Favier B, Proctor M R E
Department of Applied Mathematics and Theoretical Physics, University of Cambridge, Centre for Mathematical Sciences, Wilberforce Road, Cambridge CB3 0WA, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Nov;88(5):053011. doi: 10.1103/PhysRevE.88.053011. Epub 2013 Nov 13.
We consider kinematic dynamo action in rapidly rotating Boussinesq convection just above onset. The velocity is constrained to have either a square or a hexagonal pattern. For the square pattern, large-scale dynamo action is observed at onset, with most of the magnetic energy being contained in the horizontally averaged component. As the magnetic Reynolds number increases, small-scale dynamo action becomes possible, reducing the overall growth rate of the dynamo. For the hexagonal pattern, the breaking of symmetry between up and down flows results in an effective pumping velocity. For intermediate rotation rates, this additional effect can prevent the growth of any mean-field dynamo, so that only a small-scale dynamo is eventually possible at large enough magnetic Reynolds number. For very large rotation rates, this pumping term becomes negligible, and the dynamo properties of square and hexagonal patterns are qualitatively similar. These results hold for both perfectly conducting and infinite magnetic permeability boundary conditions.
我们考虑在起始点上方快速旋转的布辛涅斯克对流中的运动学发电机作用。速度被限制为具有方形或六边形模式。对于方形模式,在起始点观察到大规模发电机作用,大部分磁能包含在水平平均分量中。随着磁雷诺数增加,小规模发电机作用变得可能,降低了发电机的整体增长率。对于六边形模式,上下流之间对称性的破坏导致有效抽吸速度。对于中等旋转速率,这种额外效应可以阻止任何平均场发电机的增长,因此只有在足够大的磁雷诺数下最终才可能出现小规模发电机。对于非常大的旋转速率,这个抽吸项变得可以忽略不计,方形和六边形模式的发电机特性在定性上是相似的。这些结果对于完全导电和无限磁导率边界条件都成立。