4.6 Article

A computational strategy for poroelastic problems with a time interface between coupled physics

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WILEY
DOI: 10.1002/nme.2091

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multiphysics; poroelasticity; partitioning; LATIN; multi scale; finite elements; non-matching grids

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This paper deals with a computational strategy suitable for the simulation of multiphysics problems and based on the LArge Time INcrement (LATIN) method. One of the main issues in the design of advanced tools for the simulation of such problems is to take into account the different time and space scales that usually arise with the different physics. Here, we focus on using different time discretizations for each physics by introducing an interface with its own discretization. The proposed application concerns the simulation of a 2-physics problem: the fluid-structure interaction in porous media. Copyright (c) 2007 John Wiley & Sons, Ltd.

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