Fjord circulation induced by melting icebergs

In an iceberg-choked fjord, meltwater can drive circulation. Down-fjord of the ice, buoyancy and rotation lead to an outflowing surface coastal current hugging one side of the fjord with an inflowing counter-current below. To predict the structure and evolution of these currents, we develop an analy...

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Main Author: Hughes, Kenneth G.
Format: Text
Language:English
Published: 2024
Subjects:
Online Access:https://doi.org/10.5194/egusphere-2023-2106
https://egusphere.copernicus.org/preprints/2023/egusphere-2023-2106/
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spelling ftcopernicus:oai:publications.copernicus.org:egusphere114825 2024-06-23T07:53:21+00:00 Fjord circulation induced by melting icebergs Hughes, Kenneth G. 2024-03-21 application/pdf https://doi.org/10.5194/egusphere-2023-2106 https://egusphere.copernicus.org/preprints/2023/egusphere-2023-2106/ eng eng doi:10.5194/egusphere-2023-2106 https://egusphere.copernicus.org/preprints/2023/egusphere-2023-2106/ eISSN: Text 2024 ftcopernicus https://doi.org/10.5194/egusphere-2023-2106 2024-06-13T01:23:50Z In an iceberg-choked fjord, meltwater can drive circulation. Down-fjord of the ice, buoyancy and rotation lead to an outflowing surface coastal current hugging one side of the fjord with an inflowing counter-current below. To predict the structure and evolution of these currents, we develop an analytical model – complemented by numerical simulations – that involves a rectangular fjord initially at rest. Specifically, we (i) start with the so-called Rossby adjustment problem; (ii) reconfigure it for a closed channel with stratification; and (iii) generalize the conventional “dam-break” scenario to a gradual-release one that mimics the continual, slow injection of meltwater. Implicit in this description is the result that circulation is mediated by internal Kelvin waves. The analytical model shows that if the total meltwater flux increases (e.g., a larger mélange, warmer water, or enhanced ice–ocean turbulence) then circulation strength increases as would be expected. For realistic parameters, a given meltwater flux induces an exchange flow that is ∼ 50 times larger. This factor decreases with increasing water column stratification and vice versa. Overall, this paper is a step toward making Greenland-wide predictions of fjord inflows and outflows induced by icebergs. Text Greenland Copernicus Publications: E-Journals Greenland
institution Open Polar
collection Copernicus Publications: E-Journals
op_collection_id ftcopernicus
language English
description In an iceberg-choked fjord, meltwater can drive circulation. Down-fjord of the ice, buoyancy and rotation lead to an outflowing surface coastal current hugging one side of the fjord with an inflowing counter-current below. To predict the structure and evolution of these currents, we develop an analytical model – complemented by numerical simulations – that involves a rectangular fjord initially at rest. Specifically, we (i) start with the so-called Rossby adjustment problem; (ii) reconfigure it for a closed channel with stratification; and (iii) generalize the conventional “dam-break” scenario to a gradual-release one that mimics the continual, slow injection of meltwater. Implicit in this description is the result that circulation is mediated by internal Kelvin waves. The analytical model shows that if the total meltwater flux increases (e.g., a larger mélange, warmer water, or enhanced ice–ocean turbulence) then circulation strength increases as would be expected. For realistic parameters, a given meltwater flux induces an exchange flow that is ∼ 50 times larger. This factor decreases with increasing water column stratification and vice versa. Overall, this paper is a step toward making Greenland-wide predictions of fjord inflows and outflows induced by icebergs.
format Text
author Hughes, Kenneth G.
spellingShingle Hughes, Kenneth G.
Fjord circulation induced by melting icebergs
author_facet Hughes, Kenneth G.
author_sort Hughes, Kenneth G.
title Fjord circulation induced by melting icebergs
title_short Fjord circulation induced by melting icebergs
title_full Fjord circulation induced by melting icebergs
title_fullStr Fjord circulation induced by melting icebergs
title_full_unstemmed Fjord circulation induced by melting icebergs
title_sort fjord circulation induced by melting icebergs
publishDate 2024
url https://doi.org/10.5194/egusphere-2023-2106
https://egusphere.copernicus.org/preprints/2023/egusphere-2023-2106/
geographic Greenland
geographic_facet Greenland
genre Greenland
genre_facet Greenland
op_source eISSN:
op_relation doi:10.5194/egusphere-2023-2106
https://egusphere.copernicus.org/preprints/2023/egusphere-2023-2106/
op_doi https://doi.org/10.5194/egusphere-2023-2106
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