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作 者:周盛全 徐秋伟 冯绍童 戴晨 李栋伟 ZHOU Sheng-quan;XU Qiu-wei;FENG Shao-tong;DAI Chen;LI Dong-wei(School of Civil Engineering and Architecture,Anhui University of Science and Technology,Huainan 232000,China;School of Civil and Architectural Engineering,East China University of Technology,Nanchang 330013,China)
机构地区:[1]安徽理工大学土木建筑学院,淮南232000 [2]东华理工大学土木与建筑工程学院,南昌330013
出 处:《科学技术与工程》2024年第11期4669-4678,共10页Science Technology and Engineering
基 金:国家自然科学基金(42061011);安徽省建筑科学研究设计院基金(2022-JKYL-006);安徽理工大学研究生创新基金(2022CX2051)。
摘 要:为研究粉煤灰单桩复合地基竖向循环承载特性,开展在循环荷载作用下的室内模型试验。通过监测桩身及土体变化情况,分别从桩顶累计沉降、土压力、桩身内力等方面进行分析。试验结果表明:循环桩顶累计沉降前期呈现快速增长,而循环荷载比临界值为0.6,将后期沉降变化划分为稳定型和增长型两种趋势;桩侧土压力主要影响桩身上半部分土体,并沿竖向和径向均出现衰减现象,且竖向衰减更为明显;对桩端阻力强化系数Z和桩侧阻力弱化系数D分别进行拟合,可得到对实际工程中不同循环周期下桩端、桩侧阻力强弱变化情况分析,具有参考依据的函数方程;循环荷载下的桩端/桩侧荷载分担比呈现动态变化,循环周期的增加,将会存在桩端所占承载比例超越桩侧所占比例的占比反超点,循环幅值越大,出现反超点所需的循环次数也越少。In order to study the vertical cyclic load bearing characteristics of fly ash single-pile composite foundation,laboratory model tests under cyclic load were carried out.By monitoring the changes of pile body and soil,the accumulative settlement of pile top,soil pressure and internal force of pile body were analyzed respectively.The test results show that the accumulative settlement of cyclic pile top presents a rapid increase in the early stage,and the critical value of cyclic load ratio is 0.6.The settlement changes in the later stage are divided into two trends:stability and growth.The soil pressure on the side of the pile mainly affects the soil on the side of the pile,and decreases along both vertical and radial directions,and the vertical attenuation is more obvious.By fitting the strengthening coefficient of pile tip resistance and the weakening coefficient of pile side resistance,a functional equation with reference can be obtained to analyze the changes in the strength of pile tip and pile side resistance under different cycles in actual engineering.The load sharing ratio of pile end/pile side under cyclic load presents a dynamic change.With the increase of cycle period,there will be a reverse overload point in which the load proportion of pile end exceeds the proportion of pile side.The larger the cycle amplitude,the fewer cycles required for the reverse overload point.
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