Water vapor heterogeneity related to tropopause folds over the North Atlantic revealed by airborne water vapor differential absorption lidar

Airborne differential absorption lidar (DIAL) measurements of tropospheric water vapor and aerosol/clouds are presented from transfers across the North Atlantic on 13–15 May and 16–18 June 2002. The intense dynamical activity over the Atlantic is reflected in complex structures like deep tropopause...

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Published in:Journal of Geophysical Research
Main Authors: Flentje, H., Dörnbrack, A., Ehret, G., Fix, A., Kiemle, C., Poberaj, G., Wirth, M.
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2005
Subjects:
Online Access:https://elib.dlr.de/77136/
https://elib.dlr.de/77136/1/2004JD004957.pdf
http://www.agu.org/pubs/crossref/2005/2004JD004957.shtml
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author Flentje, H.
Dörnbrack, A.
Ehret, G.
Fix, A.
Kiemle, C.
Poberaj, G.
Wirth, M.
author_facet Flentje, H.
Dörnbrack, A.
Ehret, G.
Fix, A.
Kiemle, C.
Poberaj, G.
Wirth, M.
author_sort Flentje, H.
collection Unknown
container_issue D3
container_title Journal of Geophysical Research
container_volume 110
description Airborne differential absorption lidar (DIAL) measurements of tropospheric water vapor and aerosol/clouds are presented from transfers across the North Atlantic on 13–15 May and 16–18 June 2002. The intense dynamical activity over the Atlantic is reflected in complex structures like deep tropopause folds, extended dry layers, and tilted aerosol filaments. Intrusions with H2O mixing ratios below 0.03 g kg−1 regularly develop along the storm track over intense cyclones and correspond to analyzed (European Centre for Medium-Range Weather Forecasts (ECMWF)) or simulated (MM5) potential vorticity anomalies. Sloping folds are typically 1 km thick in vertical profiles but on horizontal sections resemble long filaments with widths of a few hundred kilometers. Filaments of solid, roughly micron-sized particles occur inside and along the axes of the tropopause folds. The particles most likely originate in forest fires, from where they are injected to the lower stratosphere by deep convection and later on reenter the troposphere in developing baroclinic disturbances. Their laminar appearance indicates that these intrusions have not yet been mixed but are eroded on timescales significantly larger than a few days by stretching-thinning, stirring, and only finally, turbulent diffusion. MM5 mesoscale model simulations and, with less accuracy, also ECMWF analyses are capable of reproducing the dynamical structures associated with the observed dry intrusions. However, deep inside the intrusions where scales are small, even the MM5-simulated water vapor mixing ratios are more than twice those observed. The large dynamical range of water vapor mixing ratios (3 orders of magnitude) and large gradients (>2 g kg−1 km−1 at the intrusions' boundaries) constitute a challenge for future space-borne water vapor DIAL systems.
format Article in Journal/Newspaper
genre North Atlantic
genre_facet North Atlantic
id ftdlr:oai:elib.dlr.de:77136
institution Open Polar
language English
op_collection_id ftdlr
op_doi https://doi.org/10.1029/2004JD004957
op_relation https://elib.dlr.de/77136/1/2004JD004957.pdf
Flentje, H. und Dörnbrack, A. und Ehret, G. und Fix, A. und Kiemle, C. und Poberaj, G. und Wirth, M. (2005) Water vapor heterogeneity related to tropopause folds over the North Atlantic revealed by airborne water vapor differential absorption lidar. Journal of Geophysical Research, 110 (D03115), Seiten 1-17. Wiley. doi:10.1029/2004JD004957 <https://doi.org/10.1029/2004JD004957>.
publishDate 2005
publisher Wiley
record_format openpolar
spelling ftdlr:oai:elib.dlr.de:77136 2025-06-15T14:42:59+00:00 Water vapor heterogeneity related to tropopause folds over the North Atlantic revealed by airborne water vapor differential absorption lidar Flentje, H. Dörnbrack, A. Ehret, G. Fix, A. Kiemle, C. Poberaj, G. Wirth, M. 2005 application/pdf https://elib.dlr.de/77136/ https://elib.dlr.de/77136/1/2004JD004957.pdf http://www.agu.org/pubs/crossref/2005/2004JD004957.shtml en eng Wiley https://elib.dlr.de/77136/1/2004JD004957.pdf Flentje, H. und Dörnbrack, A. und Ehret, G. und Fix, A. und Kiemle, C. und Poberaj, G. und Wirth, M. (2005) Water vapor heterogeneity related to tropopause folds over the North Atlantic revealed by airborne water vapor differential absorption lidar. Journal of Geophysical Research, 110 (D03115), Seiten 1-17. Wiley. doi:10.1029/2004JD004957 <https://doi.org/10.1029/2004JD004957>. Lidar Wolkenphysik und Verkehrsmeteorologie Zeitschriftenbeitrag PeerReviewed 2005 ftdlr https://doi.org/10.1029/2004JD004957 2025-06-04T04:58:09Z Airborne differential absorption lidar (DIAL) measurements of tropospheric water vapor and aerosol/clouds are presented from transfers across the North Atlantic on 13–15 May and 16–18 June 2002. The intense dynamical activity over the Atlantic is reflected in complex structures like deep tropopause folds, extended dry layers, and tilted aerosol filaments. Intrusions with H2O mixing ratios below 0.03 g kg−1 regularly develop along the storm track over intense cyclones and correspond to analyzed (European Centre for Medium-Range Weather Forecasts (ECMWF)) or simulated (MM5) potential vorticity anomalies. Sloping folds are typically 1 km thick in vertical profiles but on horizontal sections resemble long filaments with widths of a few hundred kilometers. Filaments of solid, roughly micron-sized particles occur inside and along the axes of the tropopause folds. The particles most likely originate in forest fires, from where they are injected to the lower stratosphere by deep convection and later on reenter the troposphere in developing baroclinic disturbances. Their laminar appearance indicates that these intrusions have not yet been mixed but are eroded on timescales significantly larger than a few days by stretching-thinning, stirring, and only finally, turbulent diffusion. MM5 mesoscale model simulations and, with less accuracy, also ECMWF analyses are capable of reproducing the dynamical structures associated with the observed dry intrusions. However, deep inside the intrusions where scales are small, even the MM5-simulated water vapor mixing ratios are more than twice those observed. The large dynamical range of water vapor mixing ratios (3 orders of magnitude) and large gradients (>2 g kg−1 km−1 at the intrusions' boundaries) constitute a challenge for future space-borne water vapor DIAL systems. Article in Journal/Newspaper North Atlantic Unknown Journal of Geophysical Research 110 D3
spellingShingle Lidar
Wolkenphysik und Verkehrsmeteorologie
Flentje, H.
Dörnbrack, A.
Ehret, G.
Fix, A.
Kiemle, C.
Poberaj, G.
Wirth, M.
Water vapor heterogeneity related to tropopause folds over the North Atlantic revealed by airborne water vapor differential absorption lidar
title Water vapor heterogeneity related to tropopause folds over the North Atlantic revealed by airborne water vapor differential absorption lidar
title_full Water vapor heterogeneity related to tropopause folds over the North Atlantic revealed by airborne water vapor differential absorption lidar
title_fullStr Water vapor heterogeneity related to tropopause folds over the North Atlantic revealed by airborne water vapor differential absorption lidar
title_full_unstemmed Water vapor heterogeneity related to tropopause folds over the North Atlantic revealed by airborne water vapor differential absorption lidar
title_short Water vapor heterogeneity related to tropopause folds over the North Atlantic revealed by airborne water vapor differential absorption lidar
title_sort water vapor heterogeneity related to tropopause folds over the north atlantic revealed by airborne water vapor differential absorption lidar
topic Lidar
Wolkenphysik und Verkehrsmeteorologie
topic_facet Lidar
Wolkenphysik und Verkehrsmeteorologie
url https://elib.dlr.de/77136/
https://elib.dlr.de/77136/1/2004JD004957.pdf
http://www.agu.org/pubs/crossref/2005/2004JD004957.shtml