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Numerical and experimental analyses for bearing capacity of rigid strip footing subjected to eccentric load 被引量:1

Numerical and experimental analyses for bearing capacity of rigid strip footing subjected to eccentric load
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摘要 A footing may get an eccentric load caused by earthquake or wind, thus the bearing capacity of footing subjected to eccentric load become a fundamental geotechnical problem. The conventional limit equilibrium method used for this problem usually evaluates the material properties only by its final strength. But the classical finite element method(FEM) does not necessarily provide a clear collapse mechanism associated with the yield condition of elements. To overcome these defects, a numerical procedure is proposed to create an explicit collapse mode combining a modified smeared shear band approach with a modified initial stress method. To understand the practical performance of sand foundation and verify the performance of the proposed procedure applied to the practical problems, the computing results were compared with the laboratory model tests results and some conventional solutions. Furthermore, because the proposed numerical procedure employs a simple elasto-plastic model which requires a small number of soil parameters, it may be applied directly to practical design works. A footing may get an eccentric load caused by earthquake or wind, thus the bearing capacity of footing subjected to eccentric load become a fundamental geotechnical problem. The conventional limit equilibrium method used for this problem usually evaluates the material properties only by its final strength. But the classical finite element method(FEM) does not necessarily provide a clear collapse mechanism associated with the yield condition of elements. To overcome these defects, a numerical procedure is proposed to create an explicit collapse mode combining a modified smeared shear band approach with a modified initial stress method. To understand the practical performance of sand foundation and verify the performance of the proposed procedure applied to the practical problems, the computing results were compared with the laboratory model tests results and some conventional solutions. Furthermore, because the proposed numerical procedure employs a simple elasto-plastic model which requires a small number of soil parameters, it may be applied directly to practical design works.
出处 《Journal of Central South University》 SCIE EI CAS 2014年第10期3983-3992,共10页 中南大学学报(英文版)
基金 Projects(cstc2012jjA0510,cstc2013jcyjA30014)supported by Chongqing Natural Science Foundation in China Project(CDJZR12200011)supported by the Fundamental Research Funds for the Central Universities in China Project(KJTD201305)supported by the Innovation Team Building Programs of Chongqing Universities in China Project supported by the Scientific Research Foundation for the Returned Oversea Chinese Scholars
关键词 刚性条形基础 承载能力 数值模拟 实验分析 负荷 偏心 极限平衡法 弹塑性模型 bearing capacity eccentric load slip surface shear band finite element method model test
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