Preliminary comparison of the direct aerosol radiative forcing over Ukraine and Antarctic AERONET sites

Objectives. To analyze data on aerosol optical thickness (AOT) in the atmosphere over some Ukraine and Antarctic AERONET (AErosol RObotic NETwork) sites. To determine and compare direct aerosol radiative forcing (DRF) typical values using the data from midlatitude and Antarctic AERONET sites. Method...

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Main Authors: G. Milinevsky, Yu. Yukhymchuk, A. Grytsai, V. Danylevsky, Yu. Wang, V. Choliy
Format: Article
Language:English
Published: State Institution National Antarctic Scientific Center 2019-12-01
Series:Український антарктичний журнал
Subjects:
Online Access:http://uaj.uac.gov.ua/index.php/uaj/article/view/137
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spelling doaj-a87fccacb8fd477eafc222f45766d8b92020-11-25T03:47:53ZengState Institution National Antarctic Scientific CenterУкраїнський антарктичний журнал 1727-74852415-30872019-12-011(18)12813810.33275/1727-7485.1(18).2019.137137Preliminary comparison of the direct aerosol radiative forcing over Ukraine and Antarctic AERONET sitesG. Milinevsky0Yu. Yukhymchuk1A. Grytsai2V. Danylevsky3Yu. Wang4V. Choliy5National Antarctic Scientific Center, Ministry of Education and Science of Ukraine, 16 Taras Shevchenko Blvd., Kyiv, 01601, Ukraine,College of Physics, International Center of Future Science, Jilin University, 2699 Qianjin Str., Changchun, 130012, China, Taras Shevchenko National University of Kyiv, 64/13, Volodymyrska St., Kyiv, 01601, Ukraine, Main Astronomical Observatory of Ukraine, National Academy of Sciences of Ukraine, 27 Akad. Zabolotnogo Str., Kyiv, 03143, Ukraine, Main Astronomical Observatory of Ukraine, National Academy of Sciences of Ukraine, 27 Akad. Zabolotnogo Str., Kyiv, 03143, Ukraine, Institute of Physics, National Academy of Sciences of Ukraine, 46 Nauka Ave, Kyiv, 03028, UkraineTaras Shevchenko National University of Kyiv, 64/13, Volodymyrska St., Kyiv, 01601, UkraineTaras Shevchenko National University of Kyiv, 64/13, Volodymyrska St., Kyiv, 01601, UkraineCollege of Physics, International Center of Future Science, Jilin University, 2699 Qianjin Str., Changchun, 130012, ChinaTaras Shevchenko National University of Kyiv, 64/13, Volodymyrska St., Kyiv, 01601, UkraineObjectives. To analyze data on aerosol optical thickness (AOT) in the atmosphere over some Ukraine and Antarctic AERONET (AErosol RObotic NETwork) sites. To determine and compare direct aerosol radiative forcing (DRF) typical values using the data from midlatitude and Antarctic AERONET sites. Methods. Retrieval and visualization of the AERONET aerosol optical thickness and radiative forcing, data analysis and interpretation of the data. Radiative forcing evaluation using Global Atmospheric ModEl (GAME) and the AERONET operational product. Results. Aerosol optical thickness measurements are considered using observations by sun/sky photometers that are part of the AERONET sites in Ukraine (Kyiv) and at two additional sites in Antarctica (Vechernaya Hill and ARM_McMurdo sites). According to the 2015–2018 measurements at the Vechernaya Hill and ARM_McMurdo sites, the AOT values are small and are in the range of 0.05–0.1 at the 340 nm wavelength. In contrast, the corresponding AOT values from Kyiv observational site are reached 0.3–0.5 and sometimes higher. Using these AOT values from Kyiv site and the urban aerosol types, the aerosol direct radiative forcing has been evaluated by the GAME code. The top of atmosphere (TOA) DRF assessment using GAME suggests the instantaneous values of –5.7 W m–2 over vegetation surface for AOT equal 0.1. Conclusions. The AERONET derived aerosol optical thicknesses over Kyiv site show the mean value of 0.3 at 340 nm; the values over two Antarctic sites are in range of 0.03 to 0.06. Calculations using a numerical code (GAME) suggested the associated TOA instantaneous DRF of –6 W m–2 to –14 W m–2 over the Kyiv site. The values calculated as part of the AERONET Kyiv site operational product are about –20 W m–2 (BOA) and about –10 W m–2 (TOA) during 2018.http://uaj.uac.gov.ua/index.php/uaj/article/view/137aerosol optical thicknessaerosol radiative forcingaeronetgame code
collection DOAJ
language English
format Article
sources DOAJ
author G. Milinevsky
Yu. Yukhymchuk
A. Grytsai
V. Danylevsky
Yu. Wang
V. Choliy
spellingShingle G. Milinevsky
Yu. Yukhymchuk
A. Grytsai
V. Danylevsky
Yu. Wang
V. Choliy
Preliminary comparison of the direct aerosol radiative forcing over Ukraine and Antarctic AERONET sites
Український антарктичний журнал
aerosol optical thickness
aerosol radiative forcing
aeronet
game code
author_facet G. Milinevsky
Yu. Yukhymchuk
A. Grytsai
V. Danylevsky
Yu. Wang
V. Choliy
author_sort G. Milinevsky
title Preliminary comparison of the direct aerosol radiative forcing over Ukraine and Antarctic AERONET sites
title_short Preliminary comparison of the direct aerosol radiative forcing over Ukraine and Antarctic AERONET sites
title_full Preliminary comparison of the direct aerosol radiative forcing over Ukraine and Antarctic AERONET sites
title_fullStr Preliminary comparison of the direct aerosol radiative forcing over Ukraine and Antarctic AERONET sites
title_full_unstemmed Preliminary comparison of the direct aerosol radiative forcing over Ukraine and Antarctic AERONET sites
title_sort preliminary comparison of the direct aerosol radiative forcing over ukraine and antarctic aeronet sites
publisher State Institution National Antarctic Scientific Center
series Український антарктичний журнал
issn 1727-7485
2415-3087
publishDate 2019-12-01
description Objectives. To analyze data on aerosol optical thickness (AOT) in the atmosphere over some Ukraine and Antarctic AERONET (AErosol RObotic NETwork) sites. To determine and compare direct aerosol radiative forcing (DRF) typical values using the data from midlatitude and Antarctic AERONET sites. Methods. Retrieval and visualization of the AERONET aerosol optical thickness and radiative forcing, data analysis and interpretation of the data. Radiative forcing evaluation using Global Atmospheric ModEl (GAME) and the AERONET operational product. Results. Aerosol optical thickness measurements are considered using observations by sun/sky photometers that are part of the AERONET sites in Ukraine (Kyiv) and at two additional sites in Antarctica (Vechernaya Hill and ARM_McMurdo sites). According to the 2015–2018 measurements at the Vechernaya Hill and ARM_McMurdo sites, the AOT values are small and are in the range of 0.05–0.1 at the 340 nm wavelength. In contrast, the corresponding AOT values from Kyiv observational site are reached 0.3–0.5 and sometimes higher. Using these AOT values from Kyiv site and the urban aerosol types, the aerosol direct radiative forcing has been evaluated by the GAME code. The top of atmosphere (TOA) DRF assessment using GAME suggests the instantaneous values of –5.7 W m–2 over vegetation surface for AOT equal 0.1. Conclusions. The AERONET derived aerosol optical thicknesses over Kyiv site show the mean value of 0.3 at 340 nm; the values over two Antarctic sites are in range of 0.03 to 0.06. Calculations using a numerical code (GAME) suggested the associated TOA instantaneous DRF of –6 W m–2 to –14 W m–2 over the Kyiv site. The values calculated as part of the AERONET Kyiv site operational product are about –20 W m–2 (BOA) and about –10 W m–2 (TOA) during 2018.
topic aerosol optical thickness
aerosol radiative forcing
aeronet
game code
url http://uaj.uac.gov.ua/index.php/uaj/article/view/137
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