Toward Understanding Polar Heat Transport Enhancement in Subglacial Oceans on Icy Moons

Author:

Hartmann Robert1ORCID,Stevens Richard J. A. M.1ORCID,Lohse Detlef12ORCID,Verzicco Roberto134ORCID

Affiliation:

1. Physics of Fluids Group and Max Planck Center for Complex Fluid Dynamics J.M. Burgers Center for Fluid Dynamics University of Twente Enschede The Netherlands

2. Max Planck Institute for Dynamics and Self‐Organisation Göttingen Germany

3. Dipartimento di Ingegneria Industriale University of Rome ‘Tor Vergata’ Rome Italy

4. Gran Sasso Science Institute L’Aquila Italy

Abstract

AbstractThe interior oceans of several icy moons are considered as affected by rotation. Observations suggest a larger heat transport around the poles than at the equator. Rotating Rayleigh‐Bénard convection (RRBC) in planar configuration can show an enhanced heat transport compared to the non‐rotating case within this “rotation‐affected” regime. We investigate the potential for such a (polar) heat transport enhancement in these subglacial oceans by direct numerical simulations of RRBC in spherical geometry for Ra = 106 and 0.7 ≤ Pr ≤ 4.38. We find an enhancement up to 28% in the “polar tangent cylinder,” which is globally compensated by a reduced heat transport at low latitudes. As a result, the polar heat transport can exceed the equatorial by up to 50%. The enhancement is mostly insensitive to different radial gravity profiles, but decreases for thinner shells. In general, polar heat transport and its enhancement in spherical RRBC follow the same principles as in planar RRBC.

Funder

European Research Council

Publisher

American Geophysical Union (AGU)

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