Whitecap coverage dependence on wind and wave statistics as observed during SO GasEx and HiWinGS

Concurrent wavefield and turbulent flux measurements acquired during the Southern Ocean (SO) Gas Exchange (GasEx) and the High Wind Speed Gas Exchange Study (HiWinGS) projects permit evaluation of the dependence of the whitecap coverage W on wind speed, wave age, wave steepness, mean square slope, a...

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Main Authors: Brumer, SE, Zappa, CJ, Brooks, IM, Tamura, H, Brown, SM, Blomquist, BW, Fairall, CW, Cifuentes-Lorenzen, A
Format: Article in Journal/Newspaper
Language:English
Published: American Meteorological Society 2017
Subjects:
Online Access:https://eprints.whiterose.ac.uk/118869/
https://eprints.whiterose.ac.uk/118869/8/jpo-d-17-0005.1.pdf
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spelling ftleedsuniv:oai:eprints.whiterose.ac.uk:118869 2023-05-15T18:25:38+02:00 Whitecap coverage dependence on wind and wave statistics as observed during SO GasEx and HiWinGS Brumer, SE Zappa, CJ Brooks, IM Tamura, H Brown, SM Blomquist, BW Fairall, CW Cifuentes-Lorenzen, A 2017-09 text https://eprints.whiterose.ac.uk/118869/ https://eprints.whiterose.ac.uk/118869/8/jpo-d-17-0005.1.pdf en eng American Meteorological Society https://eprints.whiterose.ac.uk/118869/8/jpo-d-17-0005.1.pdf Brumer, SE, Zappa, CJ, Brooks, IM orcid.org/0000-0002-5051-1322 et al. (5 more authors) (2017) Whitecap coverage dependence on wind and wave statistics as observed during SO GasEx and HiWinGS. Journal of Physical Oceanography, 47 (9). pp. 2211-2235. ISSN 0022-3670 Article NonPeerReviewed 2017 ftleedsuniv 2023-01-30T21:56:50Z Concurrent wavefield and turbulent flux measurements acquired during the Southern Ocean (SO) Gas Exchange (GasEx) and the High Wind Speed Gas Exchange Study (HiWinGS) projects permit evaluation of the dependence of the whitecap coverage W on wind speed, wave age, wave steepness, mean square slope, and wind-wave and breaking Reynolds numbers. The W was determined from over 600 high-frequency visible imagery recordings of 20 min each. Wave statistics were computed from in situ and remotely sensed data as well as from a WAVEWATCH III hindcast. The first shipborne estimates of W under sustained 10-m neutral wind speeds U10N of 25 m s−1 were obtained during HiWinGS. These measurements suggest that W levels off at high wind speed, not exceeding 10% when averaged over 20 min. Combining wind speed and wave height in the form of the wind-wave Reynolds number resulted in closely agreeing models for both datasets, individually and combined. These are also in good agreement with two previous studies. When expressing W in terms of wavefield statistics only or wave age, larger scatter is observed and/or there is little agreement between SO GasEx, HiWinGS, and previously published data. The wind speed–only parameterizations deduced from the SO GasEx and HiWinGS datasets agree closely and capture more of the observed W variability than Reynolds number parameterizations. However, these wind speed–only models do not agree as well with previous studies than the wind-wave Reynolds numbers. Article in Journal/Newspaper Southern Ocean White Rose Research Online (Universities of Leeds, Sheffield & York) Southern Ocean
institution Open Polar
collection White Rose Research Online (Universities of Leeds, Sheffield & York)
op_collection_id ftleedsuniv
language English
description Concurrent wavefield and turbulent flux measurements acquired during the Southern Ocean (SO) Gas Exchange (GasEx) and the High Wind Speed Gas Exchange Study (HiWinGS) projects permit evaluation of the dependence of the whitecap coverage W on wind speed, wave age, wave steepness, mean square slope, and wind-wave and breaking Reynolds numbers. The W was determined from over 600 high-frequency visible imagery recordings of 20 min each. Wave statistics were computed from in situ and remotely sensed data as well as from a WAVEWATCH III hindcast. The first shipborne estimates of W under sustained 10-m neutral wind speeds U10N of 25 m s−1 were obtained during HiWinGS. These measurements suggest that W levels off at high wind speed, not exceeding 10% when averaged over 20 min. Combining wind speed and wave height in the form of the wind-wave Reynolds number resulted in closely agreeing models for both datasets, individually and combined. These are also in good agreement with two previous studies. When expressing W in terms of wavefield statistics only or wave age, larger scatter is observed and/or there is little agreement between SO GasEx, HiWinGS, and previously published data. The wind speed–only parameterizations deduced from the SO GasEx and HiWinGS datasets agree closely and capture more of the observed W variability than Reynolds number parameterizations. However, these wind speed–only models do not agree as well with previous studies than the wind-wave Reynolds numbers.
format Article in Journal/Newspaper
author Brumer, SE
Zappa, CJ
Brooks, IM
Tamura, H
Brown, SM
Blomquist, BW
Fairall, CW
Cifuentes-Lorenzen, A
spellingShingle Brumer, SE
Zappa, CJ
Brooks, IM
Tamura, H
Brown, SM
Blomquist, BW
Fairall, CW
Cifuentes-Lorenzen, A
Whitecap coverage dependence on wind and wave statistics as observed during SO GasEx and HiWinGS
author_facet Brumer, SE
Zappa, CJ
Brooks, IM
Tamura, H
Brown, SM
Blomquist, BW
Fairall, CW
Cifuentes-Lorenzen, A
author_sort Brumer, SE
title Whitecap coverage dependence on wind and wave statistics as observed during SO GasEx and HiWinGS
title_short Whitecap coverage dependence on wind and wave statistics as observed during SO GasEx and HiWinGS
title_full Whitecap coverage dependence on wind and wave statistics as observed during SO GasEx and HiWinGS
title_fullStr Whitecap coverage dependence on wind and wave statistics as observed during SO GasEx and HiWinGS
title_full_unstemmed Whitecap coverage dependence on wind and wave statistics as observed during SO GasEx and HiWinGS
title_sort whitecap coverage dependence on wind and wave statistics as observed during so gasex and hiwings
publisher American Meteorological Society
publishDate 2017
url https://eprints.whiterose.ac.uk/118869/
https://eprints.whiterose.ac.uk/118869/8/jpo-d-17-0005.1.pdf
geographic Southern Ocean
geographic_facet Southern Ocean
genre Southern Ocean
genre_facet Southern Ocean
op_relation https://eprints.whiterose.ac.uk/118869/8/jpo-d-17-0005.1.pdf
Brumer, SE, Zappa, CJ, Brooks, IM orcid.org/0000-0002-5051-1322 et al. (5 more authors) (2017) Whitecap coverage dependence on wind and wave statistics as observed during SO GasEx and HiWinGS. Journal of Physical Oceanography, 47 (9). pp. 2211-2235. ISSN 0022-3670
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