的承载力大于干、饱和状态下的承载力;将非饱和试验数据与文献中提出的几种计算砂质土中单侧荷载桩承载力的数学表达式进行比较,结果表明,在用Bishop应力代替有效应力的情况下,桩承载力的实测值与预测值之间有很好的拟合。确认了非饱和土数学模型中包含吸力和饱和度的重要性。
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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来源期刊
E3S Web of Conferences
E3S Web of Conferences Energy-Energy (all)
CiteScore
0.90
自引率
0.00%
发文量
1133
期刊介绍: E3S Web of Conferences is an Open Access publication series dedicated to archiving conference proceedings in all areas related to Environment, Energy and Earth Sciences. The journal covers the technological and scientific aspects as well as social and economic matters. Major disciplines include: soil sciences, hydrology, oceanography, climatology, geology, geography, energy engineering (production, distribution and storage), renewable energy, sustainable development, natural resources management… E3S Web of Conferences offers a wide range of services from the organization of the submission of conference proceedings to the worldwide dissemination of the conference papers. It provides an efficient archiving solution, ensuring maximum exposure and wide indexing of scientific conference proceedings. Proceedings are published under the scientific responsibility of the conference editors.
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