Parallel computational fluid dynamics : implementations and results / edited by H.D. Simon.
BJL
BOOK
1992
Parallel computational fluid dynamics : new trends and advances : proceedings of the Parallel CFD '93
BJL
BOOK
1995
QA 911 P4 : Perspectives in fluid dynamics : a collective introduction to current research / edited by G.K. Batchelor, H.K. Moffatt, M.G. Worster.; BJL
Perspectives in fluid dynamics : a collective introduction to current research / edited by G.K. Batch
BJL
QA 913 S3 : The physics of flow through porous media.; BJL
The physics of flow through porous media.
BJL
BOOK
1974
QA 913 S9 : Hydrodynamic stability of fluid flows.; BJL
Hydrodynamic stability of fluid flows.
BJL
BOOK
1967
QA913 .W29 2009 : Progress in wall turbulence [electronic resource] : understanding and modeling, proceedings of the WALLTURB International Workshop held in Lille, France, April 21-23, 2009 / edited by Michel Stanislas, Javier Jimenez and Ivan Marusic ; foreword by Rémy Denos.; Online materials
Progress in wall turbulence [electronic resource] : understanding and modeling, proceedings of the WA
Online materials
EBOOKS
c2011
QA 913 W6 : Turbulence modeling for CFD / by David C. Wilcox.; BJL
Turbulence modeling for CFD / by David C. Wilcox.
BJL
BOOK
c2006
QA 920 D2 : An introduction to magnetohydrodynamics.; BJL
An introduction to magnetohydrodynamics.
BJL
BOOK
2001
QA 920 U4 : Non-linear ware propagation, with applications to physics and magnetonydrodynamics.; BJL
Non-linear ware propagation, with applications to physics and magnetonydrodynamics.
BJL
BOOK
1964
QA 922 S3 : Stability and transition in shear flows / Peter J. Schmid, Dan S. Henningson.; BJL
Stability and transition in shear flows / Peter J. Schmid, Dan S. Henningson.
BJL
BOOK
2000
QA 925 : Hydrodynamic forces on an accelerated cylinder moving in tow-dimensions.; BJL
Hydrodynamic forces on an accelerated cylinder moving in tow-dimensions.
BJL
BOOK
QA 925 M2 : Vorticity and incompressible flow / Andrew J. Majda, Andrea L. Bertozzi.; Departmental Locations
Vorticity and incompressible flow / Andrew J. Majda, Andrea L. Bertozzi.
Departmental Locations