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Convection-driven kinematic dynamos with a self-consistent shear flow

机译:具有自一致剪切流的对流驱动的运动动力学

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摘要

It is widely accepted that astrophysical magnetic fields are generated by dynamo action. In many cases, these fields exhibit organisation on a scale larger than that of the underlying turbulent flow (e.g. the 11-year solar cycle). The mechanism for the generation of so-called large-scale fields remains an open problem. In cases where the magnetic Reynolds number (Rm) is small, dynamo-generated fields are coherent but at (the astrophysically relevant) high Rm, the fields are overwhelmed by small-scale fluctuating field. Recently Tobias and Cattaneo have shown that an imposed large-scale shear flow can suppress the small-scale fluctuations and allow the large-scale temporal behaviour to emerge. Shear is also believed to modify the electromotive force by introducing correlations between the flow and the field. However, in previous models at high Rm the shear is often artificially imposed or driven by an arbitrary body force. Here we consider a simple kinematic model of a convective dynamo in which shear is self-consistently driven by the presence of a horizontal temperature gradient (resulting in a thermal wind) and a rotation vector that is oblique to gravity. By considering a -dimensional system, we are able to reach high Rm so that the dynamo approaches the asymptotic regime where the growth rate becomes approximately independent of Rm. We find the flows studied here to be excellent small-scale dynamos, but with very little systematic behaviour evident at large Rm. We attribute this to being unable to self-consistently generate flows with both large (net) helicity and strong shear in this setup.
机译:众所周度地接受了天体物理磁场由发电机作用产生。在许多情况下,这些领域展示了大于底层湍流(例如11年太阳循环)的规模的组织。生成所谓的大型字段的机制仍然是一个公开问题。在磁性雷诺数(RM)小的情况下,发电机产生的字段是相干的,但在(天体物理学相关)高RM处,该字段由小规模波动场不堪重负。最近托比亚斯和Cattaneo表明,施加的大规模剪切流程可以抑制小规模波动并允许大规模的时间行为出现。还认为剪切通过引入流动与场之间的相关性来改变电动势。然而,在以前的高RM的模型中,剪切通常由任意体力人工施加或驱动。在这里,我们考虑一种简单的对流动力学的运动模型,其中剪切通过存在水平温度梯度(导致热风)和倾斜于重力的旋转载体来自持续地驱动。通过考虑一个 - 二维系统,我们能够达到高RM,使得发电机接近渐近状态,其中增长率大致独立于RM。我们发现这里研究的流动是优秀的小型发电机,但在大的RM中具有很小的系统行为。我们将此归因于无法在此设置中使用大(净)螺旋和强剪切进行自我始终生成流量。

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