Meteorological mechanisms for transporting 03 over the western North Atlantic Ocean:

Abstract. A large-scale view of °3 transport over the western North Atlantic Ocean (WNAO) in summer illustrates distinct sources of 0), and separate transport mechanisms are important at different vertical levels in the troposphere. The week-long period presented covers a sequence of 0) sondes relea...

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Main Authors: J. S. Holloway, H. Levy Ii, S G. L. Forbes, M. Trainer, M. Buhr
Other Authors: The Pennsylvania State University CiteSeerX Archives
Format: Text
Language:English
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Online Access:http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.143.6428
http://www.gfdl.noaa.gov/reference/bibliography/1996/jlm9601.pdf
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spelling ftciteseerx:oai:CiteSeerX.psu:10.1.1.143.6428 2023-05-15T17:31:08+02:00 Meteorological mechanisms for transporting 03 over the western North Atlantic Ocean: J. S. Holloway H. Levy Ii S G. L. Forbes M. Trainer M. Buhr The Pennsylvania State University CiteSeerX Archives application/pdf http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.143.6428 http://www.gfdl.noaa.gov/reference/bibliography/1996/jlm9601.pdf en eng http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.143.6428 http://www.gfdl.noaa.gov/reference/bibliography/1996/jlm9601.pdf Metadata may be used without restrictions as long as the oai identifier remains attached to it. http://www.gfdl.noaa.gov/reference/bibliography/1996/jlm9601.pdf text ftciteseerx 2016-01-07T15:02:58Z Abstract. A large-scale view of °3 transport over the western North Atlantic Ocean (WNAO) in summer illustrates distinct sources of 0), and separate transport mechanisms are important at different vertical levels in the troposphere. The week-long period presented covers a sequence of 0) sondes released from Bermuda and encompasses two surface 0) events in the month-long NARE intensive. 0) and CO peaked at Chebogue Point on the evening of August 25 and after midnight on the morning of August 28. At Sable Island, peaks occurred during early morning of August 26 and late morning of August 28. These events occurred under W-SW winds associated with advancing lowpressure systems that transported anthropogenic pollutants over the WNAO. The concentrations dropped with the passage of a trough or a cold front. Evidence suggests the surface was occasionally isolated from polluted air during favorable transport with pollutants lifted in warm sector flow riding over a wedge of cool, thermodynamically stable air. In addition to surface °3 ' the °3-sonde profile over Bermuda on the morning of August 27 showed a deep layer of °3 from 6 to 12 km. Using back trajectories and two tracers (isentropic potential vorticity and water vapor), we illustrate that stratospheric ozone exchanged into the upper troposphere in conjunction with surface cyclogenesis was advected through the middle to upper troposphere over the midlatitudes with the potential to reach lower altitudes through subsidence in regions of anticyclonic motion. 1. Text North Atlantic Unknown
institution Open Polar
collection Unknown
op_collection_id ftciteseerx
language English
description Abstract. A large-scale view of °3 transport over the western North Atlantic Ocean (WNAO) in summer illustrates distinct sources of 0), and separate transport mechanisms are important at different vertical levels in the troposphere. The week-long period presented covers a sequence of 0) sondes released from Bermuda and encompasses two surface 0) events in the month-long NARE intensive. 0) and CO peaked at Chebogue Point on the evening of August 25 and after midnight on the morning of August 28. At Sable Island, peaks occurred during early morning of August 26 and late morning of August 28. These events occurred under W-SW winds associated with advancing lowpressure systems that transported anthropogenic pollutants over the WNAO. The concentrations dropped with the passage of a trough or a cold front. Evidence suggests the surface was occasionally isolated from polluted air during favorable transport with pollutants lifted in warm sector flow riding over a wedge of cool, thermodynamically stable air. In addition to surface °3 ' the °3-sonde profile over Bermuda on the morning of August 27 showed a deep layer of °3 from 6 to 12 km. Using back trajectories and two tracers (isentropic potential vorticity and water vapor), we illustrate that stratospheric ozone exchanged into the upper troposphere in conjunction with surface cyclogenesis was advected through the middle to upper troposphere over the midlatitudes with the potential to reach lower altitudes through subsidence in regions of anticyclonic motion. 1.
author2 The Pennsylvania State University CiteSeerX Archives
format Text
author J. S. Holloway
H. Levy Ii
S G. L. Forbes
M. Trainer
M. Buhr
spellingShingle J. S. Holloway
H. Levy Ii
S G. L. Forbes
M. Trainer
M. Buhr
Meteorological mechanisms for transporting 03 over the western North Atlantic Ocean:
author_facet J. S. Holloway
H. Levy Ii
S G. L. Forbes
M. Trainer
M. Buhr
author_sort J. S. Holloway
title Meteorological mechanisms for transporting 03 over the western North Atlantic Ocean:
title_short Meteorological mechanisms for transporting 03 over the western North Atlantic Ocean:
title_full Meteorological mechanisms for transporting 03 over the western North Atlantic Ocean:
title_fullStr Meteorological mechanisms for transporting 03 over the western North Atlantic Ocean:
title_full_unstemmed Meteorological mechanisms for transporting 03 over the western North Atlantic Ocean:
title_sort meteorological mechanisms for transporting 03 over the western north atlantic ocean:
url http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.143.6428
http://www.gfdl.noaa.gov/reference/bibliography/1996/jlm9601.pdf
genre North Atlantic
genre_facet North Atlantic
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http://www.gfdl.noaa.gov/reference/bibliography/1996/jlm9601.pdf
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