Geophysical Research Letters · 2022 · 23 citations · 14 references
Observational NetworksEngineeringAssimilation StrategiesSpectrum EstimationClimate ModelingOceanographySofar Spotter NetworkGeophysical Signal ProcessingEarth ScienceData AssimilationOcean AcousticsMarine MeteorologyNumerical Weather PredictionSpectral Wave DataClimate ForecastingOceanic SystemsMeteorologySynthetic Aperture RadarGeographyInverse ProblemsForecastingCoastal MeteorologySignal ProcessingClimate DynamicsRadarArray ProcessingSitu Open‐ocean WavePhysical OceanographyOperational AssimilationSpectral AnalysisRemote Sensing
Abstract Historically, the sparseness of in situ open‐ocean wave and weather observations has severely limited the forecast skill of weather over the ocean with major social and economic consequences for coastal communities and maritime industries. Ocean surface waves, specifically, are important for the interaction between atmosphere and ocean, and thus key in modeling weather and climate processes. Here, we investigate the improvements achievable from a large distributed sensor network combined with advances in assimilation strategies. Wave spectra from a global network of over 600 Sofar Spotter buoys are assimilated into an operational global wave forecast via optimal interpolation to update model spectra to best fit observations. We demonstrate end‐to‐end improvements in forecast skill of significant wave height of 38%, and up to 45% for other bulk parameters. This shows distributed observations of the air‐sea interface, with advances in assimilation strategies, can reduce uncertainty in forecasts to dramatically improve earth system modeling.
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User manual and system documentation of WAVEWATCH III R version 4.18
Hendrik L. Tolman, Mickaël Accensi, Henrique Alves et al. · 2014 · 799 citations