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Author (up) Meyers, S. D.; O'Brien, J. J.
Title Tropically forced Rossby waves as a source of decadal variability in the Northeast Pacific Ocean Type $loc['typeConference Article']
Year 1997 Publication Seventh AMS Conference on Climate Variations, Long Beach, CA, USA Abbreviated Journal
Volume Issue Pages 92-96
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Funding Approved $loc['no']
Call Number COAPS @ mfield @ Serial 734
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Author (up) Meyers, S.D.; Basu, S.
Title Eddies in the eastern Gulf of Alaska from TOPEX/POSEIDON altimetry Type $loc['typeJournal Article']
Year 1999 Publication Journal of Geophysical Research: Oceans Abbreviated Journal J. Geophys. Res.
Volume 104 Issue C6 Pages 13333-13343
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ISSN 0148-0227 ISBN Medium
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Funding Approved $loc['no']
Call Number COAPS @ mfield @ Serial 526
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Author (up) Meyers, S.D.; Liu, M.; O'Brien, J.J.; Johnson, M.A.; Spiesberger, J.L.
Title Interdecadal Variability in a Numerical Model of the Northeast Pacific Ocean: 1970-89 Type $loc['typeJournal Article']
Year 1996 Publication Journal of Physical Oceanography Abbreviated Journal J. Phys. Oceanogr.
Volume 26 Issue 12 Pages 2635-2652
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ISSN 0022-3670 ISBN Medium
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Funding Approved $loc['no']
Call Number COAPS @ mfield @ Serial 545
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Author (up) Meyers, S.D.; Melsom, A.; Mitchum, G.T.; O'Brien, J.J.
Title Detection of the fast Kelvin wave teleconnection due to El Niño-Southern Oscillation Type $loc['typeJournal Article']
Year 1998 Publication Journal of Geophysical Research: Oceans Abbreviated Journal J. Geophys. Res.
Volume 103 Issue C12 Pages 27655-27663
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ISSN 0148-0227 ISBN Medium
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Funding Approved $loc['no']
Call Number COAPS @ mfield @ Serial 534
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Author (up) Meyers, S.D.; O'Brien, J.J.
Title Pacific Ocean influences atmospheric carbon dioxide Type $loc['typeJournal Article']
Year 1995 Publication Eos, Transactions American Geophysical Union Abbreviated Journal Eos Trans. AGU
Volume 76 Issue 52 Pages 533-533
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ISSN 0096-3941 ISBN Medium
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Funding Approved $loc['no']
Call Number COAPS @ mfield @ Serial 716
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Author (up) Meyers, S.D.; O'Brien, J.J.; Thelin, E.
Title Reconstruction of Monthly SST in the Tropical Pacific Ocean during 1868-1993Using Adaptive Climate Basis Functions Type $loc['typeJournal Article']
Year 1999 Publication Monthly Weather Review Abbreviated Journal Mon. Wea. Rev.
Volume 127 Issue 7 Pages 1599-1612
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ISSN 0027-0644 ISBN Medium
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Funding Approved $loc['no']
Call Number COAPS @ mfield @ Serial 525
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Author (up) Meyers, SD; O'Brien, JJ
Title Historical reconstruction of the 1868-1993 ENSO cycle using EOF climate basis functions Type $loc['typeConference Article']
Year 1998 Publication 9th Conference on Interaction of the Sea and Atmosphere at the 78th American-Meteorogical-Society Annual Meeting Abbreviated Journal
Volume Issue Pages 203-233
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Area Expedition Conference 9th Conference on Interaction of the Sea and Atmosphere at the 78th American-Meteorogical-Society Annual Meeting
Funding Approved $loc['no']
Call Number COAPS @ mfield @ Serial 542
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Author (up) Michael, J-P
Title ENSO Fidelity in Two Coupled Models Type $loc['typeManuscript']
Year 2010 Publication Abbreviated Journal
Volume Issue Pages
Keywords General Circulation Model, El Nino, Coupled Model, Climate Model, ENSO
Abstract This study examines the fidelity of the ENSO simulation in two coupled model integrations and compares this with available global ocean data assimilation. The two models are CAM-HYCOM coupled model developed by the HYCOM Consortium and CCSM3.0. The difference between the two climate models is in the use of different ocean general circulation model (OGCM). The hybrid isopycnal-sigma-pressure coordinate ocean model Hybrid Coordinate Ocean Model (HYCOM) replaces the ocean model Parallel Ocean Program (POP) of the CCSM3.0. In both, the atmospheric general circulation model (AGCM) Community Atmosphere Model (CAM) is used. In this way the coupled systems are compared in a controlled setting so that the effects of the OGCM may be obtained. Henceforth the two models will be referred to as CAM-HYCOM and CAM-POP respectively. Comparison of 200 years of model output is used discarding the first 100 years to account for spin-up issues. Both models (CAM-HYCOM and CAM-POP) are compared to observational data for duration, intensity, and global impacts of ENSO. Based on the analysis of equatorial SST, thermocline depth, wind stress and precipitation, ENSO in the CAM-HYCOM model is weaker and farther east than observations while CAM-POP is zonal and extends west of the international dateline. CAM-POP also has an erroneous biennial cycle of the equatorial pacific SSTs. The analysis of the subsurface ocean advective terms highlights the problems of the model simulations.
Address Department of Earth Ocean and Atmospheric Science
Corporate Author Thesis $loc['Master's thesis']
Publisher Florida State University Place of Publication Tallahassee, FL Editor
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Call Number COAPS @ mfield @ Serial 576
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Author (up) Michael, J.-P.
Title On Initializing CGCMs for Seasonal Predictability of ENSO Type $loc['typeManuscript']
Year 2014 Publication Abbreviated Journal
Volume Issue Pages
Keywords ENSO; Seasonal Forecasting
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Address Department of Earth, Ocean and Atmospheric Science
Corporate Author Thesis $loc['Ph.D. thesis']
Publisher Florida State University Place of Publication Tallahassee, FL Editor
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Funding Approved $loc['no']
Call Number COAPS @ mfield @ Serial 166
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Author (up) Michael, J.-P.; Misra, V.; Chassignet, E. P.; Lu, J.
Title Comparison of HYCOM and POP models in the CCSM3.0 Framework. Part II: ENSO fidelity Type $loc['typeManuscript']
Year 2013 Publication Abbreviated Journal
Volume Issue Pages submitted
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Funding Approved $loc['no']
Call Number COAPS @ mfield @ Serial 220
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