典型文献
A substructure approach for analyzing pile foundation and soil vibrations due to train running over viaduct and its validation
文献摘要:
An efficient computational approach based on substructure methodology is proposed to analyze the via-duct–pile foundation–soil dynamic interaction under train loads. The train–viaduct subsystem is solved using the dynamic stiffness integration method, and its accuracy is verified by the existing analytical solution for a moving vehicle on a simply supported beam. For the pile founda-tion–soil subsystem, the geometric and material properties of piles and soils are assumed to be invariable along the azimuth direction. By introducing the equivalent stiffness of grouped piles, the governing equations of pile foundation–soil interaction are simplified based on Fourier decomposi-tion method, so the three-dimensional problem is decom-posed into several two-dimensional axisymmetric finite element models. The pile foundation–soil interaction model is verified by field measurements due to shaker loading at pile foundation top. In addition, these two substructures are coupled with the displacement compatibility condition at interface of pier bottom and pile foundation top. Finally, the proposed train–viaduct–pile foundation–soil interaction model was validated by field tests. The results show that the proposed model can predict vibrations of pile foundation and soil accurately, thereby providing a basis for the prediction of pile–soil foundation settlement. The frequency spectra of the vibration in Beijing–Tianjin high-speed railway demon-strated that the main frequencies of the pier top and ground surface are below 100 and 30 Hz, respectively.
文献关键词:
中图分类号:
作者姓名:
Ying Wu;Xuecheng Bian;Chong Cheng;Jianqun Jiang
作者机构:
Department of Civil Engineering,MOE Key Laboratoryof Soft Soils and Geoenvironmental Engineering,Zhejiang University,Anzhong Building of Civil Engineering B406,Zijingang Campus,Hangzhou 310058,China
文献出处:
引用格式:
[1]Ying Wu;Xuecheng Bian;Chong Cheng;Jianqun Jiang-.A substructure approach for analyzing pile foundation and soil vibrations due to train running over viaduct and its validation)[J].铁道工程科学(英文),2022(04):468-481
A类:
viaduct,shaker
B类:
approach,analyzing,foundation,vibrations,due,train,running,its,validation,An,efficient,computational,methodology,proposed,analyze,dynamic,interaction,under,loads,subsystem,solved,using,stiffness,integration,accuracy,verified,existing,analytical,solution,moving,vehicle,simply,supported,beam,For,geometric,material,properties,piles,soils,are,assumed,invariable,along,azimuth,direction,By,introducing,equivalent,grouped,governing,equations,simplified,Fourier,decomposi,three,dimensional,problem,into,several,two,axisymmetric,finite,element,models,field,measurements,loading,top,In,addition,these,substructures,coupled,displacement,compatibility,condition,interface,pier,bottom,Finally,was,validated,tests,results,show,that,can,accurately,thereby,providing,basis,prediction,settlement,frequency,spectra,Beijing,Tianjin,high,speed,railway,demon,strated,main,frequencies,ground,surface,below,respectively
AB值:
0.48806
相似文献
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。