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Effects of a subadiabatic layer on convection and dynamos in spherical wedge simulations

机译:次基产阶段对对流和发电机的影响球面楔形模拟

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We consider the effect of a subadiabatic layer at the base of the convection zone on convection itself and the associated large-scale dynamos in spherical wedge geometry. We use a heat conduction prescription based on the Kramers opacity law which allows the depth of the convection zone to dynamically adapt to changes in the physical characteristics such as rotation rate and magnetic fields. We find that the convective heat transport is strongly concentrated towards the equatorial and polar regions in the cases without a substantial radiative layer below the convection zone. The presence of a stable layer below the convection zone significantly reduces the anisotropy of radial enthalpy transport. Furthermore, the dynamo solutions are sensitive to subtle changes in the convection zone structure. We find that the kinetic helicity changes sign in the deeper parts of the convection zone at high latitudes in all runs. This region expands progressively towards the equator in runs with a thicker stably stratified layer.
机译:我们考虑对流区域底部对对流自身的基础的影响,以及球形楔几何形状的相关大型发电机。我们使用基于克拉姆的透明度定律使用导热处方,这允许对流区域的深度动态地适应诸如旋转速率和磁场的物理特性的变化。我们发现,在没有大致辐射层下方的情况下,对流热传输在没有对流区域下方的情况下朝向赤道和极地区域集中。对流区下方的稳定层的存在显着降低了径向焓运输的各向异性。此外,发电机解决方案对对流区域结构的微妙变化敏感。我们发现动力学螺旋变化在所有跑步中的高纬度地区的对流区的更深部分。该区域逐渐朝向具有较厚稳定分层的层的载体逐渐膨胀。

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