Arctic pathways of Pacific Water : Arctic Ocean Model Intercomparison experiments

dc.contributor.author Aksenov, Yevgeny
dc.contributor.author Karcher, Michael
dc.contributor.author Proshutinsky, Andrey
dc.contributor.author Gerdes, Rudiger
dc.contributor.author de Cuevas, Beverly
dc.contributor.author Golubeva, Elena
dc.contributor.author Kauker, Frank
dc.contributor.author Nguyen, An T.
dc.contributor.author Platov, Gennady A.
dc.contributor.author Wadley, Martin
dc.contributor.author Watanabe, Eiji
dc.contributor.author Coward, Andrew C.
dc.contributor.author Nurser, A. J. George
dc.date.accessioned 2016-03-31T16:53:07Z
dc.date.available 2016-03-31T16:53:07Z
dc.date.issued 2016-01-08
dc.description © The Author(s), 2016. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Journal of Geophysical Research: Oceans 121 (2016): 27–59, doi:10.1002/2015JC011299. en_US
dc.description.abstract Pacific Water (PW) enters the Arctic Ocean through Bering Strait and brings in heat, fresh water, and nutrients from the northern Bering Sea. The circulation of PW in the central Arctic Ocean is only partially understood due to the lack of observations. In this paper, pathways of PW are investigated using simulations with six state-of-the art regional and global Ocean General Circulation Models (OGCMs). In the simulations, PW is tracked by a passive tracer, released in Bering Strait. Simulated PW spreads from the Bering Strait region in three major branches. One of them starts in the Barrow Canyon, bringing PW along the continental slope of Alaska into the Canadian Straits and then into Baffin Bay. The second begins in the vicinity of the Herald Canyon and transports PW along the continental slope of the East Siberian Sea into the Transpolar Drift, and then through Fram Strait and the Greenland Sea. The third branch begins near the Herald Shoal and the central Chukchi shelf and brings PW into the Beaufort Gyre. In the models, the wind, acting via Ekman pumping, drives the seasonal and interannual variability of PW in the Canadian Basin of the Arctic Ocean. The wind affects the simulated PW pathways by changing the vertical shear of the relative vorticity of the ocean flow in the Canada Basin. en_US
dc.description.sponsorship National Science Foundation (NSF). Grant Numbers: PLR-0806306 , PLR-85653100 , PLR-82486400 , PLR-1313614; NASA Advanced Supercomputing (NAS) Division; JPL Supercomputing and Visualization Facility (SVF) Grant Numbers: ARC-0806306 , ARC-85653100 , ARC-82486400; Russian Foundation of Basic Research; Ministry of the Education and Science of the Russian Federation; UK Natural Environment Research Council Grant Number: NE/I028947/ en_US
dc.identifier.citation Journal of Geophysical Research: Oceans 121 (2016): 27–59 en_US
dc.identifier.doi 10.1002/2015JC011299
dc.identifier.uri https://hdl.handle.net/1912/7920
dc.language.iso en en_US
dc.publisher John Wiley & Sons en_US
dc.relation.uri https://doi.org/10.1002/2015JC011299
dc.rights Attribution 4.0 International *
dc.rights.uri http://creativecommons.org/licenses/by/4.0/
dc.subject Arctic Ocean en_US
dc.subject Beaufort Gyre en_US
dc.subject Pacific Water en_US
dc.subject Ocean dynamics en_US
dc.subject Wind forcing en_US
dc.title Arctic pathways of Pacific Water : Arctic Ocean Model Intercomparison experiments en_US
dc.type Article en_US
dspace.entity.type Publication
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