首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Implementation of a hydromechanical elastoplastic constitutive model for fully coupled dynamic analysis of unsaturated soils and its validation using centrifuge test results
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Implementation of a hydromechanical elastoplastic constitutive model for fully coupled dynamic analysis of unsaturated soils and its validation using centrifuge test results

机译:用离心机试验结果实现外部耦合的不饱和土的动力学分析的流体力学弹塑性构成模型及其验证

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Prediction of unsaturated soil behavior during earthquake loading has received increasing attention in geotechnical engineering research and practice in recent years. Development of a fully coupled analysis procedure incorporating a coupled hydromechanical elastoplastic constitutive model for dynamic analysis of unsaturated soils has, however, been limited. This paper presents the implementation of a coupled hydromechanical elastoplastic constitutive model into a fully coupled dynamic analysis procedure and its validation using a centrifuge test. First, the fully coupled finite element equations governing the dynamic behavior of unsaturated soils with the solid skeleton displacement, pore water pressure, and pore air pressure as nodal unknowns are briefly presented. The closest point projection method is then utilized to implement the coupled hydromechanical elastoplastic constitutive model into the finite element equations. The constitutive model includes hysteresis in soil-water characteristic curves, cyclic elastoplasticity of the solid skeleton, and the coupling mechanisms between the SWCCs and the solid skeleton. Finally, the analysis procedure is validated using the results from a dynamic centrifuge test on an embankment constructed of compacted unsaturated silt subjected to base shaking. Reasonable comparisons between the predicted and measured accelerations, settlements, and deformed shapes are obtained.
机译:近年来岩土工程研究与实践中不饱和土行为的预测得到了越来越多的关注。然而,开发完全耦合分析程序,其具有用于不饱和土的动态分析的耦合的流体机械弹塑性构成模型的限制。本文介绍了使用离心机试验的完全耦合的动态分析程序和验证的耦合流体机械弹性构成模型的实现。首先,简要介绍了用固体骨架位移,孔隙水压力和孔隙空气压力为Nodal未知的不饱和土的动态行为的完全耦合有限元方程。然后利用最接近的点投影方法将耦合的流体机械弹性构成型模型实现成有限元方程。本构模型包括土壤 - 水特征曲线,固体骨架的环状弹性塑料的滞后,以及SWCC和固体骨架之间的偶联机构。最后,使用动态离心机试验的结果验证分析程序,该堤防由压实的不饱和淤泥经受碱振荡构成的堤防。获得预测和测量的加速度,沉降和变形形状之间的合理比较。

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