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城市快速路沥青路面结构改造方案优选研究 被引量:2
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作者 郑田见 《路基工程》 2020年第2期149-152,157,共5页
以某城市快速路路面改造工程为研究背景,运用ABAQUS有限元软件建立路面结构三维模型,针对原路面结构和4种路面改造结构进行了力学性能对比分析,并在此基础上对路面结构改造方案进行优选。研究结果表明:①不同沥青路面结构的各项力学指... 以某城市快速路路面改造工程为研究背景,运用ABAQUS有限元软件建立路面结构三维模型,针对原路面结构和4种路面改造结构进行了力学性能对比分析,并在此基础上对路面结构改造方案进行优选。研究结果表明:①不同沥青路面结构的各项力学指标均随着轴载的移动呈先增大后减小变化,当轴载移动至路面中心时,各项力学指标均达到最大值;②RCC混合式基层结构的力学性能较于沥青稳定碎石组合式基层结构、半刚性基层结构更优,建议沥青路面结构改造方案选用RCC混合式基层结构;③适当增加基层厚度和基层模量能有效提高沥青路面结构的承载能力和使用寿命。 展开更多
关键词 城市快速路 沥青路面 移动轴载 力学响应 改造方案优选
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Coupled pile soil interaction analysis in undrained condition
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作者 M.Y.Fattah F.A.Salman +1 位作者 Y.J.Al-Shakarchi A.M.Raheem 《Journal of Central South University》 SCIE EI CAS 2013年第5期1376-1383,共8页
The effective stress method is developed to predict the axial capacity of piles in clay. The effective stress state changes due to the resulting pore pressure change and therefore, the strength and stiffness of the so... The effective stress method is developed to predict the axial capacity of piles in clay. The effective stress state changes due to the resulting pore pressure change and therefore, the strength and stiffness of the soil will change. In this work, the finite element method is utilized as a tool for the analysis of pile-soil systems in undrained condition. The computer program CRISP was developed to suit the problem requirements. CRISP uses the finite element technique and allows predictions to be made of ground deformation using critical state theories. Eight-node isoparametric element was added to the program in addition to the slip element. A pile loading problem was solved in which the pile-soil system is analyzed in undrained condition. The pile is modelled as elastic-plastic material, while the soil is assumed to follow the modified Cam clay model. During undrained loading condition, the settlement values increase by 22% when slip elements are used. The surface settlement increases by about three times when the load is doubled and the surface settlement at all points increases when using slip elements due to the mode of motion which allows smooth movement of the adjacent soil with respect to the pile. The vertical displacement increases as the distance decreases from the pile and negligible values are obtained beyond 10D (where D is the pile diameter) from the center of the pile and these values are slightly increased when slip elements are used. The vertical effective stress along a section at a distance D from the pile center is approximately the same for all load increments and lower values of effective vertical stress can be obtained when slip elements are used. 展开更多
关键词 PILE finite element coupled analysis undrained condition
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