Published December 1975 | Version v1
Journal article

Equilibrium problems in a rotating convection zone

  • 1. AN SSSR, Leningrad. Fiziko-Tekhnicheskij Inst.

Description

This paper is a continuation of the author's work on stellar convection (Vandakurov, 1975). The approximate equations for convective perturbations in that paper are somewhat corrected and generalized to include both nonlinear terms and possible variations in molecular weight. A crude estimate of the nonlinear terms is given by means of an expansion of the solution in powers of the perturbation amplitude. It is assumed that only the most rapidly growing unstable modes are of significance and that the initial kinetic energy of each independent mode is the same. An expansion in powers of the angular velocity is also performed. (This means that some upper stellar layers with small, superadiabaticity are considered.) It is shown that an azimuth-averaged azimuthal force is created by the unstable perturbations. In particular, it is most likely that in the upper part of any stellar convection envelope the rigid rotation is nonequilibrious. A simple formula for the above asimuthal force is derived in the case of a latitude-dependent angular velocity and a small viscosity of the medium. If the perturbed characteristic scale-height is sufficiently small, the azimuthal force created by the most unstable modes is equivalent to a viscous force, but with a negative viscosity coefficient. In the approximation under consideration, the heat flux is spherically symmetric. (Auth.)

Part of:
On convection in the sun

Additional details

Identifiers

Publishing Information

Journal Title
Solar Physics
Journal Volume
45
Journal Issue
2
Series
Sol. Phys.
Journal Page Range
501-520
ISSN
0038-0938

INIS

Country of Publication
Netherlands
Country of Input or Organization
Netherlands
INIS RN
7254093
Subject category
S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Descriptors DEI
ANGULAR VELOCITY; CONVECTION; DISTURBANCES; EQUATIONS OF MOTION; KINETIC ENERGY; LEGENDRE POLYNOMIALS; ROTATION; STARS; VISCOSITY
Descriptors DEC
DIFFERENTIAL EQUATIONS; ENERGY; ENERGY TRANSFER; EQUATIONS; FUNCTIONS; HEAT TRANSFER; POLYNOMIALS; VELOCITY

Optional Information

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