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|a 99060406
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|a 0124340687
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|a (OCoLC)44848814
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|a ES0
|c ES0
|d OrLoB-B
|d OCoLC
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|a CGUA
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|a GC10.4.M36
|b K36 1999
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100 |
1 |
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|a Kantha, L. H.
|0 http://id.loc.gov/authorities/names/n86054667
|1 http://viaf.org/viaf/165838523
|
245 |
1 |
0 |
|a Numerical models of oceans and oceanic processes /
|c Lakshmi H. Kantha and Carol Anne Clayson.
|
260 |
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|a San Diego, Calif. ;
|a London :
|b Academic,
|c 2000.
|
300 |
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|a xxxvi, 940 p., [2] leaves of plates :
|b col. ill., charts, maps ;
|c 24cm.
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|a text
|b txt
|2 rdacontent
|0 http://id.loc.gov/vocabulary/contentTypes/txt
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|a unmediated
|b n
|2 rdamedia
|0 http://id.loc.gov/vocabulary/mediaTypes/n
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|a volume
|b nc
|2 rdacarrier
|0 http://id.loc.gov/vocabulary/carriers/nc
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|a International geophysics series
|v v.66
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505 |
0 |
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|g Ch. 1.
|t Introduction to Ocean Dynamics.
|g 1.1.
|t Types, Advantages, and Limitations of Ocean Models.
|g 1.2.
|t Recent Examples.
|g 1.3.
|t Governing Equations.
|g 1.4.
|t Vorticity Conservation.
|g 1.5.
|t Nondimensional Numbers and Scales of Motion.
|g 1.6.
|t Geostrophic Flow and Thermal Wind.
|g 1.7.
|t Inertial Motions.
|g 1.8.
|t Ekman Layers.
|g 1.9.
|t Sverdrup Transport.
|g 1.10.
|t Western Boundary Intensification (Stommel Solution).
|g 1.11.
|t Gyre Scale Circulation (Munk Solution).
|g 1.12.
|t Barotropic Currents over Topography.
|g 1.13.
|t Baroclinic Transport over Topography.
|g 1.14.
|t Coastal Upwelling and Fronts.
|g 1.15.
|t Mesoscale Eddies and Variability.
|g 1.16.
|t Thermohaline Circulation and Box (Reservoir) Models.
|g 1.17.
|t Numerical Models --
|g Ch. 2.
|t Introduction to Numerical Solutions.
|g 2.1.
|t Introduction.
|g 2.2.
|t Ordinary Differential Equations.
|g 2.3.
|t Partial Differential Equations.
|g 2.4.
|t Elliptic Equations and Steady-State Problems.
|g 2.5.
|t Time Dependent Problems.
|g 2.6.
|t Finite-Difference (Grid Point) Methods.
|g 2.7.
|t Spectral (Spectral Transform) Methods.
|g 2.8.
|t Finite-Element Methods.
|g 2.9.
|t Parameterization of Subgrid Scale Processes.
|g 2.10.
|t Lateral Open Boundary Conditions.
|g 2.11.
|t Computational Issues.
|g 2.12.
|t Examples --
|g Ch. 3.
|t Equatorial Dynamics and Reduced Gravity Models Solutions.
|g 3.1.
|t Oceanic Dynamical Response to Forcing.
|g 3.2.
|t Governing Equations.
|g 3.3.
|t Equatorial Waves.
|g 3.4.
|t Equatorial Currents.
|g 3.5.
|t Reduced Gravity Model of Equatorial Processes --
|g Ch. 4.
|t Midlatitude Dynamics and Quasi-Geostrophic Models.
|g 4.1.
|t Linear Motions.
|g 4.2.
|t Continuous Stratification.
|g 4.3.
|t Geostrophic Adjustment and Instabilities.
|g 4.4.
|t Spinup.
|g 4.5.
|t Quasi-Geostrophic Models --
|g Ch. 5.
|t High-Latitude Dynamics and Sea-Ice Models.
|g 5.1.
|t Salient Features of Ice Cover.
|g 5.2.
|t Momentum Equations for Sea Ice.
|g 5.3.
|t Constitutive Law for Sea Ice (Ice Rheology).
|g 5.4.
|t Continuity Equations for Sea Ice.
|g 5.5.
|t Response of Sea Ice to Storm Passage.
|g 5.6.
|t Numerics --
|g Ch. 6.
|t Tides and Tidal Modeling.
|g 6.1.
|t Description of Tides.
|g 6.2.
|t Formulation: Tidal Potential.
|g 6.3.
|t Body, Load, Atmospheric, and Radiational Tides.
|g 6.4.
|t Dynamical Theory of Tides: Laplace Tidal Equations.
|g 6.5.
|t Equilibrium Theory of Tides.
|g 6.6.
|t Tidal Analysis: Orthotides.
|g 6.7.
|t Tidal Currents.
|g 6.8.
|t Global Tidal Models.
|g 6.9.
|t Regional Tidal Models.
|g 6.10.
|t Geophysical Implications.
|g 6.11.
|t Changes in Earth's Rotation.
|g 6.12.
|t Baroclinic (Internal) Tides.
|g 6.13.
|t Long-Period Tides.
|g 6.14.
|t Shallow Water Tides and Residual Currents.
|g 6.15.
|t Summary --
|g Ch. 7.
|t Coastal Dynamics and Barotropic Models.
|g 7.1.
|t Wind- and Buoyancy-Driven Currents.
|g 7.2.
|t Tidal Motions.
|g 7.3.
|t Continental Shelf Waves.
|g 7.4.
|t Modeling Shelf Circulation.
|g 7.5.
|t Barotropic Models --
|g Ch. 8.
|t Data and Data Processing.
|g 8.1.
|t In Situ Observational Data.
|g 8.2.
|t Remotely Sensed Data.
|g 8.3.
|t NWP Products.
|g 8.4.
|t Preprocessing of Observational Data and Postprocessing of Model Output --
|g Ch. 9.
|t Sigma-Coordinate Regional and Coastal Models.
|g 9.1.
|t Introduction.
|g 9.2.
|t Governing Equations.
|g 9.3.
|t Vertical Mixing.
|g 9.4.
|t Boundary Conditions.
|g 9.5.
|t Mode Splitting.
|g 9.6.
|t Numerics.
|g 9.7.
|t Numerical Problems.
|g 9.8.
|t Applications.
|g 9.9.
|t Code Structure --
|g Ch. 10.
|t Multilevel Basin Scale and Global Models.
|g 10.1.
|t Introduction.
|g 10.2.
|t Governing Equations.
|g 10.3.
|t Isopycnal Diffusion.
|g 10.4.
|t Architecture and Other Model Features.
|g 10.5.
|t Applications.
|g 10.6.
|t Hybrid s-Coordinate Models.
|g 10.7.
|t Regional z-Level Models --
|g Ch. 11.
|t Layered and Isopycnal Models.
|g 11.1.
|t Layered Models.
|g 11.2.
|t Isopycnal Models --
|g Ch. 12.
|t Ice-Ocean Coupled Models.
|g 12.1.
|t Sea-Ice Models.
|g 12.1.
|t Coupled Ice-Ocean Models --
|g Ch. 13.
|t Ocean-Atmosphere Coupled Models.
|g 13.1.
|t Coupling between the Ocean and the Atmosphere.
|g 13.2.
|t Coupled Ocean-Atmosphere General Circulation Models.
|g 13.3.
|t Regional Coupled Ocean-Atmosphere Models --
|g Ch. 14.
|t Data Assimilation and Nowcasts/ Forecasts.
|g 14.1.
|t Introduction.
|g 14.2.
|t Direct Insertion.
|g 14.3.
|t Nudging.
|g 14.4.
|t Statistical Assimilation Schemes.
|g 14.5.
|t Variational Methods.
|g 14.6.
|t Predictability of Nonlinear Systems - Low Order Paradigms.
|g 14.7.
|t Nowcasts/Forecasts in the Gulf of Mexico.
|g App. A.
|t Equations of State --
|g App. B.
|t Wavelet Transforms --
|g App. C.
|t Empirical Orthogonal Functions and Empirical Normal Modes --
|g App. D.
|t Units and Constants.
|
650 |
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|a Oceanography
|x Mathematical models.
|0 http://id.loc.gov/authorities/subjects/sh2010104200
|
650 |
|
7 |
|a Oceanography
|x Mathematical models.
|2 fast
|0 http://id.worldcat.org/fast/fst01043694
|
700 |
1 |
|
|a Clayson, Carol Anne.
|0 http://id.loc.gov/authorities/names/no00072456
|1 http://viaf.org/viaf/167019670
|
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|a ToCBNA
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|a HeVa
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|t Library of Congress classification
|a GC10.4.M36K36 1999
|l JRL
|c JRL-Gen
|i 6376736
|
927 |
|
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|t Library of Congress classification
|a GC10.4.M36K36 1999
|l JRL
|c JRL-Gen
|b 56207402
|i 6890669
|