Ozone Loss From Quasi-Conservative Coordinate Mapping During the 1999-2000 SOLVE Campaign

During the winter of 1999-2000, the Sage III Ozone Loss and Validation Experiment (SOLVE) field experiment took place in Kiruna, Sweden. The purpose of SOLVE was to examine ozone depletion mechanisms in the Arctic stratosphere (from about 10 to 50 km altitude) during the winter and early spring, whe...

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Main Authors: Richard, E., Schoeberl, M. R., Braathen, G. O., Newman, P. A., Goutail, F., McGee, T., Bhartia, P. K., Burris, J., Bojkov, B. R., Lait, L. R., Browell, E. V.
Language:unknown
Published: 2001
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Online Access:http://hdl.handle.net/2060/20010084181
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author Richard, E.
Schoeberl, M. R.
Braathen, G. O.
Newman, P. A.
Goutail, F.
McGee, T.
Bhartia, P. K.
Burris, J.
Bojkov, B. R.
Lait, L. R.
Browell, E. V.
author_facet Richard, E.
Schoeberl, M. R.
Braathen, G. O.
Newman, P. A.
Goutail, F.
McGee, T.
Bhartia, P. K.
Burris, J.
Bojkov, B. R.
Lait, L. R.
Browell, E. V.
author_sort Richard, E.
collection NASA Technical Reports Server (NTRS)
description During the winter of 1999-2000, the Sage III Ozone Loss and Validation Experiment (SOLVE) field experiment took place in Kiruna, Sweden. The purpose of SOLVE was to examine ozone depletion mechanisms in the Arctic stratosphere (from about 10 to 50 km altitude) during the winter and early spring, when a band of strong winds (the 'polar vortex') circle the pole. Measurements of stratospheric ozone were made by several different kinds of instruments in different meteorological situations. We analyzed these data using the 'quasi-conservative coordinate mapping' technique, in which the measurements are analyzed in terms of meteorological properties ('potential temperature' and 'potential vorticity') which tend not to change very much over a few days. This technique reduces or removes the changes that are associated with the polar vortex moving around. Over longer time periods, potential temperature and potential vorticity change as air cools and descends within the polar vortex. We account for these changes by calculating the trajectories of air parcels, and this enables us to extend the analysis over a ten-week period from January 10 to March 17, 2000. Using data from the NASA ER-2 aircraft, from the DIAL and AROTEL laser sounders on the NASA DC-8 aircraft, and balloon-borne ozonesondes, our analysis reveals changes in ozone which, because we have removed the effects of polar vortex motion and the descending air, indicate chemical destruction of ozone in early 2000. We find a peak decline rate of approximately 0.03 ppmv/day near 470 K of potential temperature (near 20 km) in mid-January which sinks in altitude to around 440 K (near 18 km) in mid-March.
genre Arctic
Kiruna
genre_facet Arctic
Kiruna
geographic Arctic
Kiruna
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Kiruna
id ftnasantrs:oai:casi.ntrs.nasa.gov:20010084181
institution Open Polar
language unknown
op_collection_id ftnasantrs
op_coverage Unclassified, Unlimited, Publicly available
op_relation Document ID: 20010084181
http://hdl.handle.net/2060/20010084181
op_rights No Copyright
op_source CASI
publishDate 2001
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spelling ftnasantrs:oai:casi.ntrs.nasa.gov:20010084181 2025-01-16T20:45:42+00:00 Ozone Loss From Quasi-Conservative Coordinate Mapping During the 1999-2000 SOLVE Campaign Richard, E. Schoeberl, M. R. Braathen, G. O. Newman, P. A. Goutail, F. McGee, T. Bhartia, P. K. Burris, J. Bojkov, B. R. Lait, L. R. Browell, E. V. Unclassified, Unlimited, Publicly available [2001] application/pdf http://hdl.handle.net/2060/20010084181 unknown Document ID: 20010084181 http://hdl.handle.net/2060/20010084181 No Copyright CASI Environment Pollution 2001 ftnasantrs 2015-03-15T02:29:24Z During the winter of 1999-2000, the Sage III Ozone Loss and Validation Experiment (SOLVE) field experiment took place in Kiruna, Sweden. The purpose of SOLVE was to examine ozone depletion mechanisms in the Arctic stratosphere (from about 10 to 50 km altitude) during the winter and early spring, when a band of strong winds (the 'polar vortex') circle the pole. Measurements of stratospheric ozone were made by several different kinds of instruments in different meteorological situations. We analyzed these data using the 'quasi-conservative coordinate mapping' technique, in which the measurements are analyzed in terms of meteorological properties ('potential temperature' and 'potential vorticity') which tend not to change very much over a few days. This technique reduces or removes the changes that are associated with the polar vortex moving around. Over longer time periods, potential temperature and potential vorticity change as air cools and descends within the polar vortex. We account for these changes by calculating the trajectories of air parcels, and this enables us to extend the analysis over a ten-week period from January 10 to March 17, 2000. Using data from the NASA ER-2 aircraft, from the DIAL and AROTEL laser sounders on the NASA DC-8 aircraft, and balloon-borne ozonesondes, our analysis reveals changes in ozone which, because we have removed the effects of polar vortex motion and the descending air, indicate chemical destruction of ozone in early 2000. We find a peak decline rate of approximately 0.03 ppmv/day near 470 K of potential temperature (near 20 km) in mid-January which sinks in altitude to around 440 K (near 18 km) in mid-March. Other/Unknown Material Arctic Kiruna NASA Technical Reports Server (NTRS) Arctic Kiruna
spellingShingle Environment Pollution
Richard, E.
Schoeberl, M. R.
Braathen, G. O.
Newman, P. A.
Goutail, F.
McGee, T.
Bhartia, P. K.
Burris, J.
Bojkov, B. R.
Lait, L. R.
Browell, E. V.
Ozone Loss From Quasi-Conservative Coordinate Mapping During the 1999-2000 SOLVE Campaign
title Ozone Loss From Quasi-Conservative Coordinate Mapping During the 1999-2000 SOLVE Campaign
title_full Ozone Loss From Quasi-Conservative Coordinate Mapping During the 1999-2000 SOLVE Campaign
title_fullStr Ozone Loss From Quasi-Conservative Coordinate Mapping During the 1999-2000 SOLVE Campaign
title_full_unstemmed Ozone Loss From Quasi-Conservative Coordinate Mapping During the 1999-2000 SOLVE Campaign
title_short Ozone Loss From Quasi-Conservative Coordinate Mapping During the 1999-2000 SOLVE Campaign
title_sort ozone loss from quasi-conservative coordinate mapping during the 1999-2000 solve campaign
topic Environment Pollution
topic_facet Environment Pollution
url http://hdl.handle.net/2060/20010084181