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硬土层地基破坏模式及承载能力有限元分析 被引量:4

Research on Foundation Damage Modes and Bearing Capacity in Hard Soil with Finite Element Method
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摘要 存在硬土层的层状地基承载能力分析是自升式平台插桩分析的关键问题。目前对于成层土地基的极限承载力往往采用近似的方法进行计算,对地基土的破坏机制以及中间荷载下土体的应力、应变情况等问题未得到很好的解决应用有限元法(FEM)对自升式平台在硬土层地基中插桩时地基土的破坏模式和承载能力进行了分析,研究表明,B/H越大,下伏软土层越容易发生塑性破坏,极限承载力明显下降,当B/H<0.3时可以忽略下伏软土层对地基承载力的影响有限元法与3:1扩散法计算的地基极限承载力结果十分接近,通过对某平台就位实例的分析表明,有限元法分析结果与实测结果较为吻合。 The bearing capacity of hard soil shell over a layered foundation is the key for calculation of penetration of jack-up leg footing. Currently, the ultimate bearing capacity of layered foundation is usually calculated with approximation method. With this approximation method, the damage modes and the stress of foundation under middle load can not been solved fully. The Finite Element Method has been used for simulating the damage process of foundation. The study results reveal that the plastic damage of soft stratum occurs more easily with the increasing of B/H value, and the ultimate bearing capacity reduces obviously. The soft stratum should not influence the ultimate bearing capacity of foundation when the numerical value of B/H is less than 0.3. Results show that the Finite Element Method matches well with the method of 3:1 Expansion Angle. Through analysis on a penetration example of jack-up leg footing, the analyzing results with Finite Element Method are coincided with the actual measured results.
出处 《海洋石油》 CAS 2012年第4期88-95,共8页 Offshore Oil
基金 胜利油田海洋钻井公司重点科技攻关项目"胜利海区地基上对自升式平台桩基作用的响应研究"(编号:GKZ1215)
关键词 自升式钻井平台 硬土层 插桩 有限元法 极限承载力 Jack-up rig hard soil shell penetration finite element method ultimate bearing capacity
作者简介 王楠,男,1981年生,博士生,从事海洋工程地质、海洋工程环境研究工作。E-mail:wangnanouc@163.com。
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  • 1龚闽,谭家华.自升式平台在层状地基上承载能力及穿透可能性分析[J].中国海洋平台,2004,19(3):20-23. 被引量:6
  • 2邓楚键,孔位学,郑颖人.极限分析有限元法讲座Ⅲ——增量加载有限元法求解地基极限承载力[J].岩土力学,2005,26(3):500-504. 被引量:70
  • 3J.E 唐念慈等(译).基础工程分析与设计[M].北京:中国建筑工业出版社,1987,10..
  • 4H F温特科恩 方晓阳.基础工程手册[M].北京:中国建筑工业出版社,1975.190-196.
  • 5HF温特科恩 方晓阳.基础工程手册[M].北京:中国建筑工业出版社,1975.190-196.
  • 6YANG Xiao-li, YIN Jian-hua, LI Liang. Influence of a nonlinear failure criterion on the bearing capacity of a strip footing resting on rock mass using a lower bound approach[J]. Canadian Geotechnical Journal, 2003, 40(3): 702-707.
  • 7SERRANO A, OLALLA C, GONZALEC J. Ultimate bearing capacity of rock masses based on the modified Hoek-Brown criterion[J]. International Journal of Rock Mechanics and Mining Science & Geomechanics Abstracts, 2000, 37:1013-1018.
  • 8唐春安.脆性材料破坏过程分析的数值试验方.力学与实践,2006,25(8):1522-1529.
  • 9Itasca Consulting Group, Inc. FLAC (Fast Lagrangian Analysis of Continua) user mannuals, Version 5.0[M] Minnesota: [s. n.], 2005.
  • 10American Petroleum Institute. API Recommended Practice 2A[M]. Washington, D. C.:API Publisher, 2000:153 155.

共引文献108

同被引文献22

  • 1许滨,申仲翰.海洋导管架平台的极限强度分析[J].海洋工程,1994,12(3):8-16. 被引量:19
  • 2邓楚键,孔位学,郑颖人.极限分析有限元法讲座Ⅲ——增量加载有限元法求解地基极限承载力[J].岩土力学,2005,26(3):500-504. 被引量:70
  • 3费涵昌,王广欣,曹来发,吴一伟.双层地基的变形与沉降[J].同济大学学报(自然科学版),1995,23(3):288-293. 被引量:11
  • 4中海石油基地集团监督监理技术分公司,中海油田服务股份有限公司.SY/T6707-2008海洋井场调查规范[S]//中华人民共和国国家发展和改革委员会.北京:石油工业出版社,2008.
  • 5钱家欢,殷宗泽.土工原理与计算[M].北京水利水电出版社,1996.
  • 6SY/T6707-2008.海洋井场调查规范[S].北京:石油工业出版社,2008.
  • 7钱家欢,殷宗泽.土工原理与计算[M].北京:水利水电出版社,2003.
  • 8BURD H J, FRYDMAN S. Bearing capacity of plane-strain footings on layered soils[J]. Canadian Geotechnical Journal, 1997,34 (2) : 241-253.
  • 9EDWARDS D, POTTS D, ZDRAVKOVIC L. The bearing capacity of a circular footing under Punch-through failure[J]. Ground Engineering, 2006, 39(10):42-44.
  • 10ZHLI M, MICHALOWSKI R L. Bearing capacity of rectangular footings on two-layer clay[C]//in Proceedings of the 16th International Conference on Soil Mechanics and Geotechnical Engineering, Vol. 2, Osake, Japan:Es. n. 1, 2005: 997-1000.

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