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Journal of Computational Physics 197 (2) (2004) 671-685
Numerical study of a rotating fluid in a spheroidal container.
Denys Schmitt 1, Dominique Jault 2
(2004)

The motion of an incompressible, viscous rotating fluid contained in a spheroidal conainer is studied by a direct numerical simulation in a oblate speroidal system. An appropriate formalism is first derived which allows us to expand any scalar field in spherical harmonics and to decompose any vector field into its sphero-poloidal and sphero-toroidal scalar parts.
1:  Laboratoire Louis Néel (LLN)
CNRS : UPR5051
2:  Laboratoire de géophysique interne et tectonophysique (LGIT)
CNRS : UMR5559 – IRD – LCPC – OSUG – INSU – Université de Savoie – Université Joseph Fourier - Grenoble I
Physics/Physics/Fluid Dynamics
rotating fluids – viscous effects – spheroidal geometry
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