Noise-Sustained Convective Instability in a Magnetized Taylor-Couette Flow
[摘要] The helical magnetorotational instability of the magnetized Taylor-Couette flow is studied numerically in a finite cylinder. A distant upstream insulating boundary is shown to stabilize the convective instability entirely while reducing the growth rate of the absolute instability. The reduction is less severe with larger height. After modeling the boundary conditions properly, the wave patterns observed in the experiment turn out to be a noise-sustained convective instability. After the source of the noise resulted from unstable Ekman and Stewartson layers is switched off, a slowly-decaying inertial oscillation is observed in the simulation. We reach the conclusion that the experiments completed to date have not yet reached the regime of absolute instability.
[发布日期] 2009-02-20 [发布机构]
[效力级别] [学科分类] 原子、分子光学和等离子物理
[关键词] BOUNDARY CONDITIONS;INSTABILITY;OSCILLATIONS;SIMULATION MHD Instability;Magnetic Field Effects;Magnetohydrodynamics (MHD) [时效性]