Skip to main content

Publications Citing SSMIS Data

Browse a list of academic papers that cite data provided by NASA’s Special Sensor Microwave Imager/Sounder (SSMIS).

Filters
Title Year Sort ascending Topic Dataset
Visualising cryospheric images in a virtual environment: present Sea Ice Concentration, Snow Cover
GLOBAL SATELLITE DATASETS: DATA AVAILABILITY FOR SCIENTISTS AND OPERATIONAL USERS 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
Assessing a satellite-era perspective of the global water cycle 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
Decadal variations of global energy and ocean heat budget and meridional energy transports inferred from recent global data sets 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
Roles of the Indian Ocean in the Australian summer monsoonENSO relationship 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
Daily Precipitation over Southern Africa: A New Resource for Climate Studies Microwave Imagery, Brightness Temperature, Rain
Comparison of five satellite-derived latent heat flux products to moored buoy data 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
Local airsea relationship in observations and model simulations 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
Multi-century simulations with the coupled GISSHYCOM climate model: Control experiments 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 heat fluxes over global oceans exclusively from satellite observations 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
A comparison of latent heat fluxes over global oceans for four flux products 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
A new method for estimation of the sensible heat flux under unstable conditions using satellite vector winds 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
Improving latent and sensible heat flux estimates for the Atlantic Ocean (198899) by a synthesis approach 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
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
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
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

Get Help

QUESTIONS & SUPPORT

Have a question?

Get help with NASA Earth science data, datasets, tools, services, and metadata on the Earthdata Forum. Experienced staff in the data user community review and answer questions.

Get help on Earthdata Forum
Earthdata
Forum