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Bearing capacity of foundation on slope determined by energy dissipation method and model experiments 被引量:15

Bearing capacity of foundation on slope determined by energy dissipation method and model experiments
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摘要 To determine the ultimate bearing capacity of foundations on sloping ground surface in practice, energy dissipation method was used to formulate the beating capacity as programming problem, and full-scale model experiments were investigated to analyze the performance of the soil slopes loaded by a strip footing in laboratory. The soil failure is governed by a linear Mohr-Coulomb yield criterion, and soil deformation follows an associated flow rule. Based on the energy dissipation method of plastic mechanics, a multi-wedge translational failure mechanism was employed to obtain the three bearing capacity factors related to cohesion, equivalent surcharge load and the unit gravity for various slope inclination angles. Numerical results were compared with those of the published solutions using finite element method and those of model experiments. The bearing capacity factors were presented in the form of design charts for practical use in engineering. The results show that limit analysis solutions approximate to those of model tests, and that the energy dissipation method is effective to estimate bearing capacity of soil slope. To determine the ultimate bearing capacity of foundations on sloping ground surface in practice, energy dissipation method was used to formulate the bearing capacity as programming problem, and full-scale model experiments were investigated to analyze the performance of the soil slopes loaded by a strip footing in laboratory. The soil failure is governed by a linear Mohr-Coulomb yield criterion, and soil deformation follows an associated flow rule. Based on the energy dissipation method of plastic mechanics, a multi-wedge translational failure mechanism was employed to obtain the three bearing capacity factors related to cohesion, equivalent surcharge load and the unit gravity for various slope inclination angles. Numerical results were compared with those of the published solutions using finite element method and those of model experiments. The bearing capacity factors were presented in the form of design charts for practical use in engineering. The results show that limit analysis solutions approximate to those of model tests, and that the energy dissipation method is effective to estimate bearing capacity of soil slope.
出处 《Journal of Central South University of Technology》 EI 2007年第1期125-128,共4页 中南工业大学学报(英文版)
基金 Project(50408020) supported by the National Natural Science Foundation of China project(05-0686) supported by the Program of New Century Excellent Talents in University project(200550) supported by the Foundation for the Author of National Excellent Doctoral Dissertation of China
关键词 energy dissipation bearing capacity soil slope model experiment 能量消耗 轴承方位 土壤 模型实验
作者简介 YANG Xiao-li, Professor; Tel: +86-731-2656248; E-mail:yxnc@yahoo.com.cn
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