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Experiment Based Multiscale Computations in Granular Materials
We will present a novel technique for bridging the micro- and macro- mechanical scales in granular materials. In particular, we will show that a hierarchical multiscale technique can be coupled with advanced experiments to predict the behavior of sands, completely bypassing phenomenological evolution laws for the macroscopic variables controlling the material behavior. It is the first time that a multiscale technique can predict the behavior of granular materials under 3D loading conditions.
Experiment Based Multiscale Computations in Granular Materials
We will present a novel technique for bridging the micro- and macro- mechanical scales in granular materials. In particular, we will show that a hierarchical multiscale technique can be coupled with advanced experiments to predict the behavior of sands, completely bypassing phenomenological evolution laws for the macroscopic variables controlling the material behavior. It is the first time that a multiscale technique can predict the behavior of granular materials under 3D loading conditions.
Experiment Based Multiscale Computations in Granular Materials
Andrade, J. E. (author) / Avila, C. F. (author)
Geo-Frontiers Congress 2011 ; 2011 ; Dallas, Texas, United States
Geo-Frontiers 2011 ; 4333-4338
2011-03-11
Conference paper
Electronic Resource
English
Experiment Based Multiscale Computations in Granular Materials
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