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首页> 外文期刊>International journal of geotechnical engineering >Numerical modelling of pile installation and set-up effects on pile shaft capacity
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Numerical modelling of pile installation and set-up effects on pile shaft capacity

机译:桩安装和设置对桩身承载力影响的数值模拟

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摘要

Soil set-up effects significantly contribute to the increase in shaft bearing capacity of prefabricated displacement piles installed in saturated clay. This paper quantitatively distinguishes the effects of two contributing factors, (1) excess pore water pressure dissipation and (2) aging. A large-deformation coupled analysis using a finite-element scheme is used to carry out the analyses. The model only captures excess pore water pressure effect and the differences in skin friction between field measurements and numerical predictions are considered as aging. The results show that the coefficient of lateral earth pressure adjacent to the pile skin increases over time to 2.5 times of the initial coefficient (at rest). Numerical simulation of load-displacement response of static load tests at different times show that the contribution of the first factor which increases the shaft resistance is initially more significant. As time passes, the magnitude of the second factor (aging) becomes more significant.
机译:固结效应极大地促进了安装在饱和黏土中的预制位移桩的竖井承载能力的提高。本文定量区分了两个影响因素的影响,(1)孔隙水压力过大消散和(2)老化。使用有限元方案的大变形耦合分析用于进行分析。该模型仅捕获了多余的孔隙水压力效应,并且现场测量和数值预测之间皮肤摩擦的差异被视为老化。结果表明,邻近桩皮的侧向土压力系数随时间增加至初始系数(静止)的2.5倍。静载荷试验在不同时间的载荷-位移响应的数值模拟表明,增加轴阻力的第一因素的贡献起初更为显着。随着时间的流逝,第二个因素(时效)的幅度变得越来越重要。

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