Detection of stratospheric gravity waves using HIRDLS data

Temperature measurements from the HIRDLS instrument on NASA's Aura satellite are analysed for the purposes of detecting and studying internal gravity waves in the terrestrial stratosphere. A detailed description of the methodology used to obtain these data is given, including details of the ins...

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Bibliographic Details
Main Author: Wright, Corwin
Other Authors: Barnett, John J.
Published: University of Oxford 2010
Subjects:
520
Online Access:http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.526414
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spelling ndltd-bl.uk-oai-ethos.bl.uk-5264142015-03-20T04:35:24ZDetection of stratospheric gravity waves using HIRDLS dataWright, CorwinBarnett, John J.2010Temperature measurements from the HIRDLS instrument on NASA's Aura satellite are analysed for the purposes of detecting and studying internal gravity waves in the terrestrial stratosphere. A detailed description of the methodology used to obtain these data is given, including details of the instrument correction processes used to compensate for errors introduced by a blockage in the instrument optics. A short precis of the relevant theoretical considerations related to atmospheric gravity waves is then outlined. The thesis then discusses the use of the Stockwell (time-frequency) Transform for the detection of gravity waves in HIRDLS data, together with a detailed analysis of the limitations of this method, and the results obtained from this analysis are analysed by comparison to other instruments and climatology. It is concluded that the Stockwell Transform is an appropriate method for the analysis of the HIRDLS dataset, and that the results obtained are robust. We apply these results to analyse stratospheric gravity wave activity during the 2005/06 Arctic sudden stratospheric warming. By comparing the magnitude and form of the gravity wave results to local wind data obtained from ECMWF operational analyses, we conclude that a heavily deformed stratopause observed during this period by other instruments was most probably due to wind-based filtering of the gravity wave spectrum during this period.520Atmospheric,Oceanic,and Planetary physics : gravity waves : Arctic : planetary wavesUniversity of Oxfordhttp://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.526414http://ora.ox.ac.uk/objects/uuid:ef4aa65d-67c1-43ac-90de-1b5bda6c8230Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 520
Atmospheric,Oceanic,and Planetary physics : gravity waves : Arctic : planetary waves
spellingShingle 520
Atmospheric,Oceanic,and Planetary physics : gravity waves : Arctic : planetary waves
Wright, Corwin
Detection of stratospheric gravity waves using HIRDLS data
description Temperature measurements from the HIRDLS instrument on NASA's Aura satellite are analysed for the purposes of detecting and studying internal gravity waves in the terrestrial stratosphere. A detailed description of the methodology used to obtain these data is given, including details of the instrument correction processes used to compensate for errors introduced by a blockage in the instrument optics. A short precis of the relevant theoretical considerations related to atmospheric gravity waves is then outlined. The thesis then discusses the use of the Stockwell (time-frequency) Transform for the detection of gravity waves in HIRDLS data, together with a detailed analysis of the limitations of this method, and the results obtained from this analysis are analysed by comparison to other instruments and climatology. It is concluded that the Stockwell Transform is an appropriate method for the analysis of the HIRDLS dataset, and that the results obtained are robust. We apply these results to analyse stratospheric gravity wave activity during the 2005/06 Arctic sudden stratospheric warming. By comparing the magnitude and form of the gravity wave results to local wind data obtained from ECMWF operational analyses, we conclude that a heavily deformed stratopause observed during this period by other instruments was most probably due to wind-based filtering of the gravity wave spectrum during this period.
author2 Barnett, John J.
author_facet Barnett, John J.
Wright, Corwin
author Wright, Corwin
author_sort Wright, Corwin
title Detection of stratospheric gravity waves using HIRDLS data
title_short Detection of stratospheric gravity waves using HIRDLS data
title_full Detection of stratospheric gravity waves using HIRDLS data
title_fullStr Detection of stratospheric gravity waves using HIRDLS data
title_full_unstemmed Detection of stratospheric gravity waves using HIRDLS data
title_sort detection of stratospheric gravity waves using hirdls data
publisher University of Oxford
publishDate 2010
url http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.526414
work_keys_str_mv AT wrightcorwin detectionofstratosphericgravitywavesusinghirdlsdata
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