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Magnetic fields generated by hydromagnetic dynamos at the low Prandtl number in dependence on the Ekman and magnetic Prandtl numbers

机译:低普朗特数由水磁发电机产生的磁场取决于埃克曼数和普朗特数

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摘要

This article investigates the dependence of hydromagnetic dynamos on the magnetic Prandtl number at low Prandtl number. In all the investigated cases, the generated magnetic fields are dipolar and neither transition to hemispherical dynamos nor weaker magnetic fields (which are less dipole dominated) were observed, although the inertia becomes important. The magnetic field becomes weak in the polar regions (is " convected out of polar regions") only for low Prandtl numbers, when the inertia becomes important. It is a basic condition. However, whether the magnetic field gets weak in the polar regions (is " convected out of polar regions") or not depends also on the magnetic Prandtl number. The magnetic Prandtl number has to exceed a minimum value in order to sustain dynamo action. If the magnetic diffusion is small (large magnetic Prandtl numbers) then this phenomenon does not exist but if it is large (small magnetic Prandtl numbers) it exists because the strong magnetic diffusion significantly weakens the magnetic field inside the tangent cylinder. The magnetic diffusion and inertia seem to act in the same direction as to weaken the magnetic field inside the tangent cylinder.
机译:本文研究了在低普朗特数下水磁动力对磁普朗特数的依赖性。在所有研究的情况下,尽管惯性变得很重要,但所产生的磁场是偶极的,既未观察到过渡到半球形动力,也未观察到更弱的磁场(在偶极子中占主导地位)。当惯性变得很重要时,仅对于低Prandtl数,磁场在极性区域中变弱(“从极性区域中对流”)。这是一个基本条件。但是,磁场在极性区域中变弱(“从极性区域对流”)是否还取决于普朗特数。普朗特磁数必须超过最小值以维持发电机动作。如果磁扩散较小(大的普朗特数),则不存在此现象,但如果磁扩散较大(大的普朗特数),则存在该现象,因为强磁扩散会大大削弱切线圆柱体内的磁场。磁扩散和惯性似乎在同一个方向上起作用,以削弱切线圆柱体内的磁场。

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