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  2. Coastal ocean dynamics applications radar - Wikipedia

    en.wikipedia.org/wiki/Coastal_ocean_dynamics...

    Coastal ocean dynamics applications radar (CODAR) is a type of portable, land-based, high frequency (HF) radar developed between 1973 and 1983 at NOAA's Wave Propagation Laboratory in Boulder, Colorado.

  3. Wave radar - Wikipedia

    en.wikipedia.org/wiki/Wave_radar

    Two radar installations are normally required, looking at the same patch of the sea surface from different angles. [1] The latest generation of shore-based ocean radar can reach more than 200 km for ocean current mapping and more than 100 km for wave measurements Helzel WERA. For all ocean radars, the accuracy in range is excellent.

  4. Ocean dynamics - Wikipedia

    en.wikipedia.org/wiki/Ocean_dynamics

    Ocean dynamics define and describe the flow of water within the oceans. Ocean temperature and motion fields can be separated into three distinct layers: mixed (surface) layer, upper ocean (above the thermocline), and deep ocean. Ocean dynamics has traditionally been investigated by sampling from instruments in situ. [1]

  5. Surface Water and Ocean Topography - Wikipedia

    en.wikipedia.org/wiki/Surface_Water_and_Ocean...

    Coastal ocean dynamics. Coastal ocean dynamics are important for many societal applications. They have smaller spatial and temporal scales than the dynamics of the open ocean and require finer-scale monitoring. SWOT will provide global, high-resolution observations in coastal regions for observing coastal currents and storm surges.

  6. Category:Radar - Wikipedia

    en.wikipedia.org/wiki/Category:Radar

    Centimetre wave radar; Clutter folding; Coastal ocean dynamics applications radar; Compact surveillance radar; Conical scanning; Constant altitude plan position indicator; Continuous-wave radar; Corner reflector; Cosecant squared antenna

  7. Wind wave model - Wikipedia

    en.wikipedia.org/wiki/Wind_wave_model

    In fluid dynamics, wind wave modeling describes the effort to depict the sea state and predict the evolution of the energy of wind waves using numerical techniques.These simulations consider atmospheric wind forcing, nonlinear wave interactions, and frictional dissipation, and they output statistics describing wave heights, periods, and propagation directions for regional seas or global oceans.

  8. Marine weather forecasting - Wikipedia

    en.wikipedia.org/wiki/Marine_weather_forecasting

    The wind is the driving force of weather at sea, as wind generates local wind waves, long ocean swells, and its flow around the subtropical ridge helps maintain warm water currents such as the Gulf Stream. The importance of weather over the ocean during World War II led to delayed or secret weather reports, in order to maintain a competitive ...

  9. Kelvin wave - Wikipedia

    en.wikipedia.org/wiki/Kelvin_wave

    A Kelvin wave is a wave in the ocean, a large lake or the atmosphere that balances the Earth's Coriolis force against a topographic boundary such as a coastline, or a waveguide such as the equator. A feature of a Kelvin wave is that it is non-dispersive , i.e., the phase speed of the wave crests is equal to the group speed of the wave energy ...