Authors : Calo, Victor (Author of the conference)
CIRM (Publisher )
Abstract :
We combine discrete empirical interpolation techniques, global mode decomposition methods, and local multiscale methods, such as the Generalized Multiscale Finite Element Method (GMsFEM), to reduce the computational complexity associated with nonlinear flows in highly-heterogeneous porous media. To solve the nonlinear governing equations, we employ the GMsFEM to represent the solution on a coarse grid with multiscale basis functions and apply proper orthogonal decomposition on a coarse grid. Computing the GMsFEM solution involves calculating the residual and the Jacobian on the fine grid. As such, we use local and global empirical interpolation concepts to circumvent performing these computations on the fine grid. The resulting reduced-order approach enables a significant reduction in the flow problem size while accurately capturing the behavior of fully-resolved solutions. We consider several numerical examples of nonlinear multiscale partial differential equations that are numerically integrated using fully-implicit time marching schemes to demonstrate the capability of the proposed model reduction approach to speed up simulations of nonlinear flows in high-contrast porous media.
Keywords: generalized multiscale finite element method - nonlinear PDEs - heterogeneous porous media - discrete empirical interpolation - proper orthogonal decomposition
MSC Codes :
35-XX
- Partial differential equations
65-XX
- Numerical analysis
86-XX
- Geophysics [See also 76U05, 76V05]
Film maker : Hennenfent, Guillaume
Language : English
Available date : 27/11/14
Conference Date : 19/11/14
Subseries : Research talks
arXiv category : Numerical Analysis ; Mathematical Physics
Mathematical Area(s) : Analysis and its Applications ; Numerical Analysis & Scientific Computing ; Computer Science ; Control Theory & Optimization ; PDE ; Mathematical Physics ; Mathematics in Science & Technology
Format : MP4 (.mp4) - HD
Video Time : 00:55:02
Targeted Audience : Researchers
Download : https://videos.cirm-math.fr/2014-11-19_Calo_1.mp4
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Event Title : MoMaS Conference / Colloque MoMaS Event Organizers : Allaire, Grégoire ; Cances, Clément ; Ern, Alexandre ; Herbin, Raphaèle ; Lelièvre, Tony Dates : 17/11/14 - 20/11/14
Event Year : 2014
Event URL : https://www.cirm-math.fr/Archives/?EX=in...
DOI : 10.24350/CIRM.V.18630803
Cite this video as:
Calo, Victor (2014). Multiscale model reduction for flows in heterogeneous porous media. CIRM. Audiovisual resource. doi:10.24350/CIRM.V.18630803
URI : http://dx.doi.org/10.24350/CIRM.V.18630803
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