Comparing high-latitude thermospheric winds from Fabry–Perot interferometer (FPI) and challenging mini-satellite payload (CHAMP) accelerometer measurements

It is generally assumed that horizontal wind velocities are independent of height above the F1 region (> 300 km) due to the large molecular viscosity of the upper thermosphere. This assumption is used to compare two completely different methods of thermospheric neutral wind observation, using two...

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Published in:Annales Geophysicae
Main Authors: Aruliah, Anasuya, Förster, Matthias, Hood, Rosie, McWhirter, Ian, Doornbos, Eelco
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus Publications 2019
Subjects:
Online Access:https://doi.org/10.5194/angeo-37-1095-2019
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author Aruliah, Anasuya
Förster, Matthias
Hood, Rosie
McWhirter, Ian
Doornbos, Eelco
author_facet Aruliah, Anasuya
Förster, Matthias
Hood, Rosie
McWhirter, Ian
Doornbos, Eelco
author_sort Aruliah, Anasuya
collection Niedersächsisches Online-Archiv NOA
container_issue 6
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container_title Annales Geophysicae
container_volume 37
description It is generally assumed that horizontal wind velocities are independent of height above the F1 region (> 300 km) due to the large molecular viscosity of the upper thermosphere. This assumption is used to compare two completely different methods of thermospheric neutral wind observation, using two distinct locations in the high-latitude Northern Hemisphere. The measurements are from ground-based Fabry–Perot interferometers (FPI) and from in situ accelerometer measurements onboard the challenging mini-satellite payload (CHAMP) satellite, which was in a near-polar orbit. The University College London (UCL) Kiruna Esrange Optical Platform Site (KEOPS) FPI is located in the vicinity of the auroral oval at the ESRANGE site near Kiruna, Sweden (67.8∘ N, 20.4∘ E). The UCL Longyearbyen FPI is a polar cap site, located at the Kjell Henriksen Observatory on Svalbard (78.1∘ N, 16.0∘ E). The comparison is carried out in a statistical sense, comparing a longer time series obtained during night-time hours in the winter months (DOY 300–65) with overflights of the CHAMP satellite between 2001 and 2007 over the observational sites, within ±2∘ latitude (±230 km horizontal range). The FPI is assumed to measure the line-of-sight winds at a height of ∼240 km, i.e. the peak emission height of the atomic oxygen 630.0 nm emission. The cross-track winds are derived from state-of-the-art precision accelerometer measurements at altitudes between ∼450 km (in 2001) and ∼350 km (in 2007), i.e. 100–200 km above the FPI wind observations. We show that CHAMP wind values at high latitudes are typically 1.5 to 2 times larger than FPI winds. In addition to testing the consistency of the different measurement approaches, the study aims to clarify the effects of viscosity on the height dependence of thermospheric winds.
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https://doi.org/10.5194/angeo-37-1095-2019
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spelling ftnonlinearchiv:oai:noa.gwlb.de:cop_mods_00049740 2025-01-16T22:54:42+00:00 Comparing high-latitude thermospheric winds from Fabry–Perot interferometer (FPI) and challenging mini-satellite payload (CHAMP) accelerometer measurements Aruliah, Anasuya Förster, Matthias Hood, Rosie McWhirter, Ian Doornbos, Eelco 2019-12 electronic https://doi.org/10.5194/angeo-37-1095-2019 https://noa.gwlb.de/receive/cop_mods_00049740 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00049359/angeo-37-1095-2019.pdf https://angeo.copernicus.org/articles/37/1095/2019/angeo-37-1095-2019.pdf eng eng Copernicus Publications Annales Geophysicae -- http://www.bibliothek.uni-regensburg.de/ezeit/?1458425 -- https://www.ann-geophys.net/ -- https://www.ann-geophys.net/volumes.html -- http://link.springer.com/journal/585 -- 1432-0576 https://doi.org/10.5194/angeo-37-1095-2019 https://noa.gwlb.de/receive/cop_mods_00049740 https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00049359/angeo-37-1095-2019.pdf https://angeo.copernicus.org/articles/37/1095/2019/angeo-37-1095-2019.pdf https://creativecommons.org/licenses/by/4.0/ uneingeschränkt info:eu-repo/semantics/openAccess CC-BY article Verlagsveröffentlichung article Text doc-type:article 2019 ftnonlinearchiv https://doi.org/10.5194/angeo-37-1095-2019 2022-02-08T22:37:10Z It is generally assumed that horizontal wind velocities are independent of height above the F1 region (> 300 km) due to the large molecular viscosity of the upper thermosphere. This assumption is used to compare two completely different methods of thermospheric neutral wind observation, using two distinct locations in the high-latitude Northern Hemisphere. The measurements are from ground-based Fabry–Perot interferometers (FPI) and from in situ accelerometer measurements onboard the challenging mini-satellite payload (CHAMP) satellite, which was in a near-polar orbit. The University College London (UCL) Kiruna Esrange Optical Platform Site (KEOPS) FPI is located in the vicinity of the auroral oval at the ESRANGE site near Kiruna, Sweden (67.8∘ N, 20.4∘ E). The UCL Longyearbyen FPI is a polar cap site, located at the Kjell Henriksen Observatory on Svalbard (78.1∘ N, 16.0∘ E). The comparison is carried out in a statistical sense, comparing a longer time series obtained during night-time hours in the winter months (DOY 300–65) with overflights of the CHAMP satellite between 2001 and 2007 over the observational sites, within ±2∘ latitude (±230 km horizontal range). The FPI is assumed to measure the line-of-sight winds at a height of ∼240 km, i.e. the peak emission height of the atomic oxygen 630.0 nm emission. The cross-track winds are derived from state-of-the-art precision accelerometer measurements at altitudes between ∼450 km (in 2001) and ∼350 km (in 2007), i.e. 100–200 km above the FPI wind observations. We show that CHAMP wind values at high latitudes are typically 1.5 to 2 times larger than FPI winds. In addition to testing the consistency of the different measurement approaches, the study aims to clarify the effects of viscosity on the height dependence of thermospheric winds. Article in Journal/Newspaper Kiruna Longyearbyen Svalbard Niedersächsisches Online-Archiv NOA Esrange ENVELOPE(21.117,21.117,67.883,67.883) Kiruna Longyearbyen Svalbard Annales Geophysicae 37 6 1095 1120
spellingShingle article
Verlagsveröffentlichung
Aruliah, Anasuya
Förster, Matthias
Hood, Rosie
McWhirter, Ian
Doornbos, Eelco
Comparing high-latitude thermospheric winds from Fabry–Perot interferometer (FPI) and challenging mini-satellite payload (CHAMP) accelerometer measurements
title Comparing high-latitude thermospheric winds from Fabry–Perot interferometer (FPI) and challenging mini-satellite payload (CHAMP) accelerometer measurements
title_full Comparing high-latitude thermospheric winds from Fabry–Perot interferometer (FPI) and challenging mini-satellite payload (CHAMP) accelerometer measurements
title_fullStr Comparing high-latitude thermospheric winds from Fabry–Perot interferometer (FPI) and challenging mini-satellite payload (CHAMP) accelerometer measurements
title_full_unstemmed Comparing high-latitude thermospheric winds from Fabry–Perot interferometer (FPI) and challenging mini-satellite payload (CHAMP) accelerometer measurements
title_short Comparing high-latitude thermospheric winds from Fabry–Perot interferometer (FPI) and challenging mini-satellite payload (CHAMP) accelerometer measurements
title_sort comparing high-latitude thermospheric winds from fabry–perot interferometer (fpi) and challenging mini-satellite payload (champ) accelerometer measurements
topic article
Verlagsveröffentlichung
topic_facet article
Verlagsveröffentlichung
url https://doi.org/10.5194/angeo-37-1095-2019
https://noa.gwlb.de/receive/cop_mods_00049740
https://noa.gwlb.de/servlets/MCRFileNodeServlet/cop_derivate_00049359/angeo-37-1095-2019.pdf
https://angeo.copernicus.org/articles/37/1095/2019/angeo-37-1095-2019.pdf