期刊文献+

Calculation of earth pressure based on disturbed state concept theory 被引量:4

Calculation of earth pressure based on disturbed state concept theory
在线阅读 下载PDF
导出
摘要 The theoretical formulations of Coulomb and Rankine still remain as the fundamental approaches to the analysis of most gravity-type retaining wall,with the assumption that sufficient lateral yield will occur to mobilize fully limited conditions behind the wall.The effects of the magnitude of wall movements and different wall-movement modes are not taken into consideration.The disturbance of backfill is considered to be related to the wall movement under translation mode.On the basis of disturbed state concept(DSC),a general disturbance function was proposed which ranged from-1 to 1.The disturbance variables could be determined from the measured wall movements.A novel approach that related to disturbed degree and the mobilized internal frictional angle of the backfill was also derived.A calculation method benefited from Rankine's theory and the proposed approach was established to predict the magnitude and distribution of earth pressure from the cohesionless backfill under translation mode.The predicted results,including the magnitude and distribution of earth pressure,show good agreement with those of the model test and the finite element method.In addition,the disturbance parameter b was also discussed. The theoretical formulations of Coulomb and Rankine still remain as the fundamental approaches to the analysis of most gravity-type retaining wall, with the assumption that sufficient lateral yield will occur to mobilize fully limited conditions behind the wall. The effects of the magnitude of wall movements and different wall-movement modes are not taken into consideration. The disturbance of backfill is considered to be related to the wall movement under translation mode. On the basis of disturbed state concept (DSC), a general disturbance function was proposed which ranged from -1 to 1. The disturbance variables could be determined from the measured wall movements. A novel approach that related to disturbed degree and the mobilized internal frictional angle of the backfill was also derived. A calculation method benefited from Rankine's theory and the proposed approach was established to predict the magnitude and distribution of earth pressure from the cohesionless backfill under translation mode. The predicted results, including the magnitude and distribution of earth pressure, show good agreement with those of the model test and the finite element method. In addition, the disturbance parameter b was also discussed.
出处 《Journal of Central South University》 SCIE EI CAS 2011年第4期1240-1247,共8页 中南大学学报(英文版)
基金 Project(50678158) supported by the National Natural Science Foundation of China
关键词 disturbed state concept disturbance function translation mode earth pressure cohesionless soil 扰动状态概念 土压力 计算 重力式挡土墙 运动模式 干扰变量 转换模式 有限元方法
  • 相关文献

参考文献4

二级参考文献18

  • 1陈慧远.摩擦接触面单元及其分析方法[J].水利学报,1985,(4):44-50.
  • 2陈页开.挡土墙上土压力的试验研究与数值分析[M].杭州:浙江大学,2001..
  • 3Clough R W, Woodward R J. Analysis of embankment stress and deformations[J]. Journal of Soil Mechanics & Foundation, ASCE,1967, 93(SM4): 529-549.
  • 4Clough G W, Duncan J M Finite element analysis of retaining wall behavior[J]. Journal of the Soil Mechanics and Foundation, ASCE,1971, 97(SM12): 1657-1673.
  • 5Simpson B, Wroth C E Finite element computations for a model retaining wall in sand[A]. In: Proceedings of 5th European Conference of Soil Mechanics and Foundation Engineering[C]. Madrid: Allyn and Bacon Inc , 1972, 85-94.
  • 6Ozawa Y, Duncan J M. Elasto-plastic finite element analyses of sand deformation[A]. In.. Proceedings of the 2nd International Conference on Numerical Methods in Geomechanics, Blacksburgm[C]. Virginia: Willey, 1976, 243-263.
  • 7Goodman R F, Taylor R L, Brekke T L. A model for the mechanics of jointed rock[J]. Journal of Soil Mechanics & Foundation, ASCE,1968, 94(SM3): 637-660.
  • 8Clough R W, Woodward R J. Analysis of embankment stress and deformations[J]. Journal of Soil Mechanics and Foundation, ASCE,1967, 93(SM4): 529~549.
  • 9Clough G W, Duncan J M. Finite element analysis of retaining wall behavior[J]. Journal of the Soil Mechanics and Foundation, ASCE,1971, 97(SMI2): 1657~1673.
  • 10Simpson B, Wroth C E Finite element computations for a model retaining wall in sand[A]. In: Proceedings of 5th European Conference of Soil Mechanics and Foundation Engineering[C]. Madrid, Spain: [s.n.], 1972, 85~94.

共引文献240

同被引文献47

引证文献4

二级引证文献20

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部