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基于极限载荷试验的扩底抗拔桩承载变形特性的分析

王卫东, 吴江斌, 王向军

王卫东, 吴江斌, 王向军. 基于极限载荷试验的扩底抗拔桩承载变形特性的分析[J]. 岩土工程学报, 2016, 38(7): 1330-1338. DOI: 10.11779/CJGE201607022
引用本文: 王卫东, 吴江斌, 王向军. 基于极限载荷试验的扩底抗拔桩承载变形特性的分析[J]. 岩土工程学报, 2016, 38(7): 1330-1338. DOI: 10.11779/CJGE201607022
WANG Wei-dong, WU Jiang-bin, WANG Xiang-jun. Ultimate load tests on bearing and deformation behavior of uplift piles with enlarged base[J]. Chinese Journal of Geotechnical Engineering, 2016, 38(7): 1330-1338. DOI: 10.11779/CJGE201607022
Citation: WANG Wei-dong, WU Jiang-bin, WANG Xiang-jun. Ultimate load tests on bearing and deformation behavior of uplift piles with enlarged base[J]. Chinese Journal of Geotechnical Engineering, 2016, 38(7): 1330-1338. DOI: 10.11779/CJGE201607022

基于极限载荷试验的扩底抗拔桩承载变形特性的分析  English Version

基金项目: 国家科技支撑计划课题(2012BAJ01B02)
详细信息
    作者简介:

    王卫东(1969– ),男,博士,教授级高级工程师,主要研究方向为深基坑工程设计理论与方法、高层建筑地基基础工程。E-mail: weidong_wang@ecadi.com。

Ultimate load tests on bearing and deformation behavior of uplift piles with enlarged base

  • 摘要: 结合天津于家堡南、北地下车库项目开展了2组各3根扩底抗拔桩的极限承载力试验,其中一组试桩有效桩长19 m,另一组试桩有效桩长30 m,试桩均加载至极限破坏状态。载荷试验过程中,两组试桩均对桩顶、有效桩长桩顶以及桩端位置进行了位移测试;其中有效桩长为19 m的试桩还开展了桩身轴力测试。对2组试桩成果从荷载位移曲线、桩身轴力分布、桩侧摩阻力分布规律等方面进行了分析。结合有限元数值模拟分析表明,扩底抗拔桩的承载力由等截面段桩侧摩阻力与扩大头抗力共同组成,首先由等截面段桩土侧摩阻力提供抗拔力;当上拔荷载进一步增大后,扩大头开始逐渐发挥作用,并且扩大头抗力占总承载力的比例逐步上升。极限状态下,有效桩长为19,30 m的试桩,扩大头提供的抗力占总抗拔承载力的比例分别约为50%和35%。扩大头的存在对于等截面段桩侧摩阻力的发挥影响较小。扩大头受周边土体法向力的竖向分量是扩大头抗力的主要组成部分,极限状态下,其可占扩大头抗力的70%左右。
    Abstract: A series of ultimate loading tests on two types of uplift piles with an enlarged base with effective pile lengths of 19 m and 30 m are carried out. For each type, three test piles are loaded to failure. The deformations of the test piles at the top and toe are continuously monitored throughout the tests. For the 19 m-long piles, the axial force of pile shaft is measured as well. Load-displacement curves, distribution of axial force of pile shaft and shaft resistance are investigated. The monitoring data and numerical analysis results show that the uplift capacity of uplift piles with an enlarged base is composed of shaft resistance of the uniform section and uplift resistance of the under-reamed part. When a pile is pulled up, the shaft resistance of the uniform section works firstly, subsequently followed by the uplift resistance of the under-reamed part. At the ultimate state, the uplift resistance provided by the under-reamed part accounts for about 50% and 35% of the total uplift capacity for the 19 m-long and 35 m-long piles. It is also found that the influence of the under-reamed base on the development of shaft resistance is not significant. The uplift resistance of the under-reamed base mainly comes from the vertical component of the normal force of the soil around the base, which takes a proportion of approximately 70% at the ultimate state.
  • [1] 吴江斌, 王卫东, 黄绍铭. 等截面桩与扩底抗拔桩承载特性数值分析研究[J]. 岩土工程学报, 2008, 29(9): 2583-2588. (WU Jiang-din, WANG Wei-dong, HUANG Shao-ming. Numerical modeling of uplift behavior of normal piles with straight shaft and pedestal piles[J]. Chinese Journal of Geotechnial and Engineering, 2008, 29(9): 2583-2588. (in Chinese))
    [2] 郦建俊, 黄茂松, 王卫东, 等. 开挖条件下抗拔桩承载力的离心模型试验[J]. 岩土工程学报, 2010, 32(3): 388-396. (LI Jian-jun, HUANG Mao-song, WANG Wei-dong, et al. Centrifugal model tests on bearing capacity of uplfit piles under deep excavation[J]. Chinese Journal of Geotechnical Engineering, 2010, 32(3): 388-396. (in Chinese))
    [3] 刘文白, 周 健, 孟克特木尔. 扩底抗拔桩承载力试验及计算[J]. 工业建筑, 2003, 33(4): 42-45. (LIU Wen-bai, ZHOU Jian, MENGKE Temuer. Uplift tests and calculations of under-dramed piles[J]. Industrial Construction, 2003, 33(4): 42-45. (in Chinese))
    [4] 吴江斌, 王卫东, 王向军. 软土地区多种桩型抗拔桩侧摩阻力特性研究[J]. 岩土工程学报, 2010, 32(增刊2): 93-98. (WU Jiang-din, WANG Wei-dong, WANG Xiang-jun. Side resistance properties of multiple uplift piles in soft soil area[J]. Chinese Journal of Geotechnical Engineering, 2010, 32(S2): 93-98. (in Chinese))
    [5] 王卫东, 翁其平, 吴江斌. 上海世博500kV地下变电站超深抗拔桩的设计与分析[J]. 建筑结构, 2007, 37(5): 107-110. (WANG Wei-dong, WENG Qi-ping, WU Jiang-din. Design and analysis of the deep substructure's uplift piles in the project of shanghai world exposition 500kV underground electric substation[J]. Rock and Soil Mechanics, 2007, 37(5): 107-110. (in Chinese))
    [6] 孙洋波, 朱光裕, 袁聚云. 扩底抗拔桩承载力试验与研究[J]. 岩土工程学报, 2011, 33(增刊2): 428-432. (SUN Yang-bo, ZHU Guang-yu, YUAN Ju-yun. Pull-out tests on belled piles[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(S2): 428-432. (in Chinese))
    [7] 张栋梁, 杨龙才, 王炳龙. 扩底抗拔桩试验分析与抗拔承载力计算方法[J]. 地下空间与工程学报, 2006, 2(5): 775-780. (ZHANG Dong-liang, YANG Long-cai, WANG Bing-long. Experimental analysis and calculation of the up-lift resistance bearing capacity of bored cast-in-place pile with enlarged bottom[J]. Chinese Journal of Underground, 2006, 2(5): 775-780. (in Chinese))
    [8] 常林越, 王卫东, 吴江斌. 基于极限承载力试验的扩底抗拔桩承载特性数值模拟分析[J]. 岩土力学, 2015, 36(增刊1): 657-663. (CHANG Lin-yue, WANG Wei-dong, WU Jiang-bin. Numerical analysis of uplift behavior of enlarged base piles based on uplift ultimate bearing capacity tests[J]. Rock and Soil Mechanics, 2015, 36(S1): 657-663. (in Chinese))
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出版历程
  • 收稿日期:  2015-06-03
  • 发布日期:  2016-07-24

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