Search results for "Codes"

showing 10 items of 201 documents

2018

Abstract. Detailed measurements of radiation, atmospheric and aerosol properties were carried out in summer 2013 during the Aerosol Direct Radiative Impact on the regional climate in the MEDiterranean region (ADRIMED) campaign in the framework of the Chemistry-Aerosol Mediterranean Experiment (ChArMEx) experiment. This study focusses on the characterization of infrared (IR) optical properties and direct radiative effects of mineral dust, based on three vertical profiles of atmospheric and aerosol properties and IR broadband and narrowband radiation from airborne measurements, made in conjunction with radiosonde and ground-based observations at Lampedusa, in the central Mediterranean. Satell…

Atmospheric Science010504 meteorology & atmospheric sciencesAstrophysics::Cosmology and Extragalactic AstrophysicsRadiative forcingMineral dustAtmospheric sciences01 natural sciencesAerosolAERONET010309 opticsAtmospheric radiative transfer codes13. Climate actionBrightness temperature0103 physical sciencesRadiative transferAstrophysics::Solar and Stellar AstrophysicsEnvironmental scienceAstrophysics::Earth and Planetary AstrophysicsPhysics::Atmospheric and Oceanic PhysicsAstrophysics::Galaxy AstrophysicsZenith0105 earth and related environmental sciencesRemote sensingAtmospheric Chemistry and Physics
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Computation of anthropogenic sulphate aerosol forcing using radiative perturbation theory

1994

The radiative forcing of the climate by anthropogenic aerosols has been a matter of some concern for many years now, especially in the northern hemisphere. Recently in these pages, Charlson et al. attempted to quantify this forcing. However, that calculation involved relatively crude optical and radiative transfer models. In this paper, we use a far more detailed sulphate optical model, and employ radiative perturbation theory (a technique ideally suited to answering questions of this sort) to repeat this radiation calculation. We obtain results which are similar to Charlson et al., provided that proper allowance is made for the effects of humidity. DOI: 10.1034/j.1600-0889.1994.00003.x

Atmospheric Science010504 meteorology & atmospheric sciencesComputationNorthern HemisphereForcing (mathematics)010501 environmental sciencesRadiative forcingAtmospheric sciences01 natural sciencesAerosolAtmospheric radiative transfer codesClimatologyRadiative transferEnvironmental sciencePerturbation theory0105 earth and related environmental sciencesTellus B
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A case study of the radiative effect of aerosols over Europe: EUCAARI-LONGREX

2016

Abstract. The radiative effect of anthropogenic aerosols over Europe during the 2008 European Integrated Project on Aerosol Cloud Climate and Air Quality Interactions Long Range Experiment (EUCAARI-LONGREX) campaign has been calculated using measurements collected by the Facility for Airborne Atmospheric Measurements (FAAM) BAe-146 aircraft and radiative transfer modelling. The aircraft sampled anthropogenically perturbed air masses across north-western Europe under anticyclonic conditions with aerosol optical depths ranging from 0.047 to 0.357. For one specially designed “radiative closure” flight, simulated irradiances have been compared to radiation measurements for a case of aged Europe…

Atmospheric Science010504 meteorology & atmospheric sciencesMeteorology010401 analytical chemistryAlbedoRadiationAtmospheric sciences01 natural scienceslcsh:QC1-9990104 chemical sciencesAerosollcsh:ChemistryAtmospheric radiative transfer codeslcsh:QD1-999AnticycloneRadiative transferEnvironmental scienceSpectral resolutionAir quality indexlcsh:Physics0105 earth and related environmental sciencesAtmospheric Chemistry and Physics
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Simulation of Future Geostationary Ocean Color Images

2012

The objective of this work is to simulate global images that would be provided by a theoretical ocean color sensor on a geostationary orbit at longitude 0, in order to assess the range of radiance value data reaching the sensor throughout the day for 20 spectral bands similar to those of the Ocean and Land Color Imager (OLCI). The secondary objective is to assess the illumination and viewing geometries that result in sunglint. For this purpose, we combined a radiative transfer model for ocean waters (Hydrolight) and a radiative transfer model for atmosphere (MODTRAN) to construct the simulated radiance images at the sea surface and at the Top-Of-Atmosphere (TOA). Bio-optical data from GlobC…

Atmospheric Science010504 meteorology & atmospheric sciencesMeteorologyMODTRANSolar zenith angleSunglint01 natural sciences010309 opticsAtmospheric radiative transfer codes13. Climate actionOcean color0103 physical sciencesGeostationary orbitRadianceEnvironmental scienceComputers in Earth Sciences[SPI.SIGNAL]Engineering Sciences [physics]/Signal and Image processingComputingMilieux_MISCELLANEOUSZenith0105 earth and related environmental sciencesRemote sensingIEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing
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The June 2007 Saharan dust event in the central Mediterranean: Observations and radiative effects in marine, urban, and sub-urban environments

2011

Abstract A desert dust episode in June 2007 and its radiative effects on the energy budget have been studied at three Italian stations (Rome, Lecce and Lampedusa) with the aim of investigating the interactions with different conditions and aerosol types over the Mediterranean. The three sites are representative for urban (Rome), sub-urban/rural (Lecce), and marine (Lampedusa) environment, respectively in the central Mediterranean region. Measured ground-based column-averaged aerosol optical properties and aerosol extinction profiles were used to initialize the MODTRAN4 radiative transfer model. The radiative transfer model was used to estimate the shortwave aerosol radiative forcing ( ARF )…

Atmospheric ScienceAngstrom exponentAerosol Optical PropertiePlanetary boundary layerRadiative forcingMineral dustAtmospheric sciencesAerosol optical properties; Vertical distribution; Radiative forcing; Desert dust eventAERONETAerosolAtmospheric radiative transfer codesRadiative transferEnvironmental sciencedesert dust event; aerosol optical properties; radiative forcing; vertical distributionVertical DistributionRadiative ForcingGeneral Environmental Science
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Consistency between GRUAN sondes, LBLRTM and IASI

2017

Abstract. Radiosonde soundings from the GCOS Reference Upper-Air Network (GRUAN) data record are shown to be consistent with Infrared Atmospheric Sounding Instrument (IASI)-measured radiances via LBLRTM (Line-By-Line Radiative Transfer Model) in the part of the spectrum that is mostly affected by water vapour absorption in the upper troposphere (from 700 hPa up). This result is key for climate data records, since GRUAN, IASI and LBLRTM constitute reference measurements or a reference radiative transfer model in each of their fields. This is specially the case for night-time radiosonde measurements. Although the sample size is small (16 cases), daytime GRUAN radiosonde measurements seem to h…

Atmospheric ScienceDaytime010504 meteorology & atmospheric sciencesMeteorology0211 other engineering and technologies02 engineering and technologyAtmospheric sciencesCollocation (remote sensing)01 natural scienceslaw.inventionTroposphereAtmospheric radiative transfer codeslawConsistency (statistics)Relative humiditylcsh:TA170-171Radiosondeos021101 geological & geomatics engineering0105 earth and related environmental sciencesAtmospheric soundinglcsh:TA715-787lcsh:Earthwork. FoundationsTransferencia radiativa en la atmosferalcsh:Environmental engineeringPerfil de humedadRadiosondeEnvironmental sciencePerfil de temperaturaSondeadores infrarrojos hiperespectrales
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AATSR land surface temperature product algorithm verification over a WATERMED site

2007

Abstract A new operational Land Surface Temperature (LST) product generated from data acquired by the Advanced Along-Track Scanning Radiometer (AATSR) provides the opportunity to measure LST on a global scale with a spatial resolution of 1 km 2 . The target accuracy of the product, which utilises nadir data from the AATSR thermal channels at 11 and 12 μm, is 2.5 K for daytime retrievals and 1.0 K at night. We present the results of an experiment where the performance of the algorithm has been assessed for one daytime and one night time overpass occurring over the WATERMED field site near Marrakech, Morocco, on 05 March 2003. Top of atmosphere (TOA) brightness temperatures (BTs) are simulate…

Atmospheric ScienceDaytimeRadiometerPixelMeteorologyAerospace EngineeringAstronomy and AstrophysicsAATSRStandard deviationGeophysicsAtmospheric radiative transfer codesSpace and Planetary ScienceNadirEmissivityGeneral Earth and Planetary SciencesEnvironmental scienceAlgorithmRemote sensingAdvances in Space Research
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Altitude effect in UV radiation during the Evaluation of the Effects of Elevation and Aerosols on the Ultraviolet Radiation 2002 (VELETA-2002) field …

2008

[1] The Evaluation of the Effects of Elevation and Aerosols on the Ultraviolet Radiation 2002 (VELETA-2002) field campaign was designed to study the influence of aerosols and altitude on solar UV irradiance. The altitude effect (AE) was evaluated for UV irradiance under cloudless conditions by taking spectral and broadband measurements in SE Spain in the summer of 2002 at three nearby sites located at different heights (680 m, 2200 m, and 3398 m). A spectral radiative transfer model (Santa Barbara DISORT Atmospheric Radiative Transfer (SBDART)) was also applied, mainly to evaluate the tropospheric ozone impact on AE. Results are related to the optical properties and air mass origin of the a…

Atmospheric ScienceEcologySolar zenith angleIrradiancePaleontologySoil ScienceForestryAquatic ScienceMineral dustNoonOceanographyAtmospheric scienceschemistry.chemical_compoundGeophysicsAltitudeAtmospheric radiative transfer codeschemistrySpace and Planetary ScienceGeochemistry and PetrologyEarth and Planetary Sciences (miscellaneous)Environmental scienceTropospheric ozoneAir massEarth-Surface ProcessesWater Science and TechnologyJournal of Geophysical Research
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Three-dimensional solar radiation effects on the actinic flux field in a biomass-burning plume

2003

[1] Three-dimensional (3-D) solar radiative transfer models describe radiative transfer under inhomogeneous atmospheric conditions more accurately than the commonly used one-dimensional (1-D) radiative transfer models that assume horizontal homogeneity of the atmosphere. Here results of 3-D radiative transfer simulations for a biomass-burning plume are presented and compared with local one-dimensional (l-1-D) simulations, i.e., 1-D simulations in every column of the model domain. The spatial distribution of the aerosol particles was derived from a 3-D atmospheric transport simulation. We studied the impact of 3-D radiative effects on the actinic flux within the plume center. The differences…

Atmospheric ScienceEcologySolar zenith anglePaleontologySoil ScienceForestryAquatic ScienceOceanographyAtmospheric sciencesAerosolPlumeRadiative fluxWavelengthGeophysicsAtmospheric radiative transfer codesSpace and Planetary ScienceGeochemistry and PetrologyEarth and Planetary Sciences (miscellaneous)Radiative transferPanacheEnvironmental sciencePhysics::Atmospheric and Oceanic PhysicsEarth-Surface ProcessesWater Science and TechnologyJournal of Geophysical Research
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A new method to retrieve the aerosol layer absorption coefficient from airborne flux density and actinic radiation measurements

2010

A new method is presented to derive the mean value of the spectral absorption coefficient of an aerosol layer from combined airborne measurements of spectral net irradiance and actinic flux density. While the method is based on a theoretical relationship of radiative transfer theory, it is applied to atmospheric radiation measurements for the first time. The data have been collected with the Spectral Modular Airborne Radiation Measurement System (SMARTA¢Â€ÂAlbedometer), the Solar Spectral Flux Radiometer (SSFR), and the Actinic Flux Spectroradiometer (AFSR) during four field campaigns between 2002 and 2008 (the Saharan Mineral Dust Experiment (SAMUM), the Influence of Clouds on the Spectra…

Atmospheric ScienceIrradianceSoil ScienceFluxAquatic ScienceOceanographySSFRTroposphereRadiative fluxAtmospheric radiative transfer codesGeochemistry and PetrologySMART‐AlbedometerEarth and Planetary Sciences (miscellaneous)Radiative transferOptical depthPhysics::Atmospheric and Oceanic PhysicsEarth-Surface ProcessesWater Science and TechnologyRemote sensingARCTAS/ARCPACLidarRadiometerEcologyPaleontologyForestrySAMUMGeophysicsSpace and Planetary ScienceEnvironmental science
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