通过几组离心模型试验及成果分析,研究桩基在水平荷载H、竖直荷载V组合荷载作用下的承载机理。研究结果表明:在相同位移条件下,桩基的水平承载力随着桩基施加下压荷载的增加而减小;在相同水平荷载作用下,桩头水平位移随着施加的下压荷载值增大而增大;桩基受到的下压荷载越大,桩头转角(桩身倾斜程度)越大;桩基在承受水平、竖直组合荷载作用时,二者是相互影响的,在设计过程中必须要注意水平荷载H和竖直荷载V的组合作用。
Abstract
The bearing capacity mechanism of pile foundation under combined horizontal loading and vertical loading is researched through several centrifugal model tests. The results indicate that under the same displacement,the horizontal bearing capacity of pile foundation decreases with the increase of vertical load. Under the same horizontal load,the horizontal displacement of pile head increases with the increase of vertical load. The larger the vertical load is,the bigger the inclination of pile is. When the pile foundation is under the action of combined vertical load and horizontal load,the two loads are affected by each other. The interaction of horizontal load H and vertical load V must be considered in the design of pile foundation.
关键词
离心模型试验 /
组合荷载 /
承载机理 /
桩基
Key words
centrifugal model test /
combined load /
bearing capacity mechanism /
pile foundation
{{custom_sec.title}}
{{custom_sec.title}}
{{custom_sec.content}}
参考文献
[1] 郑 刚,王 丽. 竖向及水平荷载加载水平、顺序对单桩承载力的影响[J]. 岩土工程学报,2008,30(12):1796-1804.(ZHENG Gang, WANG Li. Effect of Loading Level and Sequence of Vertical and Lateral Loads on Bearing Capacity of Single Pile[J]. Chinese Journal of Geotechnical Engineering,2008,30(12):1796-1804.(in Chinese)
[2] 郑 刚,王 丽. 成层土中倾斜荷载作用下桩承载力有限元分析[J]. 岩土力学,2009,30(3):680-687.(ZHENG Gang,WANG Li. Finite Element Analysis of Bearing Capacity of Pile under Inclined Load in Layered Soil[J]. Rock and Soil Mechanics,2009,30(3):680-687.(in Chinese)
[3] 赵明华,张天翔. 轴、横向荷载下桥梁基桩受力分析及实验研究[J]. 中南公路工程,2002,26(1):32-34.(ZHAO Ming-hua, ZHANG Tian-xiang. Study of the Behavior Analysis and Model Test of Bridge Piles under Simultaneous Axial and Lateral Loading[J]. Central South Highway Engineering,2002,26(1):32-34.(in Chinese)
[4] CHARI T R,MEYERHOF G G. Ultimate Capacity of Rigid Single Piles under Inclined Loads in Sand[J]. Canadian Geotechnical Journal,1983,20(4):849-954.
[5] MEYERHOF G G,GHOSH D P. Ultimate Capacity of Flexible Piles under Eccentric and Inclined Loads[J]. Canadian Geotechnical Journal,1989,26(1):34-42.
[6] MEYERHOF G G. Behaviour of Pile Foundations under Special Loading Conditions:1994 R. M. Hardy Keynote Address[J]. Canadian Geotechnical Journal,1995,32(2):204-222.
[7] MEYERHOF G G,YALCIN A S. Pile Capacity for Eccentric Inclined Load in Clay[J]. Canadian Geotechnical Journal,1984,21(3):289-395.
[8] TAIEBAT H A,CARTER J P. Numerical Studies of the Bearing Capacity of Shallow Foundations on Cohesive Soil Subjected to Combined Loading[J]. Geotechnique,2000,50(4):409-418.
[9] 文松霖. 扩底桩承载力空间屈服包罗面的基本特性[J].岩土力学,2006,27(8):1229-1234.(WEN Song-lin. Three Dimensional Failure Envelope Behaviors of Pedestal Piles[J]. Rock and Soil Mechanics,2006,27(8):1229-1234.(in Chinese)
[10]文松霖. 铅直水平荷载作用下扩底桩的承载机理[J].raybet体育在线
报,2004,21(5):24-31.(WEN Song-lin. Resistance Behaviors of Pile with Enlarged Base under Axial and Lateral Loads[J]. Journal of Yangtze River Scientific Research Institute,2004,21(5):24-31.(in Chinese)
[11]朱 斌,朱瑞燕,罗 军,等. 海洋高桩基础水平大变位性状模型试验研究[J]. 岩土工程学报,2010,32(4):521- 530.(ZHU Bin,ZHU Rui-yan,LUO Jun,et al. Model Tests on Characteristics of Ocean and Offshore Elevated Piles with Large Lateral Deflection[J]. Chinese Journal of Geotechnical Engineering,2010,32(4):521-530.(in Chinese)
基金
国家自然科学基金资助项目(50978034)