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Cylindrical anisotropic alpha(2) dynamos

机译:圆柱各向异性alpha(2)发电机

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We explore the influence of geometry variations on the structure and the time-dependence of the magnetic field that is induced by kinematic alpha(2) dynamos in a finite cylinder. The dynamo action is due to an anisotropic alpha effect which can be derived from an underlying columnar flow. The investigated geometry variations concern, in particular, the aspect ratio of height to radius of the cylinder, and the thickness of the annular space to which the columnar flow is restricted. Motivated by the quest for laboratory dynamos which exhibit Earth-like features, we start with modifications of the Karlsruhe dynamo facility. Its dynamo action is reasonably described by an alpha(2) mechanism with anisotropic alpha tensor. We find a critical aspect ratio below which the dominant magnetic field structure changes from an equatorial dipole to an axial dipole. Similar results are found for alpha(2) dynamos working in an annular space when a radial dependence of alpha is assumed. Finally, we study the effect of varying aspect ratios of dynamos with an alpha tensor depending both on radial and axial coordinates. In this case only dominant equatorial dipoles are found and most of the solutions are oscillatory, contrary to all previous cases where the resulting fields are steady.
机译:我们探索几何变化对有限圆柱体中的运动α(2)动力学感应的磁场的结构和时间依赖性的影响。发电机作用是由于各向异性的阿尔法效应所致,该效应可以源自潜在的柱状流。所研究的几何形状变化尤其涉及圆柱体的高度与半径的长宽比以及限制柱状流的环形空间的厚度。出于对具有类似地球特征的实验室动态的追求的推动,我们从对卡尔斯鲁厄发电机设施的改造开始。它的发电机动作由具有各向异性alpha张量的alpha(2)机制合理地描述。我们发现一个临界纵横比,低于该临界纵横比时,主导磁场结构将从赤道偶极子变为轴向偶极子。当假定径向依赖于alpha时,对于在环形空间中工作的alpha(2)发电机发现了相似的结果。最后,我们研究了根据径向和轴向坐标变化的具有Alpha张量的发电机高宽比的影响。在这种情况下,只发现了主要的赤道偶极子,并且大多数解决方案都是振荡的,这与以前所有结果场稳定的情况相反。

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