HAL will be down for maintenance from Friday, June 10 at 4pm through Monday, June 13 at 9am. More information
Skip to Main content Skip to Navigation
Journal articles

Experimental study of libration-driven zonal flows in a straight cylinder

Abstract : Forced longitudinal librations are oscillatory perturbations of the rotation rate of a planet resulting from a gravitational coupling with orbital partners. In the present study we report the first experimental evidence that a librating cylindrical container can viscously drive mean azimuthal flows in the liquid interior, hereafter referred to as zonal flows. Using a novel laser Doppler velocimetry system, the current work extends upon the study of libration-driven flows by Noir et al. (2009). We investigate the different mechanisms underlying the zonal flow generation. It is found that zonal flows in the interior result primarily from non-linearities in the Ekman boundary layer. Furthermore, the zonal flow scales as the square of the libration amplitude and is independent of the Ekman number. This scaling implies that forced longitudinal libration in an axisymmetric container (purely viscous coupling) will drive unobservably small zonal flows at planetary conditions. Thus, purely viscous librational coupling will not generate significant energy dissipation in a planetary fluid layer. It follows that any observed phase lag between the gravitational forcing and the orbital response of a planet requires non-viscous coupling mechanisms to account for the energy dissipation
Complete list of metadata

Contributor : Margaret Lartaud Connect in order to contact the contributor
Submitted on : Wednesday, April 4, 2012 - 1:42:51 PM
Last modification on : Tuesday, October 19, 2021 - 6:58:53 PM

Links full text




J. Noir, M. A. Calkins, M. Lasbleis, J. Cantwell, J. M. Aurnou. Experimental study of libration-driven zonal flows in a straight cylinder. Physics of the Earth and Planetary Interiors, Elsevier, 2010, 182 (1-2), pp.98-106. ⟨10.1016/j.pepi.2010.06.012⟩. ⟨insu-00685171⟩



Record views