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arxiv: 1311.6502 · v3 · pith:3TQMRYMXnew · submitted 2013-11-25 · ⚛️ physics.geo-ph · astro-ph.EP· physics.flu-dyn

A simplified model of collision-driven dynamo action in small bodies

classification ⚛️ physics.geo-ph astro-ph.EPphysics.flu-dyn
keywords dynamoactionekmanbodiesmodelnumbersmallazimuthal
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We investigate numerically the self-sustained dynamo action in a spinning sphere whose sense of rotation reverses periodically. This system serves as a simple model of a dynamo in small bodies powered by frequent collisions. It is found that dynamo action is possible in some intervals of collision rates. At high Ekman numbers the laminar spin-up flow is helical in the boundary layers and the Ekman circulation together with the azimuthal shear powers the dynamo action. At low Ekman number a non-axisymmetric instability helps the dynamo action. The intermittency of magnetic field occurs at low Ekman number.

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