@article{SEDP_2001-2002____A23_0, author = {Chemin, Jean-Yves and Desjardins, Beno{\^\i}t and Gallagher, Isabelle and Grenier, Emmanuel}, title = {Boundary layers and time oscillations in rotating fluids}, journal = {S\'eminaire \'Equations aux d\'eriv\'ees partielles (Polytechnique) dit aussi "S\'eminaire Goulaouic-Schwartz"}, note = {talk:23}, pages = {1--15}, publisher = {Centre de math\'ematiques Laurent Schwartz, \'Ecole polytechnique}, year = {2001-2002}, language = {en}, url = {http://www.numdam.org/item/SEDP_2001-2002____A23_0/} }
TY - JOUR AU - Chemin, Jean-Yves AU - Desjardins, Benoît AU - Gallagher, Isabelle AU - Grenier, Emmanuel TI - Boundary layers and time oscillations in rotating fluids JO - Séminaire Équations aux dérivées partielles (Polytechnique) dit aussi "Séminaire Goulaouic-Schwartz" N1 - talk:23 PY - 2001-2002 SP - 1 EP - 15 PB - Centre de mathématiques Laurent Schwartz, École polytechnique UR - http://www.numdam.org/item/SEDP_2001-2002____A23_0/ LA - en ID - SEDP_2001-2002____A23_0 ER -
%0 Journal Article %A Chemin, Jean-Yves %A Desjardins, Benoît %A Gallagher, Isabelle %A Grenier, Emmanuel %T Boundary layers and time oscillations in rotating fluids %J Séminaire Équations aux dérivées partielles (Polytechnique) dit aussi "Séminaire Goulaouic-Schwartz" %Z talk:23 %D 2001-2002 %P 1-15 %I Centre de mathématiques Laurent Schwartz, École polytechnique %U http://www.numdam.org/item/SEDP_2001-2002____A23_0/ %G en %F SEDP_2001-2002____A23_0
Chemin, Jean-Yves; Desjardins, Benoît; Gallagher, Isabelle; Grenier, Emmanuel. Boundary layers and time oscillations in rotating fluids. Séminaire Équations aux dérivées partielles (Polytechnique) dit aussi "Séminaire Goulaouic-Schwartz" (2001-2002), Exposé no. 23, 15 p. http://www.numdam.org/item/SEDP_2001-2002____A23_0/
[1] A. Babin, A. Mahalov, B. Nicolaenko: Global regularity of 3D rotating Navier-Stokes equations for resonant domains, Indiana Univ. Math. J. 48 (1999), no. 3, 1133–1176 | MR | Zbl
[2] A. Babin, A. Mahalov, B. Nicolaenko: Global splitting, integrability and regularity of 3D Euler and Navier-Stokes equations for uniformly rotating fluids, European J. Mech. B Fluids 15 (1996), no. 3, 291–300. | MR | Zbl
[3] J.-Y. Chemin, B. Desjardins, I. Gallagher, E. Grenier: Fluids with anisotropic viscosity, Modélisation Mathématique et Analyse Numérique,34, 2000, pages 315–335. | Numdam | MR | Zbl
[4] J.-Y. Chemin, B. Desjardins, I. Gallagher, E. Grenier: Anisotropy and dispersion in rotating fluids, to appear, Séminaire d’Analyse non linéaire du Collège de France. | Zbl
[5] J.-Y. Chemin, B. Desjardins, I. Gallagher, E. Grenier: Ekman boundary layers in rotating fluids, to appear, ESAIM cocv. | Numdam | MR | Zbl
[6] B. Desjardins, E. Dormy, E. Grenier: Stability of mixed Ekman-Hartmann boundary layers, Nonlinearity 12 (1999), no. 2, 181–199. | MR | Zbl
[7] I. Gallagher: Applications of Schochet’s methods to parabolic equations, J. Math. Pures Appl. (9) 77 (1998), no. 10, 989–1054. | Zbl
[8] H.P. Greenspan: The theory of rotating fluids. Reprint of the 1968 original. Cambridge Monographs on Mechanics and Applied Mathematics. Cambridge University Press, Cambridge-New York, 1980. | MR | Zbl
[9] E. Grenier : Oscillatory perturbations of the Navier-Stokes equations, J. Math. Pures Appl. (9) 76 (1997), no. 6, 477–498. | MR | Zbl
[10] E. Grenier, N. Masmoudi: Ekman layers of rotating fluids, the case of well prepared initial data, Comm. Partial Differential Equations 22 (1997), no. , 953–975. | MR | Zbl
[11] Pedlovsky : Geophysical Fluid Dynamics, Springer-Verlag, 1979. | Zbl