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From Discrete Gravity Survey Data to a High-resolution Gravity Field Representation in the Nordic-Baltic Region

  • Silja Märdla*
  • , Jonas Ågren
  • , Gabriel Strykowski
  • , Tõnis Oja
  • , Artu Ellmann
  • , René Forsberg
  • , Mirjam Bilker-Koivula
  • , Ove Omang
  • , Eimuntas Paršeliūnas
  • , Ivars Liepinš
  • , Jānis Kaminskis
  • *Corresponding author for this work
  • Tallinn University of Technology
  • Cadastral and Land Registration Authority
  • Technical University of Denmark
  • Estonian Land Board
  • Finnish Geospatial Research Institute
  • Norwegian Mapping Authority
  • Vilnius Gediminas Technical University
  • Latvian Geospatial Information Agency
  • Riga Technical University

Research output: Contribution to journalArticlepeer-review

24 Citations (Scopus)

Abstract

The deduction of a regularly spaced gravity anomaly grid from scattered survey data is studied, addressing mainly two aspects: reduction of gravity to anomalies and subsequent interpolation by various methods. The problem is illustrated in a heterogeneous study area and contrasting test areas including mountains, low terrains, and a marine area. Provided with realistic error estimates, Least Squares Collocation interpolation of Residual Terrain Model anomalies yields the highest quality gravity grid. In most cases, the Bouguer reduction and other interpolation methods tested are equally viable. However, spline-based interpolation should be avoided in marine areas with trackwise survey data.

Original languageEnglish
Pages (from-to)416-453
Number of pages38
JournalMarine Geodesy
Volume40
Issue number6
DOIs
Publication statusPublished - 2 Nov 2017
Externally publishedYes

Keywords

  • Bouguer anomaly
  • Nordic Geodetic Commission (NKG)
  • Residual Terrain Model (RTM) anomaly
  • gravity database
  • gridding
  • interpolation
  • regional geoid
  • residual gravity anomaly

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