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contributor authorMadelaine G. Rosevear
contributor authorBishakhdatta Gayen
contributor authorBenjamin K. Galton-Fenzi
date accessioned2023-04-12T18:33:35Z
date available2023-04-12T18:33:35Z
date copyright2022/10/14
date issued2022
identifier otherJPO-D-21-0317.1.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4289878
description abstractThe Antarctic Ice Sheet is losing mass as a result of increased ocean-driven melting of its fringing ice shelves. Efforts to represent the effects of basal melting in sea level projections are undermined by poor understanding of the turbulent ice shelf–ocean boundary layer (ISOBL), a meters-thick layer of ocean that regulates heat and salt transfer between the ocean and ice. To address this shortcoming, we perform large-eddy simulations of the ISOBL formed by a steady, geostrophic flow beneath horizontal ice. We investigate melting and ISOBL structure and properties over a range of free-stream velocities and ocean temperatures. We find that the melting response to changes in thermal and current forcing is highly nonlinear due to the effects of meltwater on ISOBL turbulence. Three distinct ISOBL regimes emerge depending on the relative strength of current shear and buoyancy forcing: “well-mixed,” “stratified,” or “diffusive-convective.” We present expressions for mixing-layer depth for each regime and show that the transitions between regimes can be predicted with simple nondimensional parameters. We use these results to develop a novel regime diagram for the ISOBL which provides insight into the varied melting responses expected around Antarctica and highlights the need to include stratified and diffusive-convective dynamics in future basal melting parameterizations. We emphasize that melting in the diffusive-convective regime is time dependent and is therefore inherently difficult to parameterize.
publisherAmerican Meteorological Society
titleRegimes and Transitions in the Basal Melting of Antarctic Ice Shelves
typeJournal Paper
journal volume52
journal issue10
journal titleJournal of Physical Oceanography
identifier doi10.1175/JPO-D-21-0317.1
journal fristpage2589
journal lastpage2608
page2589–2608
treeJournal of Physical Oceanography:;2022:;volume( 052 ):;issue: 010
contenttypeFulltext


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