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Author Vinayachandran, P. N.; Davidson, Fraser; Chassignet, E. P. url  openurl
  Title Towards joint assessments, modern capabilities and new links for ocean prediction systems Type $loc['typeJournal Article']
  Year 2020 Publication Bulletin of the American Meteorological Society Abbreviated Journal Bull. Amer. Meteor. Soc.  
  Volume 101 Issue 4 Pages  
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  Abstract Approximately 260 individuals from forecasting centers, research laboratories, academia, and industry representing 40 countries met to discuss recent developments in operational oceanography and brainstorm about the future directions of ocean prediction services.  
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  Call Number COAPS @ user @ Serial 1091  
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Author O'Brien, J.; Richards, T. S.; Davis, A. C. url  doi
openurl 
  Title The effect of El Nino on U.S. landfalling hurricanes Type $loc['typeMagazine Article']
  Year 1996 Publication Bulletin of the American Meteorological Society Abbreviated Journal  
  Volume 77 Issue 4 Pages 773-774  
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  Call Number COAPS @ mfield @ Serial 715  
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Author LaCasce, J.H.; Escartin, J.; Chassignet, E.P.; Xu, X. url  doi
openurl 
  Title Jet instability over smooth, corrugated and realistic bathymetry Type $loc['typeJournal Article']
  Year 2018 Publication Journal of Physical Oceanography Abbreviated Journal J. Phys. Oceanogr.  
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  Abstract The stability of a horizontally- and vertically-sheared surface jet is examined, with a focus on the vertical structure of the resultant eddies. Over a flat bottom, the instability is mixed baroclinic/barotropic, producing strong eddies at depth which are characteristically shifted downstream relative to the surface eddies. Baroclinic instability is suppressed over a large slope for retrograde jets (with a flow anti-parallel to topographic wave propagation), and to a lesser extent for prograde jets (with flow parallel to topographic wave propagation), as seen previously. In such cases, barotropic (lateral) instability dominates if the jet is sufficiently narrow. This yields surface eddies whose size is independent of the slope but proportional to the jet width. Deep eddies still form, forced by interfacial motion associated with the surface eddies, but they are weaker than under baroclinic instability and are vertically aligned with the surface eddies. A sinusoidal ridge acts similarly, suppressing baroclinic instability and favoring lateral instability in the upper layer.

A ridge with a 1 km wavelength and an amplitude of roughly 10 m is sufficient to suppress baroclinic instability. Surveys of bottom roughness from bathymetry acquired with shipboard multibeam echosounding reveal that such heights are common, beneath the Kuroshio, the Antarctic Circumpolar Current and, to a lesser extent, the Gulf Stream. Consistent with this, vorticity and velocity cross sections from a 1/50° HYCOM simulation suggest that Gulf Stream eddies are vertically aligned, as in the linear stability calculations with strong topography. Thus lateral instability may be more common than previously thought, due to topography hindering vertical energy transfer.
 
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  ISSN 0022-3670 ISBN Medium  
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  Call Number COAPS @ user @ Serial 998  
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Author Ardhuin, F.; Chapron, B.; Maes, C.; Romeiser, R.; Gommenginger, C.; Cravatte, S.; Morrow, R.; Donlon, C.; Bourassa, M. url  doi
openurl 
  Title Satellite Doppler observations for the motions of the oceans Type $loc['typeJournal Article']
  Year 2019 Publication Bulletin of the American Meteorological Society Abbreviated Journal Bull. Amer. Meteor. Soc.  
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  Abstract Satellite remote sensing has revolutionized oceanography, starting from sea surface temperature, ocean color, sea level, winds, waves, and the recent addition of sea surface salinity, providing a global view of upper ocean processes. The possible addition of a direct measurement of surface velocities related to currents, winds and waves opens great opportunities for research and applications.  
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  ISSN 0003-0007 ISBN Medium  
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  Call Number COAPS @ user @ Serial 1025  
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Author Liu, Q.; Tan, Z-M.; Sun, J.; Hou, Y.; Fu, C.; Wu, Z. url  openurl
  Title Changing rapid weather variability increases influenza epidemic risk in a warming climate Type $loc['typeJournal Article']
  Year 2020 Publication Environmental Research Letters Abbreviated Journal Environmental Research Letters  
  Volume 15 Issue 4 Pages  
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  Abstract The continuing change of the Earth's climate is believed to affect the influenza viral activity and transmission in the coming decades. However, a consensus of the severity of the risk of influenza epidemic in a warming climate has not been reached. It was previously reported that the warmer winter can reduce influenza epidemic-caused mortality, but this relation cannot explain the deadly influenza epidemic in many countries over northern mid-latitudes in the winter of 2017-2018, one of the warmest winters in recent decades. Here we reveal that the widely spread 2017-2018 influenza epidemic can be attributed to the abnormally strong rapid weather variability. We demonstrate, from historical data, that the large rapid weather variability in autumn can precondition the deadly influenza epidemic in the subsequent months in highly populated northern mid-latitudes; and the influenza epidemic season of 2017-2018 was a typical case. We further show that climate model projections reach a consensus that the rapid weather variability in autumn will continue to strengthen in some regions of northern mid-latitudes in a warming climate, implying that the risk of influenza epidemic may increase 20% to 50% in some highly populated regions in later 21st century.  
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  Call Number COAPS @ user @ Serial 1070  
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Author Weissman, DE; Morey, S; Bourassa, M url  doi
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  Title Studies of the effects of rain on the performance of the SMAP radiometer surface salinity estimates and applications to remote sensing of river plumes Type $loc['typeConference Article']
  Year 2017 Publication IEEE International Symposium on Geoscience and Remote Sensing IGARSS Abbreviated Journal  
  Volume Issue Pages 1491-1494  
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  Call Number COAPS @ mfield @ Serial 834  
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Author Morey, S. L.; O'Brien, J. J.; Schroeder, W. W.; Zavala-Hidalgo, J. url  doi
openurl 
  Title ), Seasonal variability of the export of river discharged freshwater in the Northern gulf of Mexico Type $loc['typeJournal Article']
  Year 2002 Publication MTS/IEEE Oceans 2002 Proceedings Abbreviated Journal  
  Volume Issue Pages 1480-1484  
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  Call Number COAPS @ mfield @ Serial 861  
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Author Zavala-Hidalgo, J.; Morey, S. L.; O'Brien, J. J. url  doi
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  Title On the formation and interaction of cyclonic eddies with the Loop Current using NCOM and a suite of observations Type $loc['typeJournal Article']
  Year 2002 Publication MTS/IEEE Oceans 2002 Proceedings Abbreviated Journal  
  Volume Issue Pages 1463-1466  
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  Call Number COAPS @ mfield @ Serial 862  
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Author Chassignet, EP; Jones, JW; Misra, V; Obeysekera, J url  doi
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  Title Florida's Climate: Changes, Variations, & Impacts Type $loc['typeBook Whole']
  Year 2017 Publication Abbreviated Journal  
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  Call Number COAPS @ mfield @ Serial 847  
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Author Fairall, C.W., Barnier, B., Berry, D.I, Bourassa, M.A., Bradley, E.F., Clayson, C.A., de Leeuw, G., Drennan, W.M., Gille, S.T., Gulev, S.K., Kent, E.C., McGillis, W.R., Quartly, G.D., Ryabinin, V., Smith, S.R., Weller, R.A., Yelland, M.J. and Zhang, H-M. url  openurl
  Title Observations to Quantify Air-Sea Fluxes and Their Role in Climate Variability and Predictability Type $loc['typeConference Article']
  Year 2010 Publication Proceedings of OceanObs'09: Sustained Ocean Observations and Information for Society, Vol. 2 Abbreviated Journal  
  Volume Issue Pages 299-313  
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  Publisher European Space Agency Place of Publication Editor Hall, J., Harrison, D.E. and Stammer, D. (eds.)  
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  Funding NOAA, COD, NASA, NEWS Approved $loc['no']  
  Call Number COAPS @ mfield @ Serial 270  
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