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Baroclinically-driven flows and dynamo action in rotating spherical fluid shells

机译:旋转球形流体壳中的双冠状驱动的流动和发电机作用

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The dynamics of stably stratified stellar radiative zones is of considerable interest due to the availability of increasingly detailed observations of Solar and stellar interiors. This article reports the first non-axisymmetric and time-dependent simulations of flows of anelastic fluids driven by baroclinic torques in stably stratified rotating spherical shells - a system serving as an elemental model of a stellar radiative zone. With increasing baroclinicity a sequence of bifurcations from simpler to more complex flows is found in which some of the available symmetries of the problem are broken subsequently. The poloidal component of the flow grows relative to the dominant toroidal component with increasing baroclinicity. The possibility of magnetic field generation thus arises and this paper proceeds to provide some indications for self-sustained dynamo action in baroclinically-driven flows. We speculate that magnetic fields in stably stratified stellar interiors are thus not necessarily of fossil origin as it is often assumed.
机译:由于对太阳能和恒星室内设计的越来越详细观察,稳定分层的恒星辐射区域的动态具有相当大的兴趣。本文报道了由稳定分层的旋转球形壳体中的曲金扭矩驱动的四重子液流动的第一非轴对称和时间依赖性模拟 - 一种作为恒星辐射区域的元素模型的系统。随着逐渐增加的双层级别,发现从更简单到更复杂的流动的分叉序列在其中,随后,该问题的一些可用对称性被破坏。流动的单色组分相对于随着条巴冠状性的增加而相对于主体环形组分增长。因此,产生磁场产生的可能性,并且本文继续为在逐渐驱动的流动中提供用于自我持续发电机动作的一些指示。我们推测稳定分层的恒星内层中的磁场因此不一定是化石原点,因为它通常被假定。

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