Pole-to-pole validation of GOME WFDOAS total ozone with groundbased data

International audience This paper summarises the validation of GOME total ozone retrieved using the Weighting Function Differential Optical Absorption Spectroscopy (WFDOAS) algorithm Version 1.0. This algorithm has been described in detail in a companion paper by Coldewey-Egbers et al. (2005). Compa...

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Main Authors: Weber, M., Lamsal, L. N., Coldewey-Egbers, M., Bramstedt, K., Burrows, J. P.
Other Authors: Institute of Environmental Physics Bremen (IUP), Universität Bremen Deutschland = University of Bremen Germany = Université de Brême Allemagne
Format: Article in Journal/Newspaper
Language:English
Published: CCSD 2005
Subjects:
Online Access:https://hal.science/hal-00295664
https://hal.science/hal-00295664v1/document
https://hal.science/hal-00295664v1/file/acp-5-1341-2005.pdf
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author Weber, M.
Lamsal, L. N.
Coldewey-Egbers, M.
Bramstedt, K.
Burrows, J. P.
author2 Institute of Environmental Physics Bremen (IUP)
Universität Bremen Deutschland = University of Bremen Germany = Université de Brême Allemagne
author_facet Weber, M.
Lamsal, L. N.
Coldewey-Egbers, M.
Bramstedt, K.
Burrows, J. P.
author_sort Weber, M.
collection Institut national des sciences de l'Univers: HAL-INSU
description International audience This paper summarises the validation of GOME total ozone retrieved using the Weighting Function Differential Optical Absorption Spectroscopy (WFDOAS) algorithm Version 1.0. This algorithm has been described in detail in a companion paper by Coldewey-Egbers et al. (2005). Compared to the operational GDP (GOME Data Processor) V3, several improvements to the total ozone retrieval have been introduced that account for the varying ozone dependent contribution to rotational Raman scattering, includes a new cloud scheme, and uses the GOME measured effective albedo in the retrieval. In this paper the WFDOAS results have been compared with selected ground-based measurements from the WOUDC (World Ozone and UV Radiation Data Centre) that collects total ozone measurements from a global network of stations covering all seasons. From the global validation excellent agreement between WFDOAS and ground data was observed. The agreement lies within ±1%, and very little seasonal variations in the differences are found. In the polar regions and at high solar zenith angles, however, a positive bias varying between 5 and 8% is found near the polar night period. As a function of solar zenith angle as well as of the retrieved total ozone, the WFDOAS differences to ground polar data, however, show a much weaker dependence as compared to the operational GOME Data Processor Version 3 of GOME that represents a significant improvement. Very few stations carry out simultaneous measurements by Brewer and Dobson spectrometers over an extended period (three years or more). Simultaneous Brewer and Dobson measurements from Hradec Kralove, Czech Republic (50.2N, 15.8E) and Hohenpeissenberg, Germany (47.8N, 11.0E) covering the period 1996-1999 have been compared with our GOME results. Agreement with Brewers are generally better than with the simultaneous Dobson measurements and this may be explained by the neglect of stratospheric (ozone) temperature correction in the standard ozone retrieval from the ground.
format Article in Journal/Newspaper
genre polar night
genre_facet polar night
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institution Open Polar
language English
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op_rights info:eu-repo/semantics/OpenAccess
op_source ISSN: 1680-7316
EISSN: 1680-7324
Atmospheric Chemistry and Physics
https://hal.science/hal-00295664
Atmospheric Chemistry and Physics, 2005, 5 (5), pp.1341-1355
publishDate 2005
publisher CCSD
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spelling ftinsu:oai:HAL:hal-00295664v1 2025-05-18T14:06:33+00:00 Pole-to-pole validation of GOME WFDOAS total ozone with groundbased data Weber, M. Lamsal, L. N. Coldewey-Egbers, M. Bramstedt, K. Burrows, J. P. Institute of Environmental Physics Bremen (IUP) Universität Bremen Deutschland = University of Bremen Germany = Université de Brême Allemagne 2005-06-07 https://hal.science/hal-00295664 https://hal.science/hal-00295664v1/document https://hal.science/hal-00295664v1/file/acp-5-1341-2005.pdf en eng CCSD European Geosciences Union info:eu-repo/semantics/OpenAccess ISSN: 1680-7316 EISSN: 1680-7324 Atmospheric Chemistry and Physics https://hal.science/hal-00295664 Atmospheric Chemistry and Physics, 2005, 5 (5), pp.1341-1355 [SDU.OCEAN]Sciences of the Universe [physics]/Ocean Atmosphere info:eu-repo/semantics/article Journal articles 2005 ftinsu 2025-04-21T02:18:56Z International audience This paper summarises the validation of GOME total ozone retrieved using the Weighting Function Differential Optical Absorption Spectroscopy (WFDOAS) algorithm Version 1.0. This algorithm has been described in detail in a companion paper by Coldewey-Egbers et al. (2005). Compared to the operational GDP (GOME Data Processor) V3, several improvements to the total ozone retrieval have been introduced that account for the varying ozone dependent contribution to rotational Raman scattering, includes a new cloud scheme, and uses the GOME measured effective albedo in the retrieval. In this paper the WFDOAS results have been compared with selected ground-based measurements from the WOUDC (World Ozone and UV Radiation Data Centre) that collects total ozone measurements from a global network of stations covering all seasons. From the global validation excellent agreement between WFDOAS and ground data was observed. The agreement lies within ±1%, and very little seasonal variations in the differences are found. In the polar regions and at high solar zenith angles, however, a positive bias varying between 5 and 8% is found near the polar night period. As a function of solar zenith angle as well as of the retrieved total ozone, the WFDOAS differences to ground polar data, however, show a much weaker dependence as compared to the operational GOME Data Processor Version 3 of GOME that represents a significant improvement. Very few stations carry out simultaneous measurements by Brewer and Dobson spectrometers over an extended period (three years or more). Simultaneous Brewer and Dobson measurements from Hradec Kralove, Czech Republic (50.2N, 15.8E) and Hohenpeissenberg, Germany (47.8N, 11.0E) covering the period 1996-1999 have been compared with our GOME results. Agreement with Brewers are generally better than with the simultaneous Dobson measurements and this may be explained by the neglect of stratospheric (ozone) temperature correction in the standard ozone retrieval from the ground. Article in Journal/Newspaper polar night Institut national des sciences de l'Univers: HAL-INSU
spellingShingle [SDU.OCEAN]Sciences of the Universe [physics]/Ocean
Atmosphere
Weber, M.
Lamsal, L. N.
Coldewey-Egbers, M.
Bramstedt, K.
Burrows, J. P.
Pole-to-pole validation of GOME WFDOAS total ozone with groundbased data
title Pole-to-pole validation of GOME WFDOAS total ozone with groundbased data
title_full Pole-to-pole validation of GOME WFDOAS total ozone with groundbased data
title_fullStr Pole-to-pole validation of GOME WFDOAS total ozone with groundbased data
title_full_unstemmed Pole-to-pole validation of GOME WFDOAS total ozone with groundbased data
title_short Pole-to-pole validation of GOME WFDOAS total ozone with groundbased data
title_sort pole-to-pole validation of gome wfdoas total ozone with groundbased data
topic [SDU.OCEAN]Sciences of the Universe [physics]/Ocean
Atmosphere
topic_facet [SDU.OCEAN]Sciences of the Universe [physics]/Ocean
Atmosphere
url https://hal.science/hal-00295664
https://hal.science/hal-00295664v1/document
https://hal.science/hal-00295664v1/file/acp-5-1341-2005.pdf