Search results for "Computers in Earth Science"

showing 10 items of 323 documents

Synergetic exploitation of the Sentinel-2 missions for validating the Sentinel-3 ocean and land color instrument terrestrial chlorophyll index over a…

2019

Continuity to the Medium Resolution Imaging Spectrometer (MERIS) Terrestrial Chlorophyll Index (MTCI) will be provided by the Ocean and Land Color Instrument (OLCI) on-board the Sentinel-3 missions. To ensure its utility in a wide range of scientific and operational applications, validation efforts are required. In the past, direct validation has been constrained by the need for costly airborne hyperspectral data acquisitions, due to the lack of freely available high spatial resolution imagery incorporating appropriate spectral bands. The Multispectral Instrument (MSI) on-board the Sentinel-2 missions now offers a promising alternative. We explored the synergetic use of MSI data for validat…

Mediterranean climateAtmospheric Science010504 meteorology & atmospheric sciencesMultispectral image0211 other engineering and technologiesImaging spectrometerHyperspectral imaging02 engineering and technologySpectral bands01 natural sciencesVineyardChlorophyll indexEnvironmental scienceComputers in Earth SciencesImage resolution021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensing
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Monitoring water stress in Mediterranean semi-natural vegetation with satellite and meteorological data

2014

In arid and semi-arid environments, the characterization of the inter-annual variations of the light use efficiency ε due to water stress still relies mostly on meteorological data. Thus the GPP estimation based on procedures exclusively driven by remote sensing data has not found yet a widespread use. In this work, the potential to characterize the water stress in semi-natural vegetation of three spectral indices (NDWI, SIWSI and NDI7) – from MODIS broad spectral bands – has been analyzed in comparison to a meteorological factor (Cws). The study comprises 70 sites (belonging to 7 different ecosystems) uniformly distributed over Tuscany, and three eddy covariance tower sites. An operational…

Mediterranean climateGlobal and Planetary ChangeLight use efficiencyWater stressWater stressEddy covarianceSemi naturalSpectral bandsManagement Monitoring Policy and LawAridSemi-natural vegetationGeographySatellite dataSatellite dataComputers in Earth SciencesEarth-Surface ProcessesRemote sensing
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Daily GPP estimates in Mediterranean ecosystems by combining remote sensing and meteorological data

2015

The accurate representation of terrestrial CO2 uptake (GPP) using Monteith's approach requires a frequent and site-specific parameterization of the model inputs. In this work, an optimization of this approach has been carried out by adjusting the inputs (f(APAR), PAR and epsilon) for the study area, peninsular Spain, a typical Mediterranean region. The daily GPP images have been calculated for 2008 and 2011 with a 1-km spatial resolution and validated by comparison with in situ GPP estimates from the eddy covariance data (direct validation) and by inter-comparison with the MODIS GPP product. The direct validation has evidenced an excellent agreement with correlations up to 0.98 in 2008 and …

Mediterranean climateWater stressWater stressMediterranean ecosystemEddy covarianceVegetation phenologyAtomic and Molecular Physics and OpticsComputer Science ApplicationsMODISEnvironmental scienceGPPLight-use efficiencyComputers in Earth SciencesMSGEngineering (miscellaneous)Remote sensingISPRS Journal of Photogrammetry and Remote Sensing
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The SMOS mediterranean ecosystem L-band characterisation experiment (MELBEX) over natural shrubs

2010

10 páginas, 5 figuras, 7 tablas.

Mediterranean climate[SPI.OTHER]Engineering Sciences [physics]/Other010504 meteorology & atmospheric sciencesBiomeved/biology.organism_classification_rank.speciesMISSION SMOSMicrowave radiometry0211 other engineering and technologiesRock fractionSoil Science02 engineering and technologyL-MEB MODEL7. Clean energy01 natural sciencesShrubMICROWAVE RADIOMETRY14. Life underwaterComputers in Earth SciencesWater contentOptical depthComputingMilieux_MISCELLANEOUS021101 geological & geomatics engineering0105 earth and related environmental sciencesRemote sensingRadiometerved/biologyBiosphereGeologyVegetation15. Life on landL-bandL-MEB13. Climate actionSOIL MOISTUREEnvironmental scienceSoil moistureROCK FRACTION[SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processingSMOSL-BAND
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A Comparative Study of Land Surface Emissivity Retrieval from NOAA Data

2001

Abstract A comparative study has been carried out on the most recent algorithms for the estimation of land surface emissivity (ϵ) using Advanced Very High Resolution Radiometer (AVHRR) data. Three of the algorithms are based on the Temperature-Independent Spectral Indices (TISI) concept using atmospherically corrected channels 3, 4, and/or 5, namely: (1) TISI BL , (2) TS-RAM, and (3) Δ day. The fourth is a simplified method based on the estimation of ϵ using atmospherically corrected data in the visible and near-infrared channels, called Normalized Difference Vegetation Index (NDVI) Thresholds Method (NDVI THM ). This method integrates a wide spectral data set of bare soil reflectivity meas…

MeteorologyAdvanced very-high-resolution radiometerSoil ScienceGeologyVegetationNormalized Difference Vegetation IndexRoot mean squareData retrievalEmissivityRadiometryEnvironmental scienceComputers in Earth SciencesRoot-mean-square deviationRemote sensingRemote Sensing of Environment
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Land surface temperature retrieval from MSG1-SEVIRI data

2004

Abstract We have developed a physical-based split-window Land Surface Temperature (LST) algorithm for retrieving the surface temperature from SEVIRI/MSG1 (Spinning Enhanced Visible and Infrared Imager/Meteosat Second Generation1) data in two thermal infrared bands (IR 10.8 and IR 12.0). The proposed algorithm takes into account the SEVIRI angular dependence. The numerical values of the split-window coefficients have been obtained from a statistical regression method, using synthetic data. The look-up tables for atmospheric transmission, path radiance, and downward thermal irradiance are calculated with the MODTRAN3 code. The new LST algorithm has been tested with simulated SEVIRI/MSG1 data …

MeteorologyInfraredIrradianceSoil ScienceGeologySynthetic dataStandard deviationThermalRange (statistics)RadianceEnvironmental scienceComputers in Earth SciencesZenithRemote sensingRemote Sensing of Environment
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Accuracy assessment of land surface temperature retrievals from MSG2-SEVIRI data

2011

The accuracy of the Land Surface Temperature (LST) product generated operationally by the EUMETSAT Land Surface Analysis Satellite Applications Facility (LSA SAF) from the data registered by the Spinning Enhanced Visible and Infrared Imager (SEVIRI) on board the geostationary METEOSAT Second Generation 2 (MSG2, Meteosat 9) satellite was assessed on two test sites in Eastern Spain: a homogeneous, fully vegetated rice field and a high-plain, homogeneous area of shrubland. The LSA SAF LSTs were compared with ground LST measurements in the conventional temperature-based (T-based) method. We also validated the LSA SAF LST product by using an alternative radiance-based (R-based) method, with grou…

MeteorologySoil ScienceGeologyAtmospheric temperatureBrightness temperatureGeostationary orbitRadianceEmissivityRadiative transferEnvironmental scienceSatelliteComputers in Earth SciencesWater vaporRemote sensingRemote Sensing of Environment
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Automatic classification-based generation of thermal infrared land surface emissivity maps using AATSR data over Europe

2012

The remote sensing measurement of land surface temperature from satellites provides a monitoring of this magnitude on a continuous and regular basis, which is a critical factor in many research fields such as weather forecasting, detection of forest fires or climate change studies, for instance. The main problem of measuring temperature from space is the need to correct for the effects of the atmosphere and the surface emissivity. In this work an automatic procedure based on the Vegetation Cover Method, combined with the GLOBCOVER land surface type classification, is proposed. The algorithm combines this land cover classification with remote sensing information on the vegetation cover fract…

MeteorologyWeather forecastingSoil ScienceClimate changeMagnitude (mathematics)Land surface emissivityVegetation coverGeologyAATSRAATSRLand covercomputer.software_genreTemperature measurementAtmosphereGlobcoverEmissivityEnvironmental scienceComputers in Earth SciencesLENGUAJES Y SISTEMAS INFORMATICOScomputerLand surface temperatureRemote sensingRemote Sensing of Environment
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Improving the timeliness of winter wheat production forecast in the United States of America, Ukraine and China using MODIS data and NCAR Growing Deg…

2015

Abstract Wheat is the most important cereal crop traded on international markets and winter wheat constitutes approximately 80% of global wheat production. Thus, accurate and timely production forecasts are critical for making informed agricultural policies and investments, as well as increasing market efficiency and stability. Becker-Reshef et al. (2010) developed an empirical generalized model for forecasting winter wheat production. Their approach combined BRDF-corrected daily surface reflectance from Moderate resolution Imaging Spectroradiometer (MODIS) Climate Modeling Grid (CMG) with detailed official crop statistics and crop type masks. It is based on the relationship between the Nor…

Meteorologybusiness.industryYield (finance)Soil ScienceGrowing seasonGeologyGrowing degree-dayNormalized Difference Vegetation IndexCropAgricultureClimatologyEnvironmental scienceClimate modelModerate-resolution imaging spectroradiometerComputers in Earth SciencesbusinessRemote Sensing of Environment
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Ratiocalc: Software for processing data from multicomponent volcanic gas analyzers

2015

Portable gas analyzers have become a powerful tool for the real-time monitoring of volcanic gas composition over the last decade. Gas analyzers make it possible to retrieve in real-time the chemical composition of a fumarole system or a plume in an open-conduit volcano via periodic field-deployments or at permanent stations. The core of a multicomponent volcanic gas analyzer (MultiGAS) consists of spectroscopic and electrochemical sensors that are used to determine the concentrations of the most abundant volcanic gases (H2O, CO2, SO2, H2S, H2, CO and HCl) in a diluted plume and their mutual molar ratios. Processing such data is often difficult due to the high sensitivity of the sensors to e…

MineralogyInformation SystemMultiGASGas sensorsGas analyzerVolcanic GasesVolcanic gaseventGas compositionComputers in Earth SciencesGas analyzer; Gas sensors; MultiGAS; Ratiocalc; Volcanic gas; Information Systems; Computers in Earth SciencesChemical compositionevent.disaster_typegeographygeography.geographical_feature_categoryVolcanic gaProcess (computing)RatiocalcFumaroleGas analyzerPlumeVolcano13. Climate actionEnvironmental scienceGas sensorInformation SystemsComputers & Geosciences
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