Investigation of gravity waves using horizontally resolved radial velocity measurements

The Middle Atmosphere Alomar Radar System (MAARSY) on the island of Andøya in Northern Norway (69.3� N, 16.0� E) observes polar mesospheric summer echoes (PMSE). These echoes are used as tracers of atmospheric dynamics to investigate the horizontal wind variability at high temporal and spatial resol...

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Published in:Atmospheric Measurement Techniques
Main Authors: Stober, G., Sommer, S., Rapp, Markus, Latteck, R.
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2013
Subjects:
Online Access:https://elib.dlr.de/85369/
http://www.atmos-meas-tech.net/6/2893/2013/amt-6-2893-2013.pdf
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author Stober, G.
Sommer, S.
Rapp, Markus
Latteck, R.
author_facet Stober, G.
Sommer, S.
Rapp, Markus
Latteck, R.
author_sort Stober, G.
collection Unknown
container_issue 10
container_start_page 2893
container_title Atmospheric Measurement Techniques
container_volume 6
description The Middle Atmosphere Alomar Radar System (MAARSY) on the island of Andøya in Northern Norway (69.3� N, 16.0� E) observes polar mesospheric summer echoes (PMSE). These echoes are used as tracers of atmospheric dynamics to investigate the horizontal wind variability at high temporal and spatial resolution. MAARSY has the capability of pulse-to-pulse beam steering allowing for systematic scanning experiments to study the horizontal structure of the backscatterers as well as to measure the radial velocities for each beam direction. Here we present a method to retrieve gravity wave parameters from these horizontally resolved radial wind variations by applying velocity azimuth display and volume velocity processing. Based on the observations a detailed comparison of the two wind analysis techniques is carried out in order to determine the zonal and meridional wind as well as to measure first-order inhomogeneities. Further, we demonstrate the possibility to resolve the horizontal wave properties, e.g., horizontal wavelength, phase velocity and propagation direction. The robustness of the estimated gravity wave parameters is tested by a simple atmospheric model.
format Article in Journal/Newspaper
genre Andøya
Northern Norway
genre_facet Andøya
Northern Norway
geographic Norway
Andøya
Alomar
geographic_facet Norway
Andøya
Alomar
id ftdlr:oai:elib.dlr.de:85369
institution Open Polar
language English
long_lat ENVELOPE(13.982,13.982,68.185,68.185)
ENVELOPE(-67.083,-67.083,-68.133,-68.133)
op_collection_id ftdlr
op_container_end_page 2905
op_doi https://doi.org/10.5194/amt-6-2893-2013
op_relation https://elib.dlr.de/85369/1/Rapp-amt-6-2893-2013.pdf
Stober, G. und Sommer, S. und Rapp, Markus und Latteck, R. (2013) Investigation of gravity waves using horizontally resolved radial velocity measurements. Atmospheric Measurement Techniques, 6, Seiten 2893-2905. Copernicus Publications. doi:10.5194/amt-6-2893-2013 <https://doi.org/10.5194/amt-6-2893-2013>. ISSN 1867-1381.
publishDate 2013
publisher Copernicus Publications
record_format openpolar
spelling ftdlr:oai:elib.dlr.de:85369 2025-06-15T14:07:09+00:00 Investigation of gravity waves using horizontally resolved radial velocity measurements Stober, G. Sommer, S. Rapp, Markus Latteck, R. 2013 application/pdf https://elib.dlr.de/85369/ http://www.atmos-meas-tech.net/6/2893/2013/amt-6-2893-2013.pdf en eng Copernicus Publications https://elib.dlr.de/85369/1/Rapp-amt-6-2893-2013.pdf Stober, G. und Sommer, S. und Rapp, Markus und Latteck, R. (2013) Investigation of gravity waves using horizontally resolved radial velocity measurements. Atmospheric Measurement Techniques, 6, Seiten 2893-2905. Copernicus Publications. doi:10.5194/amt-6-2893-2013 <https://doi.org/10.5194/amt-6-2893-2013>. ISSN 1867-1381. Institut für Physik der Atmosphäre Zeitschriftenbeitrag PeerReviewed 2013 ftdlr https://doi.org/10.5194/amt-6-2893-2013 2025-06-04T04:58:04Z The Middle Atmosphere Alomar Radar System (MAARSY) on the island of Andøya in Northern Norway (69.3� N, 16.0� E) observes polar mesospheric summer echoes (PMSE). These echoes are used as tracers of atmospheric dynamics to investigate the horizontal wind variability at high temporal and spatial resolution. MAARSY has the capability of pulse-to-pulse beam steering allowing for systematic scanning experiments to study the horizontal structure of the backscatterers as well as to measure the radial velocities for each beam direction. Here we present a method to retrieve gravity wave parameters from these horizontally resolved radial wind variations by applying velocity azimuth display and volume velocity processing. Based on the observations a detailed comparison of the two wind analysis techniques is carried out in order to determine the zonal and meridional wind as well as to measure first-order inhomogeneities. Further, we demonstrate the possibility to resolve the horizontal wave properties, e.g., horizontal wavelength, phase velocity and propagation direction. The robustness of the estimated gravity wave parameters is tested by a simple atmospheric model. Article in Journal/Newspaper Andøya Northern Norway Unknown Norway Andøya ENVELOPE(13.982,13.982,68.185,68.185) Alomar ENVELOPE(-67.083,-67.083,-68.133,-68.133) Atmospheric Measurement Techniques 6 10 2893 2905
spellingShingle Institut für Physik der Atmosphäre
Stober, G.
Sommer, S.
Rapp, Markus
Latteck, R.
Investigation of gravity waves using horizontally resolved radial velocity measurements
title Investigation of gravity waves using horizontally resolved radial velocity measurements
title_full Investigation of gravity waves using horizontally resolved radial velocity measurements
title_fullStr Investigation of gravity waves using horizontally resolved radial velocity measurements
title_full_unstemmed Investigation of gravity waves using horizontally resolved radial velocity measurements
title_short Investigation of gravity waves using horizontally resolved radial velocity measurements
title_sort investigation of gravity waves using horizontally resolved radial velocity measurements
topic Institut für Physik der Atmosphäre
topic_facet Institut für Physik der Atmosphäre
url https://elib.dlr.de/85369/
http://www.atmos-meas-tech.net/6/2893/2013/amt-6-2893-2013.pdf