会议专题

Elastoplastic analysis of thin-walled structures in reservoir area

In the structural design of the high pier, in order to analyze the strength and structure stability, the pier was often considered a thin-walled structure. Elastoplastic incremental theory was used to establish the model of elastoplastic stability of high pier. By considering the combined action of pile, soil and pier together, the destabilization bearing capacity was calculated by using 3-D finite element method (3-D FEM) for piers with different pile and section height. Meanwhile, the equivalent stress in different sections of pier was computed and the processor of destabilization was discussed. When the pier is lower, the beating capacity under mutual effect of pile, soil and pier is less than the situation when mutual effect is not considered; when the pier is higher, their differences are not conspicuous. Along with the increase of the cross-sectional height, the direction of destabilization bearing capacity is varied and the ultimate capacity is buildup. The results of a stability analysis example are almost identical with the practice.

high pier thin-walled structure increment theory elastoplastic finite element analysis stability

DUAN Shao-wei(段绍伟) LUO Ying-she(罗迎社) ZHU Yu-xiong(朱育雄)

College of Civil Architectural Engineering and Mechanis, Central South University of Forestry and Te Transportation Bureau of Xiangtan County, Xiangtan 411200, China

国际会议

第九届全国流变学学术会议

长沙

英文

342-345

2008-09-28(万方平台首次上网日期,不代表论文的发表时间)