Elasto-plastic analysis method for vertically loaded pile considering pile-soil slip
The calculation and analysis of single pile settlement was one of the important geotechnical engineering issues, and many geotechnical engineers and scholars investigated and formed a systematic analysis method. Among the existing methods of analysis methods, the elasticity theory method was relativ...
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sg-ntu-dr.10356-988072020-03-07T13:22:16Z Elasto-plastic analysis method for vertically loaded pile considering pile-soil slip Yao, Wenjuan Chen, Shangping Zhu, Shengqing School of Mechanical and Aerospace Engineering The calculation and analysis of single pile settlement was one of the important geotechnical engineering issues, and many geotechnical engineers and scholars investigated and formed a systematic analysis method. Among the existing methods of analysis methods, the elasticity theory method was relatively mature. However, the traditional elasticity theory method could not consider the slip properties between pile and soil, and did not match the actual working properties of pile foundation. In this paper, based on Mindlin's solution, the pile is assumed to be elastic and the relationship between shear stress and relative displacement at the pile-soil interface is assumed to follow hyperbolic function, then series equations were derived and solved by Finite Difference Method. Two cases were demonstrated and the computed results agreed very well with testing data. The advantage of the analysis method proposed was that the interaction of pile and pile, and pile and soil can be considered. 2013-07-31T07:12:57Z 2019-12-06T19:59:51Z 2013-07-31T07:12:57Z 2019-12-06T19:59:51Z 2012 2012 Journal Article Yao, W. J., Chen, S. P.,& Zhu, S. Q. (2011). Elasto-Plastic Analysis Method for Vertically Loaded Pile Considering Pile-Soil Slip. Applied Mechanics and Materials, 105-107, 1567-1571. 1662-7482 https://hdl.handle.net/10356/98807 http://hdl.handle.net/10220/12645 10.4028/www.scientific.net/AMM.105-107.1567 en Applied mechanics and materials |
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The calculation and analysis of single pile settlement was one of the important geotechnical engineering issues, and many geotechnical engineers and scholars investigated and formed a systematic analysis method. Among the existing methods of analysis methods, the elasticity theory method was relatively mature. However, the traditional elasticity theory method could not consider the slip properties between pile and soil, and did not match the actual working properties of pile foundation. In this paper, based on Mindlin's solution, the pile is assumed to be elastic and the relationship between shear stress and relative displacement at the pile-soil interface is assumed to follow hyperbolic function, then series equations were derived and solved by Finite Difference Method. Two cases were demonstrated and the computed results agreed very well with testing data. The advantage of the analysis method proposed was that the interaction of pile and pile, and pile and soil can be considered. |
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School of Mechanical and Aerospace Engineering |
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School of Mechanical and Aerospace Engineering Yao, Wenjuan Chen, Shangping Zhu, Shengqing |
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Yao, Wenjuan Chen, Shangping Zhu, Shengqing |
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Yao, Wenjuan Chen, Shangping Zhu, Shengqing Elasto-plastic analysis method for vertically loaded pile considering pile-soil slip |
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Yao, Wenjuan |
title |
Elasto-plastic analysis method for vertically loaded pile considering pile-soil slip |
title_short |
Elasto-plastic analysis method for vertically loaded pile considering pile-soil slip |
title_full |
Elasto-plastic analysis method for vertically loaded pile considering pile-soil slip |
title_fullStr |
Elasto-plastic analysis method for vertically loaded pile considering pile-soil slip |
title_full_unstemmed |
Elasto-plastic analysis method for vertically loaded pile considering pile-soil slip |
title_sort |
elasto-plastic analysis method for vertically loaded pile considering pile-soil slip |
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2013 |
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https://hdl.handle.net/10356/98807 http://hdl.handle.net/10220/12645 |
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1681039378295554048 |