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Publications Citing Ocean Heat Budget Data

List of peer-reviewed publications that cite using Ocean Heat Budget data.
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Modes of interannual variability of oceanic evaporation observed from GSSTF2 Sea Level Pressure, Air Temperature, Skin Temperature, Surface Temperature, Evaporation, Humidity, Total Precipitable Water, Water Vapor, Surface Winds, Turbulence, Wind Stress, Atmospheric Heating, Heat Flux, Radiative Flux, Conduction, Evaporation, Heat Flux, Sea Level Pressure, Sea Surface Temperature, Surface Winds, Turbulence, Wind Stress
Seaflux Sea Level Pressure, Air Temperature, Skin Temperature, Surface Temperature, Evaporation, Humidity, Total Precipitable Water, Water Vapor, Surface Winds, Turbulence, Wind Stress, Atmospheric Heating, Heat Flux, Radiative Flux, Conduction, Evaporation, Heat Flux, Sea Level Pressure, Sea Surface Temperature, Surface Winds, Turbulence, Wind Stress
Intercomparison of various surface latent heat flux fields Sea Level Pressure, Air Temperature, Skin Temperature, Surface Temperature, Evaporation, Humidity, Total Precipitable Water, Water Vapor, Surface Winds, Turbulence, Wind Stress, Atmospheric Heating, Heat Flux, Radiative Flux, Conduction, Evaporation, Heat Flux, Sea Level Pressure, Sea Surface Temperature, Surface Winds, Turbulence, Wind Stress
Satellite remote sensing of turbulent heat fluxes Sea Level Pressure, Air Temperature, Skin Temperature, Surface Temperature, Evaporation, Humidity, Total Precipitable Water, Water Vapor, Surface Winds, Turbulence, Wind Stress, Atmospheric Heating, Heat Flux, Radiative Flux, Conduction, Evaporation, Heat Flux, Sea Level Pressure, Sea Surface Temperature, Surface Winds, Turbulence, Wind Stress
Surface turbulent heat and momentum fluxes over global oceans based on the Goddard satellite retrievals, version 2 (GSSTF2) Sea Level Pressure, Air Temperature, Skin Temperature, Surface Temperature, Evaporation, Humidity, Total Precipitable Water, Water Vapor, Surface Winds, Turbulence, Wind Stress, Atmospheric Heating, Heat Flux, Radiative Flux, Conduction, Evaporation, Heat Flux, Sea Level Pressure, Sea Surface Temperature, Surface Winds, Turbulence, Wind Stress
Which bulk aerodynamic algorithms are least problematic in computing ocean surface turbulent fluxes? Sea Level Pressure, Air Temperature, Skin Temperature, Surface Temperature, Evaporation, Humidity, Total Precipitable Water, Water Vapor, Surface Winds, Turbulence, Wind Stress, Atmospheric Heating, Heat Flux, Radiative Flux, Conduction, Evaporation, Heat Flux, Sea Level Pressure, Sea Surface Temperature, Surface Winds, Turbulence, Wind Stress