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A LOCAL STABILITY ANALYSIS OF ASTRONOMICAL DISKS
被引:1
|
作者
:
KOEN, C
论文数:
0
引用数:
0
h-index:
0
机构:
Institute of Physics and Astronomy, National Central University, Chung Li
KOEN, C
机构
:
[1]
Institute of Physics and Astronomy, National Central University, Chung Li
来源
:
GEOPHYSICAL AND ASTROPHYSICAL FLUID DYNAMICS
|
1991年
/ 56卷
/ 1-4期
关键词
:
ACCRETION DISKS;
DIFFERENTIALLY ROTATING FLUIDS;
STABILITY THEORY;
D O I
:
10.1080/03091929108219518
中图分类号
:
P1 [天文学];
学科分类号
:
0704 ;
摘要
:
A fifth-order dispersion relation describing the local stability of a differentially rotating flow against small perturbations is derived. Finite viscosity and conductivity and both vertical (parallel to the rotation axis) and radial gradients in density, temperature and pressure are included. A general form is assumed for the equation of state, although this is not exploited in the paper. A number of special cases are studied: with negligible viscosity and conductivity, it is shown that modes can often be separated into two high frequency (modified acoustic), two intermediate frequency (combined inertial and internal waves) and a low frequency mode. In convectively unstable situations the intermediate frequency modes may be replaced by a damped/growing pair of instablities. Various criteria for mode excitation are given. It is shown that viscosity always inhibits instability at very short wavelengths, while nonzero conductivity may destabilize the flow. At intermediate wavelengths viscosity could also play a destabilizing role. A parameter study of the effects of fluctuations in the conductivity shows that it could cause mode excitation under certain circumstances. © 1991 Gordon and Breach Science Publishers S.A.
引用
收藏
页码:205 / 226
页数:22
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