Postglacial gravity change in Fennoscandia—three decades of repeated absolute gravity observations

For the first time, we present a complete, processed compilation of all repeated absolute gravity (AG) observations in the Fennoscandian postglacial land uplift area and assess their ability to accurately describe the secular gravity change, induced by glacial isostatic adjustment (GIA). The data se...

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Main Authors: Olsson, Per-Anders, Breili, Kristian, Ophaug, Vegard, Steffen, Holger, Bilker-Koivula, Mirjam, Nielsen, Emil, Oja, Tõnis, Timmen, Ludger
Format: Article in Journal/Newspaper
Language:English
Published: Oxford : Oxford University Press/ The Royal Astronomical Society 2019
Subjects:
Online Access:https://dx.doi.org/10.15488/11167
https://www.repo.uni-hannover.de/handle/123456789/11253
id ftdatacite:10.15488/11167
record_format openpolar
spelling ftdatacite:10.15488/11167 2023-05-15T16:11:41+02:00 Postglacial gravity change in Fennoscandia—three decades of repeated absolute gravity observations Olsson, Per-Anders Breili, Kristian Ophaug, Vegard Steffen, Holger Bilker-Koivula, Mirjam Nielsen, Emil Oja, Tõnis Timmen, Ludger 2019 https://dx.doi.org/10.15488/11167 https://www.repo.uni-hannover.de/handle/123456789/11253 en eng Oxford : Oxford University Press/ The Royal Astronomical Society Creative Commons Attribution 4.0 International CC BY 4.0 Unported https://creativecommons.org/licenses/by/4.0/legalcode cc-by-4.0 CC-BY Geodetic instrumentation Reference systems Time variable gravity Europe Dynamics of lithosphere and mantle Dewey Decimal Classification500 | Naturwissenschaften550 | Geowissenschaften Other CreativeWork article 2019 ftdatacite https://doi.org/10.15488/11167 2021-11-05T12:55:41Z For the first time, we present a complete, processed compilation of all repeated absolute gravity (AG) observations in the Fennoscandian postglacial land uplift area and assess their ability to accurately describe the secular gravity change, induced by glacial isostatic adjustment (GIA). The data set spans over more than three decades and consists of 688 separate observations at 59 stations. Ten different organizations have contributed with measurements using 14 different instruments. The work was coordinated by the Nordic Geodetic Commission (NKG). Representatives from each country collected and processed data from their country, respectively, and all data were then merged to one data set. Instrumental biases are considered and presented in terms of results from international comparisons of absolute gravimeters. From this data set, gravity rates of change (⁠g˙⁠) are estimated for all stations with more than two observations and a timespan larger than 2 yr. The observed rates are compared to predicted rates from a global GIA model as well as the state of the art semi-empirical land uplift model for Fennoscandia, NKG2016LU. Linear relations between observed g˙ and the land uplift, h˙ (NKG2016LU) are estimated from the AG observations by means of weighted least squares adjustment as well as weighted orthogonal distance regression. The empirical relations are not significantly different from the modelled, geophysical relation g˙=0.03−0.163(±0.016)h˙⁠. We also present a g˙-model for the whole Fennoscandian land uplift region. At many stations, the observational estimates of g˙ still suffer from few observations and/or unmodelled environmental effects (e.g. local hydrology). We therefore argue that, at present, the best predictions of GIA-induced gravity rate of change in Fennoscandia are achieved by means of the NKG2016LU land uplift model, together with the geophysical relation between g˙ and h˙⁠. Article in Journal/Newspaper Fennoscandia Fennoscandian DataCite Metadata Store (German National Library of Science and Technology) Dewey ENVELOPE(-64.320,-64.320,-65.907,-65.907)
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language English
topic Geodetic instrumentation
Reference systems
Time variable gravity
Europe
Dynamics of lithosphere and mantle
Dewey Decimal Classification500 | Naturwissenschaften550 | Geowissenschaften
spellingShingle Geodetic instrumentation
Reference systems
Time variable gravity
Europe
Dynamics of lithosphere and mantle
Dewey Decimal Classification500 | Naturwissenschaften550 | Geowissenschaften
Olsson, Per-Anders
Breili, Kristian
Ophaug, Vegard
Steffen, Holger
Bilker-Koivula, Mirjam
Nielsen, Emil
Oja, Tõnis
Timmen, Ludger
Postglacial gravity change in Fennoscandia—three decades of repeated absolute gravity observations
topic_facet Geodetic instrumentation
Reference systems
Time variable gravity
Europe
Dynamics of lithosphere and mantle
Dewey Decimal Classification500 | Naturwissenschaften550 | Geowissenschaften
description For the first time, we present a complete, processed compilation of all repeated absolute gravity (AG) observations in the Fennoscandian postglacial land uplift area and assess their ability to accurately describe the secular gravity change, induced by glacial isostatic adjustment (GIA). The data set spans over more than three decades and consists of 688 separate observations at 59 stations. Ten different organizations have contributed with measurements using 14 different instruments. The work was coordinated by the Nordic Geodetic Commission (NKG). Representatives from each country collected and processed data from their country, respectively, and all data were then merged to one data set. Instrumental biases are considered and presented in terms of results from international comparisons of absolute gravimeters. From this data set, gravity rates of change (⁠g˙⁠) are estimated for all stations with more than two observations and a timespan larger than 2 yr. The observed rates are compared to predicted rates from a global GIA model as well as the state of the art semi-empirical land uplift model for Fennoscandia, NKG2016LU. Linear relations between observed g˙ and the land uplift, h˙ (NKG2016LU) are estimated from the AG observations by means of weighted least squares adjustment as well as weighted orthogonal distance regression. The empirical relations are not significantly different from the modelled, geophysical relation g˙=0.03−0.163(±0.016)h˙⁠. We also present a g˙-model for the whole Fennoscandian land uplift region. At many stations, the observational estimates of g˙ still suffer from few observations and/or unmodelled environmental effects (e.g. local hydrology). We therefore argue that, at present, the best predictions of GIA-induced gravity rate of change in Fennoscandia are achieved by means of the NKG2016LU land uplift model, together with the geophysical relation between g˙ and h˙⁠.
format Article in Journal/Newspaper
author Olsson, Per-Anders
Breili, Kristian
Ophaug, Vegard
Steffen, Holger
Bilker-Koivula, Mirjam
Nielsen, Emil
Oja, Tõnis
Timmen, Ludger
author_facet Olsson, Per-Anders
Breili, Kristian
Ophaug, Vegard
Steffen, Holger
Bilker-Koivula, Mirjam
Nielsen, Emil
Oja, Tõnis
Timmen, Ludger
author_sort Olsson, Per-Anders
title Postglacial gravity change in Fennoscandia—three decades of repeated absolute gravity observations
title_short Postglacial gravity change in Fennoscandia—three decades of repeated absolute gravity observations
title_full Postglacial gravity change in Fennoscandia—three decades of repeated absolute gravity observations
title_fullStr Postglacial gravity change in Fennoscandia—three decades of repeated absolute gravity observations
title_full_unstemmed Postglacial gravity change in Fennoscandia—three decades of repeated absolute gravity observations
title_sort postglacial gravity change in fennoscandia—three decades of repeated absolute gravity observations
publisher Oxford : Oxford University Press/ The Royal Astronomical Society
publishDate 2019
url https://dx.doi.org/10.15488/11167
https://www.repo.uni-hannover.de/handle/123456789/11253
long_lat ENVELOPE(-64.320,-64.320,-65.907,-65.907)
geographic Dewey
geographic_facet Dewey
genre Fennoscandia
Fennoscandian
genre_facet Fennoscandia
Fennoscandian
op_rights Creative Commons Attribution 4.0 International
CC BY 4.0 Unported
https://creativecommons.org/licenses/by/4.0/legalcode
cc-by-4.0
op_rightsnorm CC-BY
op_doi https://doi.org/10.15488/11167
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