• 全国中文核心期刊
  • 中国科技核心期刊
  • 美国工程索引(EI)收录期刊
  • Scopus数据库收录期刊
赵福堂, 吴祁新, 郑俊杰, 郑烨炜. 基于广义剪应变的各向异性固结饱和砂土超静孔压发展模型[J]. 岩土工程学报. DOI: 10.11779/CJGE20231122
引用本文: 赵福堂, 吴祁新, 郑俊杰, 郑烨炜. 基于广义剪应变的各向异性固结饱和砂土超静孔压发展模型[J]. 岩土工程学报. DOI: 10.11779/CJGE20231122
A strain-based model for development of excess pore water pressure in saturated sand under anisotropic consolidation[J]. Chinese Journal of Geotechnical Engineering. DOI: 10.11779/CJGE20231122
Citation: A strain-based model for development of excess pore water pressure in saturated sand under anisotropic consolidation[J]. Chinese Journal of Geotechnical Engineering. DOI: 10.11779/CJGE20231122

基于广义剪应变的各向异性固结饱和砂土超静孔压发展模型

A strain-based model for development of excess pore water pressure in saturated sand under anisotropic consolidation

  • 摘要: 正确认识各向异性固结状态下饱和砂土的超静孔隙水压力发展规律是研究砂土液化问题的关键。通过空心圆柱扭剪试验,研究了初始固结条件(初始平均有效应力p'0,固结应力比K)和循环加载条件(循环应力比CSR)对饱和砂土的广义剪应变(γg)和超静孔压比(ru)发展规律的影响。试验结果表明:各向异性固结砂在不同加载条件下的破坏类型主要有循环迁移、循环液化和残余累积变形三类破坏。三种破坏模式下,归一化的超静孔压比(ru,n)与γg的关系具有显著相关性。依据上述试验结果,建立了适用于饱和砂土各向异性固结状态下基于广义剪应变的孔压预测模型。

     

    Abstract: Understanding the development pattern of excess pore water pressure in saturated sands under anisotropic consolidation conditions is essential to investigating the liquefaction behavior in sands. In this study, a series of torsional shear tests are carried out using hollow-cylinder torsional apparatus to examine the influence of initial consolidation conditions (initial mean effective stress, p'0, consolidation stress ratio, K) and cyclic loading conditions (cyclic stress ratio, CSR) on the evolution patterns of generalized shear strain (γg) and excess pore water pressure ratio (ru) in saturated sands. The experimental results show that sandy soils under anisotropic consolidation state can exhibit three modes of failure: cyclic mobility, cyclic liquefaction, and residual cumulative deformation. For all three failure modes, the normalized ru is significantly correlated with γg. Based on the generalized shear strain characteristics, a pore pressure predictive model is developed taking account of the anisotropic consolidation effects for saturated sand.

     

/

返回文章
返回