Walker, A.M., Davies, C.J., Wilson-Spencer, A.J. orcid.org/0000-0002-6602-0990 et al. (1 more author) (2025) A non-equilibrium slurry model for planetary cores with application to Earth’s F-layer. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 481 (2311). 20240505. ISSN 1364-5021
Abstract
Slurry regions may exist in the cores of several terrestrial bodies and are expected to influence the dynamics of deep planetary interiors and the viability of maintaining global magnetic fields. Here, we develop a two-component slurry model of the lowermost outer core of the Earth (the F-layer). In contrast to most previous models of slurries in planetary cores, we explicitly model the physics controlling the nucleation, growth and sinking of individual iron crystals and do not assume that the layer is in phase equilibrium. We assume that falling crystals do not interact and that the temperature and the overall composition are imposed, which allows us to solve for the volume fraction of solid in the layer and the size distribution of crystals. Models that produce a plausible heat budget and density excess compared with the bulk core yield a solid fraction that is far below that predicted by phase equilibrium and have a crystal size distribution dominated by the smallest particles with a maximum particle radii of 3 cm. The model can be used to understand the role of non-equilibrium effects in other planetary cores.
Metadata
Item Type: | Article |
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Authors/Creators: |
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Copyright, Publisher and Additional Information: | © 2025 The Authors. Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited. |
Keywords: | slurry, non-equilibrium, planetary cores, nucleation, crystal growth |
Dates: |
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Institution: | The University of Leeds |
Academic Units: | The University of Leeds > Faculty of Environment (Leeds) > School of Earth and Environment (Leeds) |
Funding Information: | Funder Grant number NERC (Natural Environment Research Council) NE/T004835/1 NERC (Natural Environment Research Council) NE/V010867/1 NERC (Natural Environment Research Council) NE/T000228/1 |
Depositing User: | Symplectic Publications |
Date Deposited: | 05 Mar 2025 10:02 |
Last Modified: | 08 Apr 2025 12:40 |
Published Version: | https://royalsocietypublishing.org/doi/10.1098/rsp... |
Status: | Published |
Publisher: | The Royal Society |
Identification Number: | 10.1098/rspa.2024.0505 |
Open Archives Initiative ID (OAI ID): | oai:eprints.whiterose.ac.uk:224017 |