Validation of MIPAS ClONO2 measurements
Altitude profiles of ClONO2 retrieved with the IMK (Institut für Meteorologie und Klimaforschung) science-oriented data processor from MIPAS/Envisat (Michelson Interferometer for Passive Atmospheric Sounding on Envisat) mid-infrared limb emission measurements between July 2002 and March 2004 have be...
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ftluleatu:oai:DiVA.org:ltu-14922 2023-05-15T17:04:20+02:00 Validation of MIPAS ClONO2 measurements Höpfner, M. von Clarmann, T. Fischer, H. Funke, B. Glatthor, N. Grabowski, U. Kellmann, S. Kiefer, M. Linden, A. Milz, Mathias Steck, T. Stiller, G. P. Bernath, P. Blom, C. E. Blumenstock, Th. Boone, C. Chance, K. Coffey, M.T. Friedl-Vallon, F. Griffith, D. Hannigan, J. W. Hase, F. Jones, N. Jucks, K. W. Keim, C. Zander, R. 2007 application/pdf http://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-14922 https://doi.org/10.5194/acp-7-257-2007 eng eng Atmospheric Chemistry And Physics, 1680-7316, 2007, 7:1, s. 257-281 orcid:0000-0002-4478-2185 http://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-14922 doi:10.5194/acp-7-257-2007 ISI:000243747400002 Scopus 2-s2.0-33846455100 Local e5cbda40-91e6-11dc-9a81-000ea68e967b info:eu-repo/semantics/openAccess Aerospace Engineering Rymd- och flygteknik Article in journal info:eu-repo/semantics/article text 2007 ftluleatu https://doi.org/10.5194/acp-7-257-2007 2022-10-25T20:59:09Z Altitude profiles of ClONO2 retrieved with the IMK (Institut für Meteorologie und Klimaforschung) science-oriented data processor from MIPAS/Envisat (Michelson Interferometer for Passive Atmospheric Sounding on Envisat) mid-infrared limb emission measurements between July 2002 and March 2004 have been validated by comparison with balloon-borne (Mark IV, FIRS2, MIPAS-B), airborne (MIPAS-STR), ground-based (Spitsbergen, Thule, Kiruna, Harestua, Jungfraujoch, Izaña, Wollongong, Lauder), and spaceborne (ACE-FTS) observations. With few exceptions we found very good agreement between these instruments and MIPAS with no evidence for any bias in most cases and altitude regions. For balloon-borne measurements typical absolute mean differences are below 0.05 ppbv over the whole altitude range from 10 to 39 km. In case of ACE-FTS observations mean differences are below 0.03 ppbv for observations below 26 km. Above this altitude the comparison with ACE-FTS is affected by the photochemically induced diurnal variation of ClONO2. Correction for this by use of a chemical transport model led to an overcompensation of the photochemical effect by up to 0.1 ppbv at altitudes of 30–35 km in case of MIPAS-ACE-FTS comparisons while for the balloon-borne observations no such inconsistency has been detected. The comparison of MIPAS derived total column amounts with ground-based observations revealed no significant bias in the MIPAS data. Mean differences between MIPAS and FTIR column abundances are 0.11±0.12×1014 cm−2 (1.0±1.1%) and −0.09±0.19×1014 cm−2 (−0.8±1.7%), depending on the coincidence criterion applied. χ2 tests have been performed to assess the combined precision estimates of MIPAS and the related instruments. When no exact coincidences were available as in case of MIPAS – FTIR or MIPAS – ACE-FTS comparisons it has been necessary to take into consideration a coincidence error term to account for χ2 deviations. From the resulting χ2 profiles there is no evidence for a systematic over/underestimation of the MIPAS random error ... Article in Journal/Newspaper Kiruna Spitsbergen Luleå University of Technology Publications (DiVA) Kiruna Atmospheric Chemistry and Physics 7 1 257 281 |
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Open Polar |
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Luleå University of Technology Publications (DiVA) |
op_collection_id |
ftluleatu |
language |
English |
topic |
Aerospace Engineering Rymd- och flygteknik |
spellingShingle |
Aerospace Engineering Rymd- och flygteknik Höpfner, M. von Clarmann, T. Fischer, H. Funke, B. Glatthor, N. Grabowski, U. Kellmann, S. Kiefer, M. Linden, A. Milz, Mathias Steck, T. Stiller, G. P. Bernath, P. Blom, C. E. Blumenstock, Th. Boone, C. Chance, K. Coffey, M.T. Friedl-Vallon, F. Griffith, D. Hannigan, J. W. Hase, F. Jones, N. Jucks, K. W. Keim, C. Zander, R. Validation of MIPAS ClONO2 measurements |
topic_facet |
Aerospace Engineering Rymd- och flygteknik |
description |
Altitude profiles of ClONO2 retrieved with the IMK (Institut für Meteorologie und Klimaforschung) science-oriented data processor from MIPAS/Envisat (Michelson Interferometer for Passive Atmospheric Sounding on Envisat) mid-infrared limb emission measurements between July 2002 and March 2004 have been validated by comparison with balloon-borne (Mark IV, FIRS2, MIPAS-B), airborne (MIPAS-STR), ground-based (Spitsbergen, Thule, Kiruna, Harestua, Jungfraujoch, Izaña, Wollongong, Lauder), and spaceborne (ACE-FTS) observations. With few exceptions we found very good agreement between these instruments and MIPAS with no evidence for any bias in most cases and altitude regions. For balloon-borne measurements typical absolute mean differences are below 0.05 ppbv over the whole altitude range from 10 to 39 km. In case of ACE-FTS observations mean differences are below 0.03 ppbv for observations below 26 km. Above this altitude the comparison with ACE-FTS is affected by the photochemically induced diurnal variation of ClONO2. Correction for this by use of a chemical transport model led to an overcompensation of the photochemical effect by up to 0.1 ppbv at altitudes of 30–35 km in case of MIPAS-ACE-FTS comparisons while for the balloon-borne observations no such inconsistency has been detected. The comparison of MIPAS derived total column amounts with ground-based observations revealed no significant bias in the MIPAS data. Mean differences between MIPAS and FTIR column abundances are 0.11±0.12×1014 cm−2 (1.0±1.1%) and −0.09±0.19×1014 cm−2 (−0.8±1.7%), depending on the coincidence criterion applied. χ2 tests have been performed to assess the combined precision estimates of MIPAS and the related instruments. When no exact coincidences were available as in case of MIPAS – FTIR or MIPAS – ACE-FTS comparisons it has been necessary to take into consideration a coincidence error term to account for χ2 deviations. From the resulting χ2 profiles there is no evidence for a systematic over/underestimation of the MIPAS random error ... |
format |
Article in Journal/Newspaper |
author |
Höpfner, M. von Clarmann, T. Fischer, H. Funke, B. Glatthor, N. Grabowski, U. Kellmann, S. Kiefer, M. Linden, A. Milz, Mathias Steck, T. Stiller, G. P. Bernath, P. Blom, C. E. Blumenstock, Th. Boone, C. Chance, K. Coffey, M.T. Friedl-Vallon, F. Griffith, D. Hannigan, J. W. Hase, F. Jones, N. Jucks, K. W. Keim, C. Zander, R. |
author_facet |
Höpfner, M. von Clarmann, T. Fischer, H. Funke, B. Glatthor, N. Grabowski, U. Kellmann, S. Kiefer, M. Linden, A. Milz, Mathias Steck, T. Stiller, G. P. Bernath, P. Blom, C. E. Blumenstock, Th. Boone, C. Chance, K. Coffey, M.T. Friedl-Vallon, F. Griffith, D. Hannigan, J. W. Hase, F. Jones, N. Jucks, K. W. Keim, C. Zander, R. |
author_sort |
Höpfner, M. |
title |
Validation of MIPAS ClONO2 measurements |
title_short |
Validation of MIPAS ClONO2 measurements |
title_full |
Validation of MIPAS ClONO2 measurements |
title_fullStr |
Validation of MIPAS ClONO2 measurements |
title_full_unstemmed |
Validation of MIPAS ClONO2 measurements |
title_sort |
validation of mipas clono2 measurements |
publishDate |
2007 |
url |
http://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-14922 https://doi.org/10.5194/acp-7-257-2007 |
geographic |
Kiruna |
geographic_facet |
Kiruna |
genre |
Kiruna Spitsbergen |
genre_facet |
Kiruna Spitsbergen |
op_relation |
Atmospheric Chemistry And Physics, 1680-7316, 2007, 7:1, s. 257-281 orcid:0000-0002-4478-2185 http://urn.kb.se/resolve?urn=urn:nbn:se:ltu:diva-14922 doi:10.5194/acp-7-257-2007 ISI:000243747400002 Scopus 2-s2.0-33846455100 Local e5cbda40-91e6-11dc-9a81-000ea68e967b |
op_rights |
info:eu-repo/semantics/openAccess |
op_doi |
https://doi.org/10.5194/acp-7-257-2007 |
container_title |
Atmospheric Chemistry and Physics |
container_volume |
7 |
container_issue |
1 |
container_start_page |
257 |
op_container_end_page |
281 |
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1766058413211516928 |