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An analytical p-y curve method based on compressive soil pressure model in sand soil 被引量:1
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作者 JIANG Jie FU Chen-zhi +2 位作者 WANG Shun-wei CHEN Chao-qi OU Xiao-duo 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1987-2004,共18页
With the high-quality development of urban buildings,higher requirements are come up with for lateral bearing capacity of laterally loaded piles.Consequently,a more accurate analysis to predict the lateral response of... With the high-quality development of urban buildings,higher requirements are come up with for lateral bearing capacity of laterally loaded piles.Consequently,a more accurate analysis to predict the lateral response of the pile within an allowable displacement is an important issue.However,the current p-y curve methods cannot fully take into account the pile-soil interaction,which will lead to a large calculation difference.In this paper,a new analytical p-y curve is established and a finite difference method for determining the lateral response of pile is proposed,which can consider the separation effect of pile-soil interface and the coefficient of circumferential friction resistance.In particular,an analytical expression is developed to determine the compressive soil pressure by dividing the compressive soil pressure into two parts:initial compressive soil pressure and increment of compressive soil pressure.In addition,the relationship between compressive soil pressure and horizontal displacement of the pile is established based on the reasonable assumption.The correctness of the proposed method is verified through four examples.Based on the verified method,a parametric analysis is also conducted to investigate the influences of factors on lateral response of the pile,including internal friction angle,pile length and elastic modulus of pile. 展开更多
关键词 laterally loaded piles compressive soil pressure model separation effect of pile-soil interface coefficient of circumferential friction resistance analytical p-y curve finite difference method
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考虑软化效应的滨海软土区基桩受力与变形特性分析 被引量:1
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作者 王飞 闫宇 +3 位作者 焦立冬 申奉歧 陈璐 刘建华 《中外公路》 2024年第2期1-8,共8页
为探讨水平荷载作用下滨海软土区基桩受力与变形性能,首先根据滨海软土区基桩受荷特点建立相应的简化受力模型;其次,考虑滨海软土的软化效应,对现有的p‑y曲线模型进行修正;据此导出滨海软土区基桩挠曲微分方程,并通过传递矩阵法对其内... 为探讨水平荷载作用下滨海软土区基桩受力与变形性能,首先根据滨海软土区基桩受荷特点建立相应的简化受力模型;其次,考虑滨海软土的软化效应,对现有的p‑y曲线模型进行修正;据此导出滨海软土区基桩挠曲微分方程,并通过传递矩阵法对其内力及位移进行求解,获得考虑软化效应的滨海软土区基桩非线性计算方法;最后,结合相关工程案例,分析软化参数、桩径和桩体弹性模量对基桩水平承载性能的影响。研究结果表明:采用传递矩阵法对软土区水平受荷桩进行受力分析精度较高,计算效率也高,可为相关工程提供参考;软化参数每增加0.3,地面处桩身水平位移分别减小24.12%和43.04%;桩径每增加0.7 m,地面处桩身水平位移分别减小62.63%和79.65%,桩体位移及内力的影响深度随桩径增大而增大;桩体弹性模量由25.5 GPa增加到36.0 GPa时,桩身变形量分别减小了6.25%和23.06%。 展开更多
关键词 桩基础 软土 软化效应 水平承载特性 p‑y曲线
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Scour effect on a sea-crossing bridge under combined action of service and extreme seismic loads
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作者 ZHU Jin WANG Ya-wei +2 位作者 LI Yong-le ZHENG Kai-feng HENG Jun-lin 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2719-2742,共24页
Foundation scour is an important cause for structural failure of sea-crossing bridges. Usually, the sea-crossing bridges operate under the harsh natural environment in which service wind, wave and vehicle loads are st... Foundation scour is an important cause for structural failure of sea-crossing bridges. Usually, the sea-crossing bridges operate under the harsh natural environment in which service wind, wave and vehicle loads are stronger and extreme loads such as earthquake, hurricane, and ship collision, are more frequent. As a result of the foundation scour,the dynamic behavior of bridge under different combined action of service and extreme loads may be further escalated.In particular, this work has investigated the scour effect on a sea-crossing bridge under service wind, wave and vehicle loads as well as extreme seismic loads. The dynamic coupled earthquake-wind-wave-vehicle-bridge(EWWVB) system is established by considering the interactions within the system, and the p-y curve method is used to calculate the loaddisplacement relation of the pile and soil under various levels of foundation scour. After that, a case study has been performed on a cable-stayed bridge with foundation scour. The results indicate that the dynamic characteristics of bridge structure will change after considering bridge scour, and the dynamic responses of bridge and vehicle will be affected to different degrees under service and seismic loads considering bridge scour. 展开更多
关键词 foundation scour sea-crossing bridges earthquake-wind-wave-vehicle-bridge dynamic system p-y curve scour effect dynamic behavior
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