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Journal Article

Reduction of apparent temporal variations of tidal parameters by a proper local response model

Adam Ciesielski; Thomas Forbriger; Walter Zürn; Andreas Rietbrock
Journal of Geodesy · Vol. 97, Issue 9 · 2023

Abstract

We describe a new harmonic tidal analysis method, which constrains the solution to be near a reference model. This regularization stabilizes the linear regression, allowing us to infer model parameters for each tidal harmonic. This overcomes the need to create a priori groupings of harmonics. The inversion is done iteratively by adjusting the reference model to reduce the data misfit. The frequency dependence of the solution is thus data-driven. We find models for the different spherical degrees independently. Our procedure allows narrow-band variations of the tidal admittance. We test the hypothesis that some of the temporal variations of tidal parameters found in previous studies were caused by inappropriate body tide models in combination with a priori wave grouping. We determine a local response model from 11.5 years of data recorded by the superconducting gravimeter SG056 at Black Forest Observatory (BFO, Schiltach). Using this as an a priori model in a non-regularized moving window analysis of wave groups composed from summed harmonics, we find that periodic variations of groups M 1 , K 1 , $$\mu $$ μ 2 , N 2 , L 2 , and S 2 are reduced by up to a factor of 7 compared to earlier studies. Some variations previously seen in the M 2 group are captured as well.

Bibliographic Information

JournalJournal of Geodesy
PublisherSpringer
Publication Date2023-09-01
Publication Year2023
Volume97
Issue9
Document TypeJournal Article
Print ISSN0949-7714
eISSN1432-1394
DOI10.1007/s00190-023-01770-w

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NARA Access Coverage1976-01-01~Current
Journal Homepagehttps://www.springer.com/journal/190
Publisher PageOpen Publisher Page
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