Records |
Author |
Savage, A.C.; Arbic, B.K.; Alford, M.H.; Ansong, J.K.; Farrar, J.T.; Menemenlis, D.; O'Rourke, A.K.; Richman, J.G.; Shriver, J.F.; Voet, G.; Wallcraft, A.J.; Zamudio, L. |
Title |
Spectral decomposition of internal gravity wave sea surface height in global models: INTERNAL GRAVITY WAVE SEA SURFACE HEIGHT |
Type |
$loc['typeJournal Article'] |
Year |
2017 |
Publication |
Journal of Geophysical Research: Oceans |
Abbreviated Journal |
J. Geophys. Res. Oceans |
Volume |
122 |
Issue |
10 |
Pages |
7803-7821 |
Keywords |
high-frequency motions; atmospheric pressure; dynamic height |
Abstract |
Two global ocean models ranging in horizontal resolution from 1/128 to 1/488 are used to study the space and time scales of sea surface height (SSH) signals associated with internal gravity waves (IGWs). Frequency-horizontal wavenumber SSH spectral densities are computed over seven regions of the world ocean from two simulations of the HYbrid Coordinate Ocean Model (HYCOM) and three simulations of the Massachusetts Institute of Technology general circulation model (MITgcm). High wavenumber, high-frequency SSH variance follows the predicted IGW linear dispersion curves. The realism of high-frequency motions (>0:87 cpd) in the models is tested through comparison of the frequency spectral density of dynamic height variance computed from the highest-resolution runs of each model (1/258 HYCOM and 1/488 MITgcm) with dynamic height variance frequency spectral density computed from nine in situ profiling instruments. These high-frequency motions are of particular interest because of their contributions to the small-scale SSH variability that will be observed on a global scale in the upcoming Surface Water and Ocean Topography (SWOT) satellite altimetry mission. The variance at supertidal frequencies can be comparable to the tidal and low-frequency variance for high wavenumbers (length scales smaller than 50 km), especially in the higher-resolution simulations. In the highest-resolution simulations, the high-frequency variance can be greater than the low-frequency variance at these scales. |
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2169-9275 |
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$loc['no'] |
Call Number |
COAPS @ rl18 @ |
Serial |
993 |
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Author |
Smith, S.R.; Briggs, K.; Lopez, N.; Kourafalou, V. |
Title |
Applying Automated Underway Ship Observations to Numerical Model Evaluation |
Type |
$loc['typeJournal Article'] |
Year |
2016 |
Publication |
Journal of Atmospheric and Oceanic Technology |
Abbreviated Journal |
J. Atmos. Oceanic Technol. |
Volume |
33 |
Issue |
3 |
Pages |
409-428 |
Keywords |
Ship observations; Automatic weather stations; Ocean models; Model evaluation/performance; In situ atmospheric observations; Observational techniques and algorithms; Models and modeling; In situ oceanic observations |
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0739-0572 |
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$loc['no'] |
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COAPS @ mfield @ |
Serial |
53 |
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Author |
Sura, P.; Hannachi, A. |
Title |
Perspectives of Non-Gaussianity in Atmospheric Synoptic and Low-Frequency Variability |
Type |
$loc['typeJournal Article'] |
Year |
2015 |
Publication |
Journal of Climate |
Abbreviated Journal |
J. Climate |
Volume |
28 |
Issue |
13 |
Pages |
5091-5114 |
Keywords |
Atmospheric circulation; Nonlinear dynamics; Statistics; Climate variability |
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0894-8755 |
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$loc['no'] |
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COAPS @ mfield @ |
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114 |
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Author |
Swearingen, A. D. |
Title |
Examining Shifts in Warm-Season Near-Surface Moisture Trends in Florida |
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$loc['typeManuscript'] |
Year |
2015 |
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Florida; Surface dew points; Atmospheric moisture |
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Department of Earth, Ocean, and Atmospheric Science |
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$loc['Bachelor's thesis'] |
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Florida State University |
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Tallahassee, FL |
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$loc['no'] |
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COAPS @ mfield @ |
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115 |
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Author |
Todd, Austin |
Title |
Circulation Dynamics and Larval Transport Mechanisms in the Florida Big Bend |
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$loc['typeManuscript'] |
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2013 |
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Department of Earth, Ocean and Atmospheric Science |
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$loc['Ph.D. thesis'] |
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Florida State University |
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Tallahassee, FL |
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$loc['no'] |
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COAPS @ mfield @ |
Serial |
228 |
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Author |
Wallcraft, A.J.; Kara, A.B.; Hurlburt, H.E.; Chassignet, E.P.; Halliwell, G.H. |
Title |
Value of bulk heat flux parameterizations for ocean SST prediction |
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$loc['typeJournal Article'] |
Year |
2008 |
Publication |
Journal of Marine Systems |
Abbreviated Journal |
Journal of Marine Systems |
Volume |
74 |
Issue |
1-2 |
Pages |
241-258 |
Keywords |
Bulk heat fluxes; Ocean model SST; Exchange coefficients; Atmospheric forcing; Climate |
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0924-7963 |
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$loc['no'] |
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COAPS @ mfield @ |
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405 |
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Author |
Xue, W.; Xin, X.; Zhang, J.; Zhang, W.; Wu, H.; Huang, Z.; Zhang, T.; Li, H.; Ding, N.; Huang H. |
Title |
Development and Testing of a Multi-model Ensemble Coupling Framework |
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$loc['typeBook Chapter'] |
Year |
2016 |
Publication |
Development and Evaluation of High Resolution Climate System Models |
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Pages |
163-208 |
Keywords |
Climate system model; Ensemble coupling platform; Atmospheric noise; Process layout |
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Springer |
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$loc['no'] |
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COAPS @ mfield @ |
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91 |
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Author |
Zheng, Y.; Zhang, R.; Bourassa, M.A. |
Title |
Impact of East Asian Winter and Australian Summer Monsoons on the Enhanced Surface Westerlies over the Western Tropical Pacific Ocean Preceding the El Niño Onset |
Type |
$loc['typeJournal Article'] |
Year |
2014 |
Publication |
Journal of Climate |
Abbreviated Journal |
J. Climate |
Volume |
27 |
Issue |
5 |
Pages |
1928-1944 |
Keywords |
Atmospheric circulation; Forcing; Dynamics; Monsoons; Wind |
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0894-8755 |
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$loc['no'] |
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COAPS @ mfield @ |
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155 |
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