On coupling between the Poincaré equation and the heat equation: non-slip boundary condition
From MaRDI portal
Publication:4860826
DOI10.1017/S0022112095000346zbMath0843.76028WikidataQ57946930 ScholiaQ57946930MaRDI QIDQ4860826
No author found.
Publication date: 22 August 1996
Published in: Journal of Fluid Mechanics (Search for Journal in Brave)
Rayleigh numberperturbation analysisparameter spaceasymptotic regimeEkman boundary layerEkman numbernumerical code
Absolute and convective instability and stability in hydrodynamic stability (76E15) General theory of rotating fluids (76U05)
Related Items
Instabilities and inertial waves generated in a librating cylinder ⋮ Nonlinear thermal inertial waves in rotating fluid spheres ⋮ On nonlinear multiarmed spiral waves in slowly rotating fluid systems ⋮ Localised thermal convection in rotating spheres that undergo weak precession ⋮ On the internal structure and magnetic fields of venus ⋮ On the onset of low-Prandtl-number convection in rotating spherical shells: non-slip boundary conditions ⋮ Asymptotic theory for torsional convection in rotating fluid spheres ⋮ Taylor vortices in annular heated spherical flow at medium and large aspect ratios ⋮ Euler equations in geophysics and astrophysics ⋮ Characterization of columnar inertial modes in rapidly rotating spheres and spheroids ⋮ A new integral property of inertial waves in rotating fluid spheres ⋮ Viscous dissipation by tidally forced inertial modes in a rotating spherical shell ⋮ Rotating thermal convection in liquid gallium: multi-modal flow, absent steady columns ⋮ The onset of convection in rotating circular cylinders with experimental boundary conditions ⋮ Tilted incompressible Coriolis modes in spheroids ⋮ Onset of fully compressible convection in a rapidly rotating spherical shell ⋮ Rossby waves andα-effect ⋮ Asymptotic solutions of differential rotation driven by convection in rapidly rotating fluid spheres with the non-slip boundary condition