A harmonic spline magnetic main field model for Southern Africa combining ground and satellite data to describe the evolution of the South Atlantic Anomaly in this region between 2005 and 2010

Abstract CHAMP satellite and relatively densely spaced ground-based data measured over southern Africa between 2005 and 2010 are combined in a new regional, harmonic spline based, core field model. This new SACFM-2 model is compared to the regional SARM model, which is based only on satellite data,...

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Main Authors: Emmanuel Nahayo, Pieter B. Kotzé, Monika Korte, Susan J. Webb
Format: Article
Language:English
Published: SpringerOpen 2018-02-01
Series:Earth, Planets and Space
Subjects:
Online Access:http://link.springer.com/article/10.1186/s40623-018-0796-6
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spelling doaj-df4be8cfc860437da3b1f220cd1a3e992020-11-24T23:47:27ZengSpringerOpenEarth, Planets and Space1880-59812018-02-0170111710.1186/s40623-018-0796-6A harmonic spline magnetic main field model for Southern Africa combining ground and satellite data to describe the evolution of the South Atlantic Anomaly in this region between 2005 and 2010Emmanuel Nahayo0Pieter B. Kotzé1Monika Korte2Susan J. Webb3South African National Space Agency (SANSA) Space ScienceSouth African National Space Agency (SANSA) Space ScienceHelmholtz-Zentrum Potsdam, Deutsches GeoForschungsZentrum-GFZUniversity of the WitwatersrandAbstract CHAMP satellite and relatively densely spaced ground-based data measured over southern Africa between 2005 and 2010 are combined in a new regional, harmonic spline based, core field model. This new SACFM-2 model is compared to the regional SARM model, which is based only on satellite data, and the global CHAOS-6 model. The results agree well in the vertical (Z) component, with somewhat larger differences in the horizontal components. The Z component and total intensity F are used to investigate the evolution of the South Atlantic Anomaly in this region. The computed maps of main field of the Z component and total intensity F show a steady decrease in the field over the years during the study period, indicating the evolution of the South Atlantic Anomaly over southern Africa and suggesting an increase in the area of this feature.http://link.springer.com/article/10.1186/s40623-018-0796-6Harmonic splinesGeomagnetic dataSecular variationSouth Atlantic Anomaly
collection DOAJ
language English
format Article
sources DOAJ
author Emmanuel Nahayo
Pieter B. Kotzé
Monika Korte
Susan J. Webb
spellingShingle Emmanuel Nahayo
Pieter B. Kotzé
Monika Korte
Susan J. Webb
A harmonic spline magnetic main field model for Southern Africa combining ground and satellite data to describe the evolution of the South Atlantic Anomaly in this region between 2005 and 2010
Earth, Planets and Space
Harmonic splines
Geomagnetic data
Secular variation
South Atlantic Anomaly
author_facet Emmanuel Nahayo
Pieter B. Kotzé
Monika Korte
Susan J. Webb
author_sort Emmanuel Nahayo
title A harmonic spline magnetic main field model for Southern Africa combining ground and satellite data to describe the evolution of the South Atlantic Anomaly in this region between 2005 and 2010
title_short A harmonic spline magnetic main field model for Southern Africa combining ground and satellite data to describe the evolution of the South Atlantic Anomaly in this region between 2005 and 2010
title_full A harmonic spline magnetic main field model for Southern Africa combining ground and satellite data to describe the evolution of the South Atlantic Anomaly in this region between 2005 and 2010
title_fullStr A harmonic spline magnetic main field model for Southern Africa combining ground and satellite data to describe the evolution of the South Atlantic Anomaly in this region between 2005 and 2010
title_full_unstemmed A harmonic spline magnetic main field model for Southern Africa combining ground and satellite data to describe the evolution of the South Atlantic Anomaly in this region between 2005 and 2010
title_sort harmonic spline magnetic main field model for southern africa combining ground and satellite data to describe the evolution of the south atlantic anomaly in this region between 2005 and 2010
publisher SpringerOpen
series Earth, Planets and Space
issn 1880-5981
publishDate 2018-02-01
description Abstract CHAMP satellite and relatively densely spaced ground-based data measured over southern Africa between 2005 and 2010 are combined in a new regional, harmonic spline based, core field model. This new SACFM-2 model is compared to the regional SARM model, which is based only on satellite data, and the global CHAOS-6 model. The results agree well in the vertical (Z) component, with somewhat larger differences in the horizontal components. The Z component and total intensity F are used to investigate the evolution of the South Atlantic Anomaly in this region. The computed maps of main field of the Z component and total intensity F show a steady decrease in the field over the years during the study period, indicating the evolution of the South Atlantic Anomaly over southern Africa and suggesting an increase in the area of this feature.
topic Harmonic splines
Geomagnetic data
Secular variation
South Atlantic Anomaly
url http://link.springer.com/article/10.1186/s40623-018-0796-6
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