0000000000529150

AUTHOR

Henri Diémoz

0000-0001-7189-4134

showing 3 related works from this author

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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One year of measurements with a POM02 radiometer at an Alpine EuroSkyRad statio

2014

Atmospheric ScienceRadiometerMeteorologySkymedia_common.quotation_subjectEnvironmental scienceMineral dustmedia_commonRemote sensing
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Results from the Fourth WMO Filter Radiometer Comparison for aerosol optical depth measurements

2018

Abstract. This study presents the results of the Fourth Filter Radiometer Comparison that was held in Davos, Switzerland, between 28 September and 16 October 2015. Thirty filter radiometers and spectroradiometers from 12 countries participated including reference instruments from global aerosol networks. The absolute differences of all instruments compared to the reference have been based on the World Meteorological Organization (WMO) criterion defined as follows: 95% of the measured data has to be within 0.005 ± 0.001∕m (where m is the air mass). At least 24 out of 29 instruments achieved this goal at both 500 and 865 nm, while 12 out of 17 and 13 out of 21 achieved this at 368 and 412 nm,…

Earth's energy budgetTermodinàmica atmosfèricaAtmospheric ScienceAngstrom exponent010504 meteorology & atmospheric sciencesMeteorologi och atmosfärforskning01 natural sciencesAerosol optical depthlcsh:Chemistry010309 opticssymbols.namesakeAerosol networks0103 physical sciencesRayleigh scatteringradiometry field campaignRadiation balance0105 earth and related environmental sciencesRemote sensingAerosolsRadiometerlcsh:QC1-999AerosolSpectroradiometerlcsh:QD1-99913. Climate action[SDU]Sciences of the Universe [physics]Meteorology and Atmospheric SciencessymbolsEnvironmental scienceRadiometerSun photometerslcsh:PhysicsWater vapor
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