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基于上限法分析椭圆形结构的极限承载力
引用本文:瑜璐,杨庆,张金利.基于上限法分析椭圆形结构的极限承载力[J].岩土工程学报,2021(2):356-364.
作者姓名:瑜璐  杨庆  张金利
作者单位:大连理工大学海岸与近海工程国家重点实验室
基金项目:国家重点研发计划项目(2016YFE0200100);国家自然科学基金重点项目(51639002)。
摘    要:基于塑性极限理论上限法分析锚桩椭圆形端部和椭圆T-bar的极限承载力及承载力系数,并考虑椭圆形端部的长径比(ξ≥1)和界面摩擦系数对承载力以及承载力系数的影响.分别详细介绍锚桩和T-bar的椭圆端部速度场以及相应速度矢端图的构建.速度场的总能量损耗率是速度间断面能量损耗率和塑性区变形损耗率之和,端部承载力系数等于速度场...

关 键 词:上限法  椭圆形端部  极限承载力  T-bar  锚桩

Ultimate bearing capacity of elliptical tip by upper bound analysis
YU Lu,YANG Qing,ZHANG Jin-li.Ultimate bearing capacity of elliptical tip by upper bound analysis[J].Chinese Journal of Geotechnical Engineering,2021(2):356-364.
Authors:YU Lu  YANG Qing  ZHANG Jin-li
Affiliation:(State Key Laboratory of Coastal and Offshore Engineering,Dalian University of Technology,Dalian 116023,China)
Abstract:For the anchor pile with elliptical tip and T-bar,the bearing capacity and factor are obtained based on the upper-bound limit analysis of plasticity considering the influences of the aspect ratio of the elliptical tip(ξ≥1)and the friction coefficient.The velocity fields and hodographs of the elliptical tip of the anchor pile and T-bar are introduced.The total energy dissipation is figured by summing up each part of the internal energy dissipation and the energy dissipation on the velocity discontinuous surface.The bearing factor is equal to the ratio of the total energy dissipation over the velocity and diameter of the elliptical tip and soil strength.It is found that forξ=1,there is a good consistency between the upper bound solutions and the previous results.Therefore,the upper bound models for the elliptical tip are rational.The influences of friction force become more significant with the increasingξfor the penetration resistance coefficient.The upper and lower-bound solutions maintain consistency.The upper bound solutions of the bearing capacity are generally larger than the lower ones as the decreasing friction factor.
Keywords:upper bound method  elliptical tip  ultimate bearing capacity  T-bar  anchor pile
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