A priori error estimate of a multiscale finite element method for transport modeling

Author:

Ouaki Franck,Allaire Grégoire,Desroziers Sylvain,Enchéry Guillaume

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Control and Optimization,Modeling and Simulation,Numerical Analysis

Reference31 articles.

1. Allaire, G., Brizzi, R., Mikelić, A., Piatnitski, A.L.: Two-scale expansion with drift approach to the Taylor dispersion for reactive transport through porous media. Chem. Eng. Sci. 65(7), 2292–2300 (2010)

2. Allaire, G., Brizzi, R.: A multiscale finite element method for numerical homogenization. Multiscale Model. Simul. 4(3), 125–144 (2006)

3. Allaire, G., Desroziers, S., Enchéry, G., Ouaki, F.: A multiscale finite element method for transport modeling. In: Proceedings of the 6th European Congress on Computational methods in applied sciences and engineering (ECCOMAS 2012), September 10–14, 2012, Vienna, Austria

4. Allaire, G., Mikelić, A., Piatnitski, A.L.: Homogenization approach to the dispersion theory for reactive transport through porous media. SIAM J. Math. Anal. 42(1), 125–144 (2010)

5. Allaire, G., Pankratova, I., Piatnitski, A.: Homogenization and concentration for a diffusion equation with large convection in a bounded domain. J. Functional Anal. 262(1), 300–330 (2012)

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