大厚度人工填土地基中桩基的水平承载特性
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作者单位:

1.兰州交通大学,土木工程学院,兰州730070;2.兰州交通大学,道桥工程灾害防治技术国家地方联合工程实验室,兰州730070

作者简介:

刘德仁(1978- ),男,教授,博士,主要从事岩土工程及特殊土与寒区工程研究,E-mail: liuderen@mail.lzjtu.cn。
LIU Deren (1978- ), professor, PhD, main research interests: geotechnical engineering and special soil and cold region engineering, E-mail: liuderen@mail.lzjtu.cn.

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中图分类号:

TU473.1

基金项目:

国家自然科学基金(51868038);甘肃省基础研究创新群体项目(21JR7RA347)


Horizontal bearing characteristics of pile foundation in large thickness artificial fill foundation
Author:
Affiliation:

1.School of Civil Engineering, Lanzhou Jiaotong University, Lanzhou 730070, P. R. China;2.Road and Bridge Engineering Disaster Prevention Technology National Local Joint Engineering Laboratory, Lanzhou Jiaotong University, Lanzhou 730070, P. R. China

Fund Project:

National Natural Science Foundation of China (No. 51868038); Basic Research Innovation Group Project of Gansu Province (No. 21JR7RA347)

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    摘要:

    为探究大厚度人工填土地基桩基水平承载特性及m法在实际工程中的适用性,进行了单桩水平承载现场试验与m法理论计算,得到了桩基在水平荷载作用下的位移和弯矩变化规律、水平荷载作用下的桩-土变形规律,并进一步得到了地基土水平抗力系数的比例系数m随荷载与位移的变化情况。结果表明:随着荷载的增加,水平位移不断增大,达到临界荷载480 kN后,桩基的水平位移和位移梯度均发生突变;在同一荷载下,桩基弯矩随深度的增加出现先增大后减小的规律,弯矩图呈现“两头小,中间大”的分布模式;同一深度时,随着荷载的增大,在一定深度处出现负弯矩,弯矩沿深度的影响范围约10 m;水平抗力系数的比例系数m值随荷载和位移的增大呈幂级数减小,且当荷载与位移较小时,两桩m值相差较大,荷载与位移增大到一定值后,两桩m值接近,且最后稳定在一特定值附近。通过试验数据对m法计算结果进行验证与改进:对比发现m法计算最大位移与实测结果接近;当荷载较小时,计算最大弯矩与实测结果接近,超过临界荷载后,相差较大,说明荷载达到临界值时最大弯矩发生了突变,需要通过修正系数β对弯矩计算结果进行修正,修正后的弯矩与实测值更吻合,m法更加符合工程实际。

    Abstract:

    In order to explore the horizontal bearing characteristics of pile foundations in large‐thickness artificial fill foundation and the applicability of the m‐method in engineering practice, the field tests of horizontal bearing capacity of single piles and the theoretical calculations of the m‐method are carried out. The variation patterns of displacement and bending moment under horizontal loads are obtained, and the deformation characteristics of pile-soil under horizontal loads are presented. The variation of the proportional coefficient m of the horizontal resistance coefficient of the foundation soil with the load and displacement is further obtained. The results show that with the increase of loading, the horizontal displacement increases continuously, and after reaching the critical value of 480 kN, the horizontal displacement and displacement gradient of pile foundations change drastically. Under the same loading, the bending moment of pile foundations increases first and then decreases with the increase of depth. The bending moment diagram shows the distribution pattern of “small at both ends and large in the middle”. At the same depth, the bending moment increases with the increase of load, and negative bending moment appears at a certain depth. The influence range of bending moment along the depth is about 10 m. The proportional coefficient m of the horizontal resistance coefficient decreases exponentially with the increase of load and displacement. When the load and displacement are small, the m values of the two piles are quite different. When the load and displacement increase to a certain value, the m values of the two piles are close and finally stabilized near a specific value. The calculation results of the m‐method are verified and improved by experimental data. It is found that the maximum displacement calculated by the m‐method is close to the measured results. When the load is small, the calculated maximum bending moment is close to the measured results. After exceeding the critical load, the difference is large, indicating that when the load exceeds the critical value, the maximum bending moment does not show a linear elastic increase. It is necessary to correct the bending moment calculation result by the correction coefficient function β. The corrected bending moment is more consistent with the measured value, indicating that the m‐method works well in engineering practice.

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刘德仁,费岩,安政山,张延杰,牛亚强,朱哲超,郭娅芳.大厚度人工填土地基中桩基的水平承载特性[J].土木与环境工程学报(中英文),2026,48(1):71-79. LIU Deren, FEI Yan, AN Zhengshan, ZHANG Yanjie, NIU Yaqiang, ZHU Zhechao, GUO Yafang. Horizontal bearing characteristics of pile foundation in large thickness artificial fill foundation[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2026,48(1):71-79.10.11835/j. issn.2096-6717.2023.133

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  • 收稿日期:2023-07-24
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  • 在线发布日期: 2026-02-26
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