• 全国中文核心期刊
  • 中国科技核心期刊
  • 美国工程索引(EI)收录期刊
  • Scopus数据库收录期刊

砂填料桩承式路堤土拱效应模型试验

芮瑞, 黄成, 夏元友, 胡港, 夏晓龙

芮瑞, 黄成, 夏元友, 胡港, 夏晓龙. 砂填料桩承式路堤土拱效应模型试验[J]. 岩土工程学报, 2013, 35(11): 2082-2089.
引用本文: 芮瑞, 黄成, 夏元友, 胡港, 夏晓龙. 砂填料桩承式路堤土拱效应模型试验[J]. 岩土工程学报, 2013, 35(11): 2082-2089.
RUI Rui, HUANG Cheng, XIA Yuan-you, HU Gang, XIA Xiao-long. Model tests on soil arching effects of piled embankments with sand fills[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(11): 2082-2089.
Citation: RUI Rui, HUANG Cheng, XIA Yuan-you, HU Gang, XIA Xiao-long. Model tests on soil arching effects of piled embankments with sand fills[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(11): 2082-2089.

砂填料桩承式路堤土拱效应模型试验  English Version

基金项目: 国家自然科学基金项目(51208403)
详细信息
    作者简介:

    芮 瑞(1981- ),男,安徽黄山人,博士,副教授,硕士生导师,主要从事岩土工程加固设计与理论、软土地基处理方面的研究与教学工作。E-mail: ruigrate@126.com。

  • 中图分类号: TU471.8

Model tests on soil arching effects of piled embankments with sand fills

  • 摘要: 现有的桩承式路堤荷载传递计算方法主要依据3类土拱效应力学计算模型。由于宏观土拱形态观察的难度较大,现有计算方法普遍缺乏对不同填料与参数下拱效应传力机制以及宏观土拱拱形参数的深入探讨。采用自制的试验装置对砂填料桩承式路堤土拱效应模型进行探讨,进行了3组不同桩距比下3种填土高度的模型试验。模型试验装置配备了位移控制装置模拟与精确控制桩间土下沉,在下沉过程中连续、同步的采集土压力以及砂箱内部填料的照片,并通过摄影测量技术获取全场位移数据。通过对桩土应力比曲线特征以及曲线特征点所对应的填料颗粒位移图的综合分析,探讨了砂填料桩承式路堤拱效应传力机制,揭示了填料内部存在的初始三角形松动滑移面。基于此提出了初始三角拱力学计算模型,分析得到了滑移面角度随桩距比变化的规律,并利用滑移面夹角统计数据确定了拟合计算公式,通过力学推导建立了适用于砂填料桩承式路堤的桩土应力比计算方法。通过与Rogbeck法、BS8006法、Terzaghi法以及模型试验实测数据的对比,验证了计算方法的合理性。
    Abstract: The load transfer methods for piled embankments are mostly based on 3 soil arching effect models. Most of these methods do not take into account changes of the arching effect mechanism under different fills and parameters for the difficulty of observing the macro soil arching. For each method, the same arch shape is always applied to all the situations. 3 groups of soil arching effect model tests with different pile spacings and sand-filling heights are done by using a model test apparatus. In the model tests, the settlement of soils is controlled by the displacement control device accurately. The soil pressures are measured and the pictures are collected during the settlement continuously and synchronously. Then, the photographic survey technique is used for measuring the overall displacement of the sand fills. The pile-soil pressure ratios are calculated and the feature point in the pile-soil pressure ratio curves are picked out. The force transfer mechanism of the piled embankment with sand fills is discussed. Triangular slide planes in the sand filling and the angles of slide planes’ change with the pile-spacing ratio are discovered. An initial triangular arching effect model is put forward based on these comprehensive analyses. A formula for the pile-soil pressure ratio is derived from the new arching effect model. The pile-soil pressure ratios under the model test situations are calculated by using the Rogbeck method, BS8006 method, Terzaghi method and a new method. The new triangular soil arching effect method is proved to best fit the actual measurements.
  • [1] Brithish Standard 8006. Code of practice for strengthened/reinforced soils and other fills[S]. British Standards Institute, 1995.
    [2] CARLSSON B. Reinforced soil, principles for calculation[M]. Sweden:Terratema AB, Linköping, 1987.
    [3] ROGBECK Y, GUSTAVSSON S, SODERGREN I, et al. Reinforced piled embankment in Sweden-design aspects[C]// Proceedings of the 6th International Conference on Geosynthetics. Atlanta, 1998.
    [4] GUIDO V A, KNEUPPEL S. Plate loading tests on geogrid-reinforced earth slabs[C]// Proceedings of Geosynthetics ’87 Conference. New Orleans. 1987.
    [5] HEWLETT W J, RANDOLPH M F. Analysis of piled embankments[J]. Ground Engineering, 1988, 21(3): 12-18.
    [6] ZAESKE D, KEMPFERT H G. Berechnung und Wirkungsweise von unbewehr-ten und bewehrten mineralischen Tragschichten auf punktund linienförmigen Trag-gliedern[J]. Bauingenieur, 2002, 77(S0): 80-86. (ZAESKE D, KEMPFERT H G. Calculation and mechanism of unreinforced and reinforced base layers on point and line-shaped support members. Civil Engineer, 2002, 77(S0): 80-86. (in Germanny)
    [7] ZAESKE D. Zur Wirkungsweise von unbewehrten und bewehrten mineralischen Tragschichten über pfahlartigen Gründungselementen[R]. Schriftenreihe Geo-technik, Universität Gh-Kassel, Heft 10. 2001. (ZAESKE D. Mechanism of unreinforced and reinforced base layers on pile-like foundation components. Series Geo-engineering[R]. University of Gh-Kassel, Issue 10. 2001. (in Germanny)
    [8] VAN EEKELEN S J M, VAN M A, BEZUIJEN A. The Kyoto Road, a full-scale test, measurements and calculations[C]// 14th European Conference on Soil Mechanics and Geotechnical Engineering, Madrid, Millpress, Rotterdam. 2007.
    [9] VANEEKELEN S J M, BEZUIJEN A, VANTOL A F. Analysis and modification of the British Standard BS8006 for the design of piled embankments[J]. Geotextiles and Geomembranes, 2011, 29(3): 345-359.
    [10] VAN EEKELEN S J M, BEZUIJEN A, LODDER, VANTOL A F.Model experiments on piled embankments, part I[J]. Geotextiles and Geomembranes, 2012, 32(3): 69-81.
    [11] 陈云敏, 贾 宁, 陈仁朋. 桩承式路堤土拱效应分析[J]. 中国公路学报, 2004, 17(4): 1-6. (CHEN Yun-min, JIA Ning, CHEN Ren-peng. Soil arch analysis of pile-supported embankments[J]. China Journal of Highway and Transport, 2004, 17(4): 1-6. (in Chinese))
    [12] 许 峰, 陈仁朋, 陈云敏, 等. 桩承式路堤的工作性状分析[J]. 浙江大学学报(工学版), 2005, 39(9): 1393-1399. (XU Feng, CHEN Ren-peng, CHEN Yun-min, XU Li-xin.Analysis of pile-supported embankments[J]. Journal of Zhejiang University (Engineering Seienee), 2005, 39(9): 1393-1399. (in Chinese))
    [13] 吕伟华, 缪林昌, 王 非. 基于不完全土拱效应的土工格栅加固机制与设计方法[J]. 岩石力学与工程学报, 2012, 31(3): 632-639. (LÜ Wei-hua, MIAO Lin-chang, WANG Fei. Mechanism of geogrid reinforcement based on partially developed soil arch effect and design method[J]. Chinese Journal of Rock Mechanics and Engineering, 2012, 31(3): 632-639. (in Chinese))
    [14] PAIKOWSKY S G, TIEN H S. Experimental examination of the arching mechanism on the micro Level[J]. Numerical Modeling of Discontinua, 2002, 51(1): 222-228.
    [15] ESKISAR T, OTANIJ, HIRONAKAJ. Visualization of soil arching on reinforced embankment with rigid pile foundation using X-ray CT[J]. Geotextiles and Geomembranes, 2012, 32(3): 44-54.
    [16] 芮 瑞, 夏元友, 李 梅, 等. 一种多功能土工模型试验箱, 中国, CN102914632A[P]. http://211.157.104.87: 8080/sipo/zljs/hyjs-jieguo.jsp?flag3=1&sign=0, 2012. (RUI Rui, XIA Yuan-you, LI Mei, et al. A tape of multi-function geotechinque model test chamber: CN102914632A[P]. http://211.157.104.87:8080/sipo/zljs/hyjs-jieguo.jsp?flag3=1&sign=0, 2012. (in Chinese))
    [17] TERZAGHI K. Theoretical soil mechanics[M]. New York: Wiley and Sons, Inc, 1943.
计量
  • 文章访问数:  447
  • HTML全文浏览量:  5
  • PDF下载量:  519
  • 被引次数: 0
出版历程
  • 收稿日期:  2013-03-26
  • 发布日期:  2013-11-19

目录

    /

    返回文章
    返回