TY - JOUR
T1 - Accounting for nonlinear aspects in multiphysics problems
T2 - Application to poroelasticity
AU - Néron, David
AU - Ladevèze, Pierre
AU - Dureisseix, David
AU - Schrefler, Bernard A.
PY - 2004/12/1
Y1 - 2004/12/1
N2 - Multiphysics phenomena lead to computationally intensive structural analyses. Recently, a new strategy derived from the LATIN method was described and successfully applied to the consolidation of saturated porous soils. One of the main achievements was the use of the LATIN method to take into account the different time scales which usually arise from the different physics: a multi-time-scale strategy was proposed. Here we go one step further and use the LATIN method to deal with some of the classical nonlinearities of poroelasticity problems (such as nonconstant stiffness and permeability) and we show that these phenomena do not result in a significant increase of the computation cost.
AB - Multiphysics phenomena lead to computationally intensive structural analyses. Recently, a new strategy derived from the LATIN method was described and successfully applied to the consolidation of saturated porous soils. One of the main achievements was the use of the LATIN method to take into account the different time scales which usually arise from the different physics: a multi-time-scale strategy was proposed. Here we go one step further and use the LATIN method to deal with some of the classical nonlinearities of poroelasticity problems (such as nonconstant stiffness and permeability) and we show that these phenomena do not result in a significant increase of the computation cost.
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M3 - Article
AN - SCOPUS:35048876259
SN - 0302-9743
VL - 3039
SP - 612
EP - 620
JO - Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)
JF - Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)
ER -