Three-Dimensional Modeling of Strain-Softening Soil Response for Seismic-Loading Applications

被引:11
|
作者
Qiu, Zhijian [1 ]
Elgamal, Ahmed [1 ]
机构
[1] Univ Calif San Diego, Dept Struct Engn, La Jolla, CA 92093 USA
基金
美国国家科学基金会;
关键词
Strain softening; Seismic; Three-dimensional; Multiyield surface; Plasticity; Finite element; Earthquake; LIQUEFACTION POTENTIAL EVALUATIONS; EARTHQUAKE-INDUCED LANDSLIDES; ENERGY-BASED METHOD; STRESS-BASED METHOD; RECENT QUICK-CLAY; SENSITIVE CLAY; CONSTITUTIVE MODEL; PROGRESSIVE FAILURE; SHEAR-STRENGTH; NUMERICAL-ANALYSIS;
D O I
10.1061/(ASCE)GT.1943-5606.0002282
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
A three-dimensional (3D) incremental plasticity constitutive model is developed for simulating the strain softening behavior of soil materials. The constitutive model extends an existing multiyield surface (MYS) plasticity formulation with a new strain softening logic. Formulation of the model is presented, and calibration is undertaken to match an available data set. Implementing the model into OpenSees, finite element (FE) simulations are conducted to highlight the underlying response mechanisms. Strength and stiffness degradation due to the strain softening mechanism is shown to play a substantial role in terms of accumulated deformation and influence on the resulting ground accelerations. For that purpose, computed results with and without the strain softening effect are compared and discussed. As such, incorporation of strain softening is an important consideration for a wide range of scenarios involving sensitive clays, cemented, over-consolidated, very dense, or frozen soils among others. Overall, the derived insights are of significance for seismic loading in such soil formations.
引用
收藏
页数:16
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