Search results for "sky radiometer"

showing 4 items of 4 documents

Optimal use of the Prede POM sky radiometer for aerosol, water vapor, and ozone retrievals

2021

The Prede POM sky radiometer is a filter radiometer deployed worldwide in the SKYNET international network. A new method, called Skyrad pack MRI version 2 (MRI v2), is presented here to retrieve aerosol properties (size distribution, real and imaginary parts of the refractive index, single-scattering albedo, asymmetry factor, lidar ratio, and linear depolarization ratio), water vapor, and ozone column concentrations from the sky radiometer measurements. MRI v2 overcomes two limitations of previous methods (Skyrad pack versions 4.2 and 5, MRI version 1). One is the use of all the wavelengths of 315, 340, 380, 400, 500, 675, 870, 940, 1020, 1627, and 2200 nm if available from the sky radiomet…

Atmospheric Science010504 meteorology & atmospheric sciencesaerosolEnvironmental engineering01 natural sciencesCape verde03 medical and health sciencesEarthwork. FoundationsRadiative transferretrievalZenith030304 developmental biology0105 earth and related environmental sciencesRemote sensing0303 health sciencesRadiometerTA715-787TA170-171AlbedoAerosolwater vapourozonesky radiometerLidarAlmucantarradiative transferEnvironmental scienceAtmospheric Measurement Techniques
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Precipitable water vapour content from ESR/SKYNET sun-sky radiometers: validation against GNSS/GPS and AERONET over three different sites in Europe

2018

The estimation of the precipitable water vapour content (W) with high temporal and spatial resolution is of great interest to both meteorological and climatological studies. Several methodologies based on remote sensing techniques have been recently developed in order to obtain accurate and frequent measurements of this atmospheric parameter. Among them, the relative low cost and easy deployment of sun–sky radiometers, or sun photometers, operating in several international networks, allowed the development of automatic estimations of W from these instruments with high temporal resolution. However, the great problem of this methodology is the estimation of the sun-photometric calibration par…

Termodinàmica atmosfèricaAtmospheric Scienceprecipitable water vapor; sun-sky radiometers; validation; GNSS/GPS010504 meteorology & atmospheric sciencesMeteorologyGPSprecipitable water vaporSolar zenith angleSKYNETAeronet01 natural sciences010309 opticsSkynet0103 physical sciencesCalibrationlcsh:TA170-1710105 earth and related environmental sciencesRemote sensingGNSS/GPS[SDU.OCEAN]Sciences of the Universe [physics]/Ocean AtmospherevalidationPrecipitable waterbusiness.industrylcsh:TA715-787sun-sky radiometerslcsh:Earthwork. FoundationsAERONETlcsh:Environmental engineeringwater vapourGNSS applications13. Climate actionInfrared windowGlobal Positioning SystemEnvironmental sciencebusiness
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An overview of and issues with sky radiometer technology and SKYNET

2020

This paper is an overview of the progress in sky radiometer technology and the development of the network called SKYNET. It is found that the technology has produced useful on-site calibration methods, retrieval algorithms, and data analyses from sky radiometer observations of aerosol, cloud, water vapor, and ozone. A formula was proposed for estimating the accuracy of the sky radiometer calibration constant F0 using the improved Langley (IL) method, which was found to be a good approximation to observed monthly mean uncertainty in F0, around 0.5 % to 2.4 % at the Tokyo and Rome sites and smaller values of around 0.3 % to 0.5 % at the mountain sites at Mt. Sarasw…

Atmospheric Science010504 meteorology & atmospheric sciencesphotometrymedia_common.quotation_subjectskynet networkSKYNET010501 environmental sciences01 natural scienceslcsh:TA170-1710105 earth and related environmental sciencesmedia_commonRemote sensingAerosolsRadiometerDobson unitlcsh:TA715-787lcsh:Earthwork. FoundationsDiffuse sky radiationAlbedoaerosol optical propertiesAerosolAERONETlcsh:Environmental engineeringsky radiometerAtmosferaSkyEnvironmental scienceAtmospheric Measurement Techniques
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Monitoring of Eyjafjallajökull volcanic aerosol by the new European Skynet Radiometers (ESR) network

2012

Abstract The passage of a volcanic plume produced by the eruption of Eyjafjallajokull volcano in April 2010 was measured by the sun–sky radiometers of the new European SkyRad (ESR) network. This network consists of several European sites located in the U.K., Poland, Spain and Italy, and therefore was particularly suitable for monitoring the transport of volcanic ash generated by this particular volcano. The atmospheric aerosol characteristics at each site affected by the passage of the volcanic cloud, during and after the eruption, have been reconstructed. For the U.K. ESR sites three events were identified by the sun–sky radiometers: the first, from April 15 to April 16 2010, related to th…

Atmospheric SciencegeographyRadiometergeography.geographical_feature_category010504 meteorology & atmospheric sciencesAdvection0211 other engineering and technologiesSKYNET02 engineering and technologyColumnar radiative propertiesSun-sky radiometerAtmospheric sciences01 natural sciencesAerosolDeposition (aerosol physics)Volcano13. Climate actionsun-sky radiometer; columnar radiative properties; aerosolEnvironmental scienceAerosolVolcanic aerosol021101 geological & geomatics engineering0105 earth and related environmental sciencesGeneral Environmental ScienceVolcanic ashAtmospheric Environment
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