0000000000594738

AUTHOR

Manuel Arbelo

showing 4 related works from this author

Determination of sea surface temperature using combined TOVS and AVHRR data. Application to the Canary Islands area, Spain

1996

Abstract The determination of sea surface temperature from satellite is performed by means of multi-channel algorithms with channels 4 and 5 of AVHRRNOAA or using radiative transfer models and radiosounding profiles of air temperature and humidity. In this work, an alternative to the current algorithms has been established. A new method combining the information supplied by sensors of TOVS and AVHRR systems onboard NOAA satellites is proposed. It is based on the split-window technique, the coefficients A and B being determined as a function of the water vapour content, which is calculated using the TOVS sensors. The T4 and T5 temperatures are supplied by the AVHRR system. Then, combining bo…

Sea surface temperatureRadiometerMeteorologyBrightness temperatureRadiative transferGeneral Earth and Planetary SciencesEnvironmental scienceSatelliteAtmospheric temperatureWater vaporRemote sensingMultispectral pattern recognition
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Examining the Effects of Dust Aerosols on Satellite Sea Surface Temperatures in the Mediterranean Sea Using the Medspiration Matchup Database

2011

Abstract Dust aerosol plumes from the Sahara cover the Mediterranean Sea regularly during the summer months (June–August) and occasionally during other seasons. Dust can absorb infrared longwave radiation, thus causing a drop in sea surface temperature (SST) retrievals from satellite. To quantify the magnitude of this absorption and to understand the sources of the biases that might be introduced when trying to validate SST algorithms with in situ bulk temperatures, the effects of the dust absorption are studied using the Medspiration Match-up Database. This database provides in situ and satellite SSTs derived from the Advanced Very High Resolution Radiometer (AVHRR) and the Advanced Along-…

Atmospheric ScienceRadiometerDatabaseAdvanced very-high-resolution radiometerOcean EngineeringAATSRcomputer.software_genreAtmospheric sciencesAerosolSea surface temperatureMediterranean seaEnvironmental scienceSatelliteAbsorption (electromagnetic radiation)computerJournal of Atmospheric and Oceanic Technology
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Evaluation of Surface Temperature and Emissivity Derived from ASTER Data: A Case Study Using Ground-Based Measurements at a Volcanic Site

2010

Abstract The land surface temperature (LST) and emissivity (LSE) derived from Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) data were evaluated in a low spectral contrast volcanic site at an altitude of 2000 m on the island of Tenerife, Spain. The test site is almost flat, thermally homogeneous, and without vegetation cover or variation in its surface composition. ASTER data correspond to six scenes, under both day- and nighttime conditions during 2008. This case study analyzes the impacts of the sources of inaccuracies using the temperature–emissivity separation (TES) algorithm. Uncertainties associated with inaccurate atmospheric correction were minimized by means…

Atmospheric Sciencegeographygeography.geographical_feature_categoryTest siteLand surface temperatureAtmospheric correctionOcean EngineeringAdvanced Spaceborne Thermal Emission and Reflection RadiometerVolcanoHomogeneousEmissivityEnvironmental scienceRadiometric datingRemote sensingJournal of Atmospheric and Oceanic Technology
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The 2016 CEOS Infrared Radiometer Comparison: Part II: Laboratory Comparison of Radiation Thermometers

2019

AbstractTo ensure confidence, measurements carried out by imaging radiometers mounted on satellites require robust validation using “fiducial quality” measurements of the same in situ parameter. For surface temperature measurements this is optimally carried out by radiometers measuring radiation emitted in the infrared region of the spectrum, collocated to that of a satellite overpass. For ocean surface temperatures the radiometers are usually on board ships to sample large areas but for land and ice they are typically deployed at defined geographical sites. It is of course critical that the validation measurements and associated instrumentation are internationally consistent and traceable …

[PHYS]Physics [physics]Atmospheric ScienceRadiometer010504 meteorology & atmospheric sciencesInfraredSea surface temperature0211 other engineering and technologiesOcean Engineering02 engineering and technologyRadiation01 natural sciencesSea surface temperature[SPI]Engineering Sciences [physics]Infrared radiometerEnvironmental scienceFiducial markerInfrared radiation021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensing
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