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Coupled hydro-mechanical analysis of slope under rainfall using modified elasto-plastic model for unsaturated soils 被引量:3

Coupled hydro-mechanical analysis of slope under rainfall using modified elasto-plastic model for unsaturated soils
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摘要 Two modifications for the basic Barcelona model(BBM) are present. One is the replacement of the net stress by the average skeleton stress in unsaturated soil modeling, and the other is the adoption of an expression for the load-collapse(LC) yield surface that can match flexibly the normal compression lines at different suctions. The predictions of the modified BBM for the controlled-suction triaxial test on the unsaturated compacted clay are presented and compared with the experimental results. A good agreement between the predicted and experimental results demonstrates the reasonability of the modified BBM. On this basis, the coupled processes of groundwater flow and soil deformation in a homogeneous soil slope under a long heavy rainfall are simulated with the proposed elasto-plastic model. The numerical results reveal that the failure of a slope under rainfall infiltration is due to both the reduction of soil suction and the significant rise in groundwater table. The evolution of the displacements is greatly related to the change of suction. The maximum collapse deformation happens near the surface of slope where infiltrated rainwater can quickly reach. The results may provide a helpful reference for hazard assessment and control of rainfall-induced landslides. Two modifications for the basic Barcelona model(BBM) are present. One is the replacement of the net stress by the average skeleton stress in unsaturated soil modeling, and the other is the adoption of an expression for the load-collapse(LC) yield surface that can match flexibly the normal compression lines at different suctions. The predictions of the modified BBM for the controlled-suction triaxial test on the unsaturated compacted clay are presented and compared with the experimental results. A good agreement between the predicted and experimental results demonstrates the reasonability of the modified BBM. On this basis, the coupled processes of groundwater flow and soil deformation in a homogeneous soil slope under a long heavy rainfall are simulated with the proposed elasto-plastic model. The numerical results reveal that the failure of a slope under rainfall infiltration is due to both the reduction of soil suction and the significant rise in groundwater table. The evolution of the displacements is greatly related to the change of suction. The maximum collapse deformation happens near the surface of slope where infiltrated rainwater can quickly reach. The results may provide a helpful reference for hazard assessment and control of rainfall-induced landslides.
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第5期1892-1900,共9页 中南大学学报(英文版)
基金 Project(1301015A)supported by the Post-doctoral Research Fund of Jiangsu Province,China Project Funded by the Priority Academic Program of Jiangsu Higher Education Institution,China Project(2014M561566)supported by China Postdoctoral Science Foundation Project(YK913007)supported by Key Laboratory of Earth-Rock Dam Failure Mechanism and Safety Control Technologies,China
关键词 unsaturated soils modified basic Barcelona model(BBM) numerical analysis rainfall infiltration model slope unsaturated soils modified basic Barcelona model (BBM) numerical analysis rainfall infiltration model slope
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  • 1COLLINS B D, ZNIDARCIC D. Stability analyses of rainfall induced landslides [J]. Journal of Geotechnical and Geoenvironmental Engineering, 2004, 130(4): 362-372.
  • 2CHO S E, LEE S R. Instability of unsaturated soil slopes due to infiltration [J]. Computers and Geotechnics, 2001, 28(3): 185-208.
  • 3SHENG D, SMITH D W, SLOAN S W, GENS A. Finite element formulation and algorithms for tmsaturated soils. Part II: Verification and application [J]. International Journal for Numerical and Analytical Methods in Geomechanics, 2003, 27: 767-790.
  • 4GARCIA E, OKA F, KIMOTO S. Instability analysis and simulation of water infiltration into an unsaturated elasto-viscoplastic material [J]. International Journal of Solids and Structures, 2010, 47: 3519-3536.
  • 5ALONSO E E, GENS A, DELAHAYE C H. Influence of rainfall on the deformation and stability of a slope in overconsolidated clays: A case study [J]. Hydrogeol, 2003, 11:174-192.
  • 6FAN Zhen-hui, ZHANG Chun-shun, XIAO Hong-bin. Simulation analysis of deformation for unsaturated expansive so,Is based on fluid-solid coupling characteristics [J]. Journal of Central South University (Science and Technology), 2011, 42(3): 758-764. (in Chinese).
  • 7ALONSO E E, GENS A, JOSA A A. Constitutive model for partially saturated soils [J]. Grotechnique, 1990, 40(3): 405-430.
  • 8WHEELER S J, SIVAKUMAR V. An elasto-plastic critical state framework for unsaturated soil [J]. Grotechnique, 1995, 45: 35-53.
  • 9LORET B, KI-IALILI N. An effective stress elastic-plastic model for unsaturated porous media [J]. Mechanics of Materials, 2002, 34: 97-116.
  • 10GENS A, SANCHEZ M, SHENG D. One constitutive modeling of unsaturated soils [J], Acta Geotechnica, 2006, 1 (3): 137-147.

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