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Integrated ocean modeling systems is helpful for specific regions: for example, the ESPreSSO model is used to study the Mid-Atlantic Bight region. Integrated ocean modeling systems often use data from buoys and weather stations for atmospheric forcing and boundary conditions. Two examples of integrated ocean modeling systems are:
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The atmospheric model may be run coupled to a simpler "slab ocean" rather than the full dynamic ocean. This is faster (and requires less memory) than the full model, but lacks dynamical feedbacks from the ocean, which are incorporated into the full coupled ocean–atmosphere models used to make projections of climate change out to 2100.
HyCOM model experiments are used to study the interactions between the ocean and atmosphere, including short-term and long-term processes. This modeling system has also been used to create forecasting tools. For example, HyCOM has been used to: Assimilate data and provide operational oceanographic forecasting for the United States Navy [6]
FESOM implements the idea of using meshes with variable resolution to simulate the circulation of the global ocean with regional focus. Because of the broad range of scales characterizing the ocean circulation, downscaling is commonly needed to describe processes on regional scales. FESOM allows global multi-resolution cross-scale simulations ...
Ocean general circulation models (OGCMs) are a particular kind of general circulation model to describe physical and thermodynamical processes in oceans. The oceanic general circulation is defined as the horizontal space scale and time scale larger than mesoscale (of order 100 km and 6 months).
NEMO is an ocean modeling platform composed of several models and numerical techniques for the use and processing of incoming and outgoing data. It has five main components: Ocean: NEMO-OPA (Océan Parallélisé) Sea ice: NEMO-LIM ("Louvain-la-neuve sea Ice Model") [1] Biogeochemistry: NEMO-TOP/PISCES ("Tracer in the Ocean Paradigm") [2]
Mars general circulation model; Mars regional atmospheric modeling system; MEMO model (wind-flow simulation) Met Office Hadley Centre; METRIC; MIT General Circulation Model; MM5 (weather model) Model for Prediction Across Scales; Model year (computer modeling) FESOM; Modular Ocean Model