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  • Oceanography.  (2)
  • Angewandte Mathematik  (1)
  • Bottom currents/bottom water  (1)
  • Climate  (1)
  • 1
    Online Resource
    Online Resource
    Dordrecht :Springer Netherlands,
    Keywords: Oceanography. ; Electronic books.
    Type of Medium: Online Resource
    Pages: 1 online resource (586 pages)
    Edition: 1st ed.
    ISBN: 9781402040283
    Language: English
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  • 2
    Online Resource
    Online Resource
    Dordrecht :Springer Netherlands,
    Keywords: Oceanography. ; Electronic books.
    Description / Table of Contents: Proceedings of the NATO Advanced Study Institute, Les Houches, France, January 20-30, 1998.
    Type of Medium: Online Resource
    Pages: 1 online resource (459 pages)
    Edition: 1st ed.
    ISBN: 9789401150965
    Series Statement: Nato Science Series C: Series ; v.516
    DDC: 551.4/6/0015/118
    Language: English
    Note: Intro -- TABLE OF CONTENTS -- PREFACE.
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  • 3
    Keywords: Konferenzschrift ; Meer ; Meereskunde ; Mathematisches Modell ; Angewandte Mathematik
    Description / Table of Contents: Aus dem Inhalt: Preface. 1) Oceanic general circulation models 2) Forcing the ocean 3) Modeling and parameterizing the ocean planetary boundary layer 4) Parameterization of the fair weather Ekman layer 5) The representation of bottom boundary layer processes in numerical ocean circulation models 6) Marginal sea overflows for climate simulations 7) Turbulent mixing in the ocean: Intensity, causes, and consequences 8) Parameterization of processes in deep convection regimes 9) Double-diffusive convection: its role in ocean mixing and parameterization schemes for large scale modeling 10) Interleaving at the equator: its parameterization and effect on the large scale dynamics 11) Eddy parameterization in large scale flow 12) Three-dimensional residual-mean theory 13) Statistical mechanics of potential vorticity for parameterizing mesoscale eddies . 14) Topographic stress: importance and parameterization 15) Large-eddy simulations of three-dimensional turbulent flows: geophysical applications 16) Parameter estimation in dynamical models 17) On the large-scale modeling of sea ice and sea ice-ocean interactions 18) Ocean modeling in isopycnic coordinates
    Type of Medium: Book
    Pages: VIII, 451 S , graph. Darst.
    ISBN: 0792352289
    Series Statement: NATO science series 516
    Language: English
    Note: Published in cooperation with NATO Scientific Affairs Division , Includes index
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  • 4
    Publication Date: 2022-05-25
    Description: Author Posting. © American Geophysical Union, 2007. This article is posted here by permission of American Geophysical Union for personal use, not for redistribution. The definitive version was published in Journal of Geophysical Research 112 (2007): C12005, doi:10.1029/2007JC004145.
    Description: We have evaluated a regional-scale simulation of the Mediterranean outflow by comparison with field data obtained in the 1988 Gulf of Cádiz Expedition. Our ocean model is based upon the Hybrid Coordinate Ocean Model (HYCOM) and includes the Richardson number–dependent entrainment parameterization of Xu et al. (2006). Given realistic topography and sufficient resolution, the model reproduces naturally the major, observed features of the Mediterranean outflow in the Gulf of Cádiz: the downstream evolution of temperature, salinity, and velocity profiles, the mean path and the spreading of the outflow plume, and most importantly, the localized, strong entrainment that has been observed to occur just west of the Strait of Gibraltar. As in all numerical solutions, there is some sensitivity to horizontal and vertical resolution. When the resolution is made coarser, the simulated currents are less vigorous and there is consequently less entrainment. Our Richardson number–dependent entrainment parameterization is therefore not recommended for direct application in coarse-resolution climate models. We have used the high-resolution regional model to investigate the response of the Mediterranean outflow to a change in the freshwater balance over the Mediterranean basin. The results are found in close agreement with the marginal sea boundary condition (MSBC): A more saline and dense Mediterranean deep water generates a significantly greater volume transport of the Mediterranean product water having only very slightly greater salinity.
    Description: National Science Foundation via grant OCE0336799 and the National Ocean Partnership Program (NOPP) via award N000140410676.
    Keywords: Mediterranean outflow ; Entrainment parameterization ; Climate
    Repository Name: Woods Hole Open Access Server
    Type: Article
    Format: application/pdf
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  • 5
    Publication Date: 2022-05-26
    Description: Author Posting. © American Meteorological Society, 2020. This article is posted here by permission of American Meteorological Society for personal use, not for redistribution. The definitive version was published in Journal of Physical Oceanography 50(4), (2020): 1045-1064, doi:10.1175/JPO-D-19-0137.1.
    Description: Three simulations of the circulation in the Gulf of Mexico (the “Gulf”) using different numerical general circulation models are compared with results of recent large-scale observational campaigns conducted throughout the deep (〉1500 m) Gulf. Analyses of these observations have provided new understanding of large-scale mean circulation features and variability throughout the deep Gulf. Important features include cyclonic flow along the continental slope, deep cyclonic circulation in the western Gulf, a counterrotating pair of cells under the Loop Current region, and a cyclonic cell to the south of this pair. These dominant circulation features are represented in each of the ocean model simulations, although with some obvious differences. A striking difference between all the models and the observations is that the simulated deep eddy kinetic energy under the Loop Current region is generally less than one-half of that computed from observations. A multidecadal integration of one of these numerical simulations is used to evaluate the uncertainty of estimates of velocity statistics in the deep Gulf computed from limited-length (4 years) observational or model records. This analysis shows that the main deep circulation features identified from the observational studies appear to be robust and are not substantially impacted by variability on time scales longer than the observational records. Differences in strengths and structures of the circulation features are identified, however, and quantified through standard error analysis of the statistical estimates using the model solutions.
    Description: This work was supported by the Gulf Research Program of the National Academy of Sciences under Awards 2000006422 and 2000009966. The content is solely the responsibility of the authors and does not necessarily represent the official views of the Gulf Research Program or the National Academy of Sciences. The authors acknowledge the GLORYS project for providing the ocean reanalysis data used in the ROMS simulation. GLORYS is jointly conducted by MERCATOR OCEAN, CORIOLIS, and CNRS/INSU. Installation, recovery, data acquisition, and processing of the CANEK group current-meter moorings were possible because of CICESE-PetróleosMexicanos Grant PEP-CICESE 428229851 and the dedicated work of the crew of the B/O Justo Sierra and scientists of the CANEK group. The authors thank Dr. Aljaz Maslo, CICESE, for assistance with analysis of model data. The Bureau of Ocean Energy Management (BOEM), U.S. Dept. of the Interior, provided funding for the Lagrangian Study of the Deep Circulation in the Gulf of Mexico and the Observations and Dynamics of the Loop Current study. HYCOM simulation data are available from the HYCOM data server (https://www.hycom.org/data/goml0pt04/expt-02pt2), MITgcm data are available from the ECCO data server (http://ecco.ucsd.edu/gom_results2.html), and the ROMS simulation data are available from GRIIDC (NA.x837.000:0001).
    Keywords: Ocean circulation ; Abyssal circulation ; Bottom currents/bottom water ; Eddies ; Ocean models
    Repository Name: Woods Hole Open Access Server
    Type: Article
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