Estimation of absorptivity of Earth-atmosphere system over the MENA areas

The developed Annual Columnar Radiative Absorptivity (ACRA19) model that describes, in annual mean, the terrestrial radiation balance of an atmospheric column, allows the determination of the various regional, absorption and reflection of solar and infrared radiation using 2018’s annual data of eigh...

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Autores principales: Salhi Ouassila, Diouri Mohammed, Amine Moussaoui Mohammed, Marsli Ibtissam, Meziane Rajae
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Publicado: EDP Sciences 2021
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Acceso en línea:https://doaj.org/article/209e0fdd52014f35ac3df44fad2ce5f1
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spelling oai:doaj.org-article:209e0fdd52014f35ac3df44fad2ce5f12021-11-08T15:19:09ZEstimation of absorptivity of Earth-atmosphere system over the MENA areas2267-124210.1051/e3sconf/202131403006https://doaj.org/article/209e0fdd52014f35ac3df44fad2ce5f12021-01-01T00:00:00Zhttps://www.e3s-conferences.org/articles/e3sconf/pdf/2021/90/e3sconf_wmad2021_03006.pdfhttps://doaj.org/toc/2267-1242The developed Annual Columnar Radiative Absorptivity (ACRA19) model that describes, in annual mean, the terrestrial radiation balance of an atmospheric column, allows the determination of the various regional, absorption and reflection of solar and infrared radiation using 2018’s annual data of eight sites in MENA region ( between 22N-38N) of latitude obtained from AERONET and NASA POWER. The atmospheric thermal absorptivity (ATA) is very significant at high temperatures with an average of 0.85±0.1 for 1020 nm and the atmospheric visible absorptivity (AVA) registers 0.36 ± 0.06 when the total optical depth observes its maximum linked to dust aerosol advection.Salhi OuassilaDiouri MohammedAmine Moussaoui MohammedMarsli IbtissamMeziane RajaeEDP Sciencesarticleabsorptionaeronetaerosols optical thicknessmenainsolationEnvironmental sciencesGE1-350ENFRE3S Web of Conferences, Vol 314, p 03006 (2021)
institution DOAJ
collection DOAJ
language EN
FR
topic absorption
aeronet
aerosols optical thickness
mena
insolation
Environmental sciences
GE1-350
spellingShingle absorption
aeronet
aerosols optical thickness
mena
insolation
Environmental sciences
GE1-350
Salhi Ouassila
Diouri Mohammed
Amine Moussaoui Mohammed
Marsli Ibtissam
Meziane Rajae
Estimation of absorptivity of Earth-atmosphere system over the MENA areas
description The developed Annual Columnar Radiative Absorptivity (ACRA19) model that describes, in annual mean, the terrestrial radiation balance of an atmospheric column, allows the determination of the various regional, absorption and reflection of solar and infrared radiation using 2018’s annual data of eight sites in MENA region ( between 22N-38N) of latitude obtained from AERONET and NASA POWER. The atmospheric thermal absorptivity (ATA) is very significant at high temperatures with an average of 0.85±0.1 for 1020 nm and the atmospheric visible absorptivity (AVA) registers 0.36 ± 0.06 when the total optical depth observes its maximum linked to dust aerosol advection.
format article
author Salhi Ouassila
Diouri Mohammed
Amine Moussaoui Mohammed
Marsli Ibtissam
Meziane Rajae
author_facet Salhi Ouassila
Diouri Mohammed
Amine Moussaoui Mohammed
Marsli Ibtissam
Meziane Rajae
author_sort Salhi Ouassila
title Estimation of absorptivity of Earth-atmosphere system over the MENA areas
title_short Estimation of absorptivity of Earth-atmosphere system over the MENA areas
title_full Estimation of absorptivity of Earth-atmosphere system over the MENA areas
title_fullStr Estimation of absorptivity of Earth-atmosphere system over the MENA areas
title_full_unstemmed Estimation of absorptivity of Earth-atmosphere system over the MENA areas
title_sort estimation of absorptivity of earth-atmosphere system over the mena areas
publisher EDP Sciences
publishDate 2021
url https://doaj.org/article/209e0fdd52014f35ac3df44fad2ce5f1
work_keys_str_mv AT salhiouassila estimationofabsorptivityofearthatmospheresystemoverthemenaareas
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AT aminemoussaouimohammed estimationofabsorptivityofearthatmospheresystemoverthemenaareas
AT marsliibtissam estimationofabsorptivityofearthatmospheresystemoverthemenaareas
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