Ocean Science

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Ocean Science

Ocean Science

@EGU_OS

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Katılım Temmuz 2014
20 Takip Edilen167 Takipçiler
Ocean Science
Ocean Science@EGU_OS·
New #EGUhighlights: Blending 2D topography images from the Surface Water and Ocean Topography (SWOT) mission into the altimeter constellation with the Level-3 multi-mission Data Unification and Altimeter Combination System (DUACS) doi.org/10.5194/os-21-…
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Ocean Science
Ocean Science@EGU_OS·
New research article: Dynamics of salt intrusion in complex estuarine networks: an idealised model applied to the Rhine–Meuse Delta doi.org/10.5194/os-21-…
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Ocean Science
Ocean Science@EGU_OS·
New research article: Circulation of Baffin Bay and Hudson Bay waters on the Labrador shelf and into the subpolar North Atlantic doi.org/10.5194/os-21-…
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Ocean Science
Ocean Science@EGU_OS·
New research article: Non-negligible impact of Stokes drift and wave-driven Eulerian currents on simulated surface particle dispersal in the Mediterranean Sea doi.org/10.5194/os-21-…
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Ocean Science
Ocean Science@EGU_OS·
New research article: Estimating ocean currents from the joint reconstruction of absolute dynamic topography and sea surface temperature through deep learning algorithms doi.org/10.5194/os-21-…
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Ocean Science
Ocean Science@EGU_OS·
New research article: Understanding uncertainties in the satellite altimeter measurement of coastal sea level: insights from a round-robin analysis doi.org/10.5194/os-21-…
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Ocean Science
Ocean Science@EGU_OS·
Discussion open for comments on @EgUsphere: Regional modeling of internal-tide dynamics around New Caledonia. Part 2: Tidal incoherence and implications for sea surface height observability doi.org/10.5194/egusph…
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Ocean Science
Ocean Science@EGU_OS·
New research article: Convolutional neural networks for sea surface data assimilation in operational ocean models: test case in the Gulf of Mexico doi.org/10.5194/os-21-…
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Ocean Science
Ocean Science@EGU_OS·
Discussion open for comments on @EgUsphere: Process-based modelling of nonharmonic internal tides using adjoint, statistical, and stochastic approaches. Part II: adjoint frequency response analysis, stochastic models, and synthesis doi.org/10.5194/egusph…
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