Total column ozone content and aerosol optical thickness measurements: instrument performance analysis

Measurements of total ozone content TOC and aerosol optical thickness AOT at 1020 nm are fulfilled with microprocessor-controlled hand-held ozonometer MICROTOPS MTOPS #7351 at the ground-based station at the Institute of Applied Physics since July 2003. It was shown that MTOPS readings are very sens...

Full description

Bibliographic Details
Main Authors: Aculinin, A.A., Smîcov, V.P.
Format: Article in Journal/Newspaper
Language:English
Published: 2006
Subjects:
Online Access:https://ibn.idsi.md/vizualizare_articol/3617
id ftinstdsiibn:oai:ibn.idsi.md:3617
record_format openpolar
spelling ftinstdsiibn:oai:ibn.idsi.md:3617 2024-09-30T14:21:40+00:00 Total column ozone content and aerosol optical thickness measurements: instrument performance analysis Aculinin, A.A. Smîcov, V.P. 2006-12-05 application/pdf https://ibn.idsi.md/vizualizare_articol/3617 en eng https://ibn.idsi.md/vizualizare_articol/3617 urn:issn:1810648X info:eu-repo/semantics/openAccess Moldavian Journal of the Physical Sciences 5 (3-4) 387-395 info:eu-repo/semantics/article 2006 ftinstdsiibn 2024-09-16T18:10:05Z Measurements of total ozone content TOC and aerosol optical thickness AOT at 1020 nm are fulfilled with microprocessor-controlled hand-held ozonometer MICROTOPS MTOPS #7351 at the ground-based station at the Institute of Applied Physics since July 2003. It was shown that MTOPS readings are very sensitive to errors resulting from mispointing of the instrument to the Sun. The errors in retrieved TOC values may reach up to 50% depending on Sun’s spot position in the sun targeting window of the ozonometer. MTOPS calibration characteristics are analyzed with the Langley calibration plots for clear cloudless days at the Chisinau site. Variability of evaluated calibration characteristics of instrument during period of observation consists of less than 2%. AOT values at 1020 nm retrieved from MTOPS measurements are found to be smaller than AOT from CIMEL sunphotometer operating at the Chisinau site within framework of the Aerosol Robotic Network AERONET under the supervision of NASA/GSFC. Discrepancy between AOT values from MTOPS and CIMEL consists, on an average, ~0.028 and this is due to the absence of temperature correction of 1020 nm channel of MTOPS. Mean ratio of daily TOC from Total Ozone Mapping Spectrometer TOMS aboard of Earth Probe EP satellite divided by TOC from MTOPS and mean ratio of daily TOC from Ozone Monitoring Instrument OMI aboard of Aura satellite divided by TOC from MTOPS is 0.960 and 0.990, respectively. Article in Journal/Newspaper Aerosol Robotic Network Instrument Bibliometric National (IBN - Information Society Development Institute)
institution Open Polar
collection Instrument Bibliometric National (IBN - Information Society Development Institute)
op_collection_id ftinstdsiibn
language English
description Measurements of total ozone content TOC and aerosol optical thickness AOT at 1020 nm are fulfilled with microprocessor-controlled hand-held ozonometer MICROTOPS MTOPS #7351 at the ground-based station at the Institute of Applied Physics since July 2003. It was shown that MTOPS readings are very sensitive to errors resulting from mispointing of the instrument to the Sun. The errors in retrieved TOC values may reach up to 50% depending on Sun’s spot position in the sun targeting window of the ozonometer. MTOPS calibration characteristics are analyzed with the Langley calibration plots for clear cloudless days at the Chisinau site. Variability of evaluated calibration characteristics of instrument during period of observation consists of less than 2%. AOT values at 1020 nm retrieved from MTOPS measurements are found to be smaller than AOT from CIMEL sunphotometer operating at the Chisinau site within framework of the Aerosol Robotic Network AERONET under the supervision of NASA/GSFC. Discrepancy between AOT values from MTOPS and CIMEL consists, on an average, ~0.028 and this is due to the absence of temperature correction of 1020 nm channel of MTOPS. Mean ratio of daily TOC from Total Ozone Mapping Spectrometer TOMS aboard of Earth Probe EP satellite divided by TOC from MTOPS and mean ratio of daily TOC from Ozone Monitoring Instrument OMI aboard of Aura satellite divided by TOC from MTOPS is 0.960 and 0.990, respectively.
format Article in Journal/Newspaper
author Aculinin, A.A.
Smîcov, V.P.
spellingShingle Aculinin, A.A.
Smîcov, V.P.
Total column ozone content and aerosol optical thickness measurements: instrument performance analysis
author_facet Aculinin, A.A.
Smîcov, V.P.
author_sort Aculinin, A.A.
title Total column ozone content and aerosol optical thickness measurements: instrument performance analysis
title_short Total column ozone content and aerosol optical thickness measurements: instrument performance analysis
title_full Total column ozone content and aerosol optical thickness measurements: instrument performance analysis
title_fullStr Total column ozone content and aerosol optical thickness measurements: instrument performance analysis
title_full_unstemmed Total column ozone content and aerosol optical thickness measurements: instrument performance analysis
title_sort total column ozone content and aerosol optical thickness measurements: instrument performance analysis
publishDate 2006
url https://ibn.idsi.md/vizualizare_articol/3617
genre Aerosol Robotic Network
genre_facet Aerosol Robotic Network
op_source Moldavian Journal of the Physical Sciences 5 (3-4) 387-395
op_relation https://ibn.idsi.md/vizualizare_articol/3617
urn:issn:1810648X
op_rights info:eu-repo/semantics/openAccess
_version_ 1811638094208696320