Reviews of Geophysics · 1980 · 598 citations · 61 references
Marine GeologyTidal DynamicsEngineeringPhysical OceanographyGeographyEmpirical TideCoastal ModelingOcean PhysicTidal ZoneOceanographyTidal EnergyWave AnalysisCoastal HydrodynamicsGlobal Ocean TidesEarth ScienceOcean TidesClimate DynamicsGlobal Tide Model
Ocean tide science has evolved over three centuries, culminating in a global model that predicts instantaneous total tide anywhere in the open oceans with sub‑10‑cm accuracy. The article discusses potential further improvements, particularly in nearshore, Arctic, and Antarctic regions where data are sparse. The review surveys empirical, mathematical, and empirical‑mathematical approaches, emphasizing recent computational techniques such as hydrodynamic dissipation modeling, secondary tide‑generating forces, finite‑difference schemes, boundary and bathymetry modeling, and hydrodynamic interpolation, and cites computer experiments that assess their effects.
This review article highlights the three‐century development of our scientific understanding of ocean tides, culminating through myths, paradoxes, and controversies in a global tide model that now permits the prediction of the instantaneous total tide anywhere in the open oceans with an accuracy of better than 10 cm. All major aspects of tidal research, including empirical, mathematical, and empirical‐mathematical methods, are considered. Particular attention is drawn to the most recently developed computerized techniques comprehending hydrodynamical dissipation and secondary tide‐generating forces, finite‐differencing schemes, geometric boundary and bathymetry modeling, and hydrodynamical interpolation of properly selected empirical tide data. Numerous computer experiments are mentioned that were carried out by various researchers in order to evaluate the magnitudes of the featured effects. Further possible improvements are mentioned, especially in nearshore areas, in the Arctic Sea, and near Antarctica, where empirical tide and bathymetry data are either rough or marginal.
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GENERAL CIRCULATION EXPERIMENTS WITH THE PRIMITIVE EQUATIONS
Joseph Smagorinsky · Monthly Weather Review · 1963 · 13.6K citations
Deformation of the Earth by surface loads
William E. Farrell · Reviews of Geophysics · 1972 · 1.7K citations
Geotechnical Engineering, Crustal Deformation, Engineering +14
ON THE WIND-DRIVEN OCEAN CIRCULATION
Walter Munk · Journal of Meteorology · 1950 · 941 citations · Full text