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Study on the subgrade deformation under high-speed train loading and water–soil interaction

Study on the subgrade deformation under high-speed train loading and water–soil interaction
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摘要 It is important to study the subgrade characteristics of high-speed railways in consideration of the water–soil coupling dynamic problem,especially when high-speed trains operate in rainy regions.This study develops a nonlinear water–soil interaction dynamic model of slab track coupling with subgrade under high-speed train loading based on vehicle–track coupling dynamics.By using this model,the basic dynamic characteristics,including water–soil interaction and without water induced by the high-speed train loading,are studied.The main factors-the permeability coefficien and the porosity-influencin the subgrade deformation are investigated.The developed model can characterize the soil dynamic behaviour more realistically,especially when considering the influenc of water-rich soil. It is important to study the subgrade characteristics of high-speed railways in consideration of the water–soil coupling dynamic problem,especially when high-speed trains operate in rainy regions.This study develops a nonlinear water–soil interaction dynamic model of slab track coupling with subgrade under high-speed train loading based on vehicle–track coupling dynamics.By using this model,the basic dynamic characteristics,including water–soil interaction and without water induced by the high-speed train loading,are studied.The main factors-the permeability coefficien and the porosity-influencin the subgrade deformation are investigated.The developed model can characterize the soil dynamic behaviour more realistically,especially when considering the influenc of water-rich soil.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2016年第2期233-243,共11页 力学学报(英文版)
基金 supported by the National Natural Science Foundation of China (Grants U1134202,51305360) the National Basic Research Programof China(Grant2011CB711103) the 2015 Doctoral Innovation Funds of Southwest Jiaotong University
关键词 Water–soil interaction High-speed train loading Finite difference method Subgrade deformation Permeability coefficien Porosity Water–soil interaction High-speed train loading Finite difference method Subgrade deformation Permeability coefficien Porosity
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