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Convection-driven kinematic dynamos at low Rossby and magnetic Prandtl numbers: Single mode solutions

机译:低Rossby数和磁Prandtl数的对流驱动运动学动力学:单模解决方案

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The onset of dynamo action is investigated within the context of a newly developed low Rossby, low magnetic Prandtl number, convection-driven dynamo model. This multiscale model represents an asymptotically exact form of an alpha(2) mean field dynamo model in which the small-scale convection is represented explicitly by finite amplitude, single mode solutions. Both steady and oscillatory convection are considered for a variety of horizontal planforms. The kinetic helicity is observed to be a monotonically increasing function of the Rayleigh number. As a result, very small magnetic Prandtl number dynamos can be found for sufficiently large Rayleigh numbers. All dynamos are found to be oscillatory with an oscillation frequency that increases as the strength of the convection is increased and the magnetic Prandtl number is reduced. Kinematic dynamo action is strongly controlled by the profile of the helicity; single mode solutions which exhibit boundary layer behavior in the helicity show a decrease in the efficiency of dynamo action due to the enhancement of magnetic diffusion in the boundary layer regions. For a given value of the Rayleigh number, lower magnetic Prandtl number dynamos are excited for the case of oscillatory convection in comparison to steady convection. With regard to planetary dynamos, these results suggest that the low magnetic Prandtl number dynamos typical of liquid metals are more easily driven by thermal convection than by compositional convection.
机译:在新开发的低Rossby,低磁Prandtl数,对流驱动发电机模型的背景下研究了发电机作用的开始。此多尺度模型表示alpha(2)平均场发电机模型的渐近精确形式,其中小尺度对流由有限振幅,单模解明确表示。对于各种水平平面,均考虑了稳定对流和振荡对流。观察到动力学螺旋是瑞利数的单调增加函数。结果,对于足够大的瑞利数,可以发现非常小的磁普朗特数动力学。发现所有的发电机都是振荡的,其振荡频率随着对流强度的增加和普朗特数的减少而增加。运动发电机的动作受到螺旋线轮廓的强烈控制;由于在边界层区域中磁扩散的增强,在螺旋度中表现出边界层行为的单模解决方案显示了发电机作用效率的降低。对于给定的瑞利数,与稳定对流相比,在振荡对流的情况下,较低的磁Prandtl数发电机被激励。关于行星发电机,这些结果表明,液体金属典型的低磁普朗特数发电机比热对流比成分对流更容易驱动。

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