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Two-Dimensional Large Deformation Finite Element Analysisfor the Pulling-up of Plate Anchor 被引量:8

Two-Dimensional Large Deformation Finite Element Analysisfor the Pulling-up of Plate Anchor
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摘要 Based on mesh regeneration and stress interpolation from an old mesh to a new one, a large deformation finite element model is developed for the study of the behaviour of circular plate anchors subjected to uplift loading. For the deterruination of the distributions of stress components across a clay foundation, the Recovery by Equilibrium in Patches is extended to plastic analyses. ABAQUS, a commercial finite element package, is customized and linked into our program so as to keep automatic and efficient running of large deformation calculation. The quality of stress interpolation is testified by evaluations of Tresca stress and nodal reaction forces. The complete pulling-up processes of plate anchors buried in homogeneous clay arc simulated, and typical pulling force-displacement responses of a deep anchor and a shallow anchor are compared. Different from the results of previous studies, large deformation analysis is of the capability of estimating the breakaway between the anchor bottom and soils. For deep anchors, the variation of mobilized uplift resistance with anchor settlement is composed of three stages, and the initial buried depths of anchors affect the separation embedment slightly. The uplift bearing capacity of deep anchors is usually higher than that of shallow anchors. Based on mesh regeneration and stress interpolation from an old mesh to a new one, a large deformation finite element model is developed for the study of the behaviour of circular plate anchors subjected to uplift loading. For the deterruination of the distributions of stress components across a clay foundation, the Recovery by Equilibrium in Patches is extended to plastic analyses. ABAQUS, a commercial finite element package, is customized and linked into our program so as to keep automatic and efficient running of large deformation calculation. The quality of stress interpolation is testified by evaluations of Tresca stress and nodal reaction forces. The complete pulling-up processes of plate anchors buried in homogeneous clay arc simulated, and typical pulling force-displacement responses of a deep anchor and a shallow anchor are compared. Different from the results of previous studies, large deformation analysis is of the capability of estimating the breakaway between the anchor bottom and soils. For deep anchors, the variation of mobilized uplift resistance with anchor settlement is composed of three stages, and the initial buried depths of anchors affect the separation embedment slightly. The uplift bearing capacity of deep anchors is usually higher than that of shallow anchors.
出处 《China Ocean Engineering》 SCIE EI 2006年第2期269-278,共10页 中国海洋工程(英文版)
基金 ThisprojectfinanciallysupportedbytheNationalNaturalScienceFoundationofChina(GrantNo.50309001) Dis-coveryGrantfromAustralianResearchCouncil(DP0344019) YoungTeacherFoundationofDalianUniversityofTechnology(2003)
关键词 finite elements plate anchor CLAY large deformation uplift bearing capacity finite elements plate anchor clay large deformation uplift bearing capacity
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参考文献12

  • 1[1]Aubeny,C.P.,Murff,D.J.and Roesset,J.M.,2001.Geotechnical issues in deep and ultra-deep waters,Proceedings of 10th International Conference on Computer Methods and Advances in Geomechanics,Tucson,USA,13~26.
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