船舶与海洋工程

穿刺压载试验及桩-土空腔数值模拟

  • 张兆德 ,
  • 张 心 ,
  • 徐 鹏
展开
  • (浙江海洋学院 a.船舶与海洋工程学院; b.浙江省近海海洋工程技术重点实验室, 浙江 舟山 316022)
张兆德*(1964-),男,博士,教授,E-mail:zhangzhaode@163.com.

收稿日期: 2015-07-01

  修回日期: 2015-08-31

  网络出版日期: 2015-08-31

基金资助

国家自然科学基金资助项目(51179173;51379189).

Punch-through ballast experiment and numerical simulation of pile and soil cavity

  • ZHANG Zhao-de ,
  • ZHANG Xin ,
  • XU Peng
Expand
  • (a.School of Ship and Ocean Engineering;b.Key Laboratory of Offshore Engineering Technology of Zhejiang Province, Zhejiang Ocean University,Zhoushan 316022,China)

Received date: 2015-07-01

  Revised date: 2015-08-31

  Online published: 2015-08-31

摘要

基于穿刺压载试验,采用ABAQUS/ALE有限元分析方法模拟自升式平台插桩过程, 对桩土贯入过程中空腔的作用机理进行数值分析,通过监测桩下、土体表面和桩侧附近土体点位移的时程变化,研究空腔的作用机理.数值模拟结果表明:空腔破坏严重加大桩端承载;  桩靴底部土体回流造成空腔垂直壁面剪切破坏是空腔形成及其深度发展的主要原因.针对桩靴穿刺现象,利用穿刺压载试验对数值模拟进行验证.结果表明:数值解与试验结果吻合;穿刺发生时,桩端承载骤降, 桩靴外侧压力约为内侧压力5~10倍,压力变化呈非线性分布,这与中国船级社《海上移动平台入级与建造规范》中关于桩靴底部压力呈线性分布假定不符.

本文引用格式

张兆德 , 张 心 , 徐 鹏 . 穿刺压载试验及桩-土空腔数值模拟[J]. 大连海事大学学报, 2016 , 42(1) : 119 -124 . DOI: 10.16411/j.cnki.issn1006-7736.2016.01.021

Abstract

Based on punch-through ballast experiment, the pile penetration process of jack-up platform was simulated by using ABAQUS/ALE finite element method. Cavity mechanism numerical simulation in pile and soil penetrating process was studied by monitoring the time course changes of soil point displacement at spudcan bottom, soil surface and spudcan rim. Numerical simulation results indicate that the spudcan bearing increases distinctly when the cavity failures, and the shear failure of the vertical cavity wall resulted from the back-flow of soil under spudcan is the main reason resulting in cavity formation and progress. Numerical simulation results of punch-through phenomenon were verified by punch-through ballast experiment. Test results show that the numerical solution concide well with test. When punch-through occurs, the spudcan bearing sharp fall off and the outside spudcan pressure is almost 5~10 times to the inside, and pressure change appears the non-linear distribution, which is not coincided to the liner assumption in “Rules for the classification and construction of offshore mobile drilling units” of CCS.

参考文献

[1]胡知辉,赵军,宋林松,等.复杂地层条件下自升式钻井平台插桩穿刺分析[J].中国海上油气,2011,23(5):344-348.
HU Zhi-hui,ZHAO Jun,SONG Lin-song,et al.Analysis on punch-through during the jack-up unit preloading in complex strautm[J]. China Offshore Oil and Gas,2011,23(5):344-348.(in Chinese)
[2]戴兵,段梦兰,宋林松,等.自升式钻井平台穿刺分析[J].科技导报,2010,28(17):63-66.
DAI Bing,DUAN Meng-lan,SONG Lin-song,et al.Investigation of the punch-through in jack-up rigs[J].Science and Technology Review,2010,28(17):63-66.(in Chinese)
[3]张建,唐文献,苏世杰,等.硬土-软土插桩过程数值分析及验证[J].石油勘探与开发,2013,40(4):492-496.
ZHANG Jian,TANG Wen-xian,SU Shi-jie,et al.Numerical analysis and verification of pile penetration into stiff-over-soft clay[J].Petroleum Exploration and Development,2013,40(4):492-496.(in Chinese)
[4]张爱霞,段梦兰.自升式平台穿刺过程结构响应研究[J].海洋工程,2013,31(3):24-30.
ZHANG Ai-xia, DUAN Meng-lan.Structural response of jack up during punch-through[J].The Ocean Engineering,2013,31(3):24-30.(in Chinese)
[5]GHOSH S, KIKUCHI N.An arbitrary Lagrangian–Eulerian finite element method for large deformation analysis of elastic–viscoplastic solids[J].Computer Methods Applied Mechanics and Engineering,1991,86(2):127-188.
[6]LIU Wing-kam, BELYTSCHKO T,CHANG H. An arbitrary Lagrangean-Eulerian finite element method for path-dependent materials[J].Computer Methods in Applied Mechanics and Engineering,1986,58(2):227-245.
[7]HOSSAIN M S, RANDOLPH M F. Investigating potential for punch-through for spudcan foundations on layered clays[C]//Proceedings of the Sixteenth (2007) International Offshore and Polar Engineering Conference.California:The International Society of Offshore and Polar Engineering,2007:1510-1517.
[8]BIENEN B,CASSIDY M J,GAUDIN C.Physical modelling of the push-over capacity of a jack-up structure on sand in a geotechnical centrifuge[J].Canadian Geotechnical Journal,2009,46(2):190-207.
[9]CASSIDY M J.Offshore foundation systems for resource recovery: assessing the three-dimensional response of jack-up platforms[J].KSCE Journal of Civil Engineering, 2011,15(4):623-634.
[10]HOSSAIN M S,HU Yu-xia,RANDOLPH M F, et al.Limiting cavity depth for spudcan foundations penetrating clay[J].Geotechnique,2005,55(9):679-690.
[11]HOSSAIN M S,RANDOLPH M F,HU Yu-xia,et al.Cavity stability and bearing capacity of spudcan foundations on clay[C]//Proceedings of the Offshore Technology Conference (OTC'06),2006.
文章导航

/