A Set of Geophysical Fields for Modeling of the Lithosphere Structure and Dynamics in the Russian Arctic Zone

Author:

Soloviev Anatoly12ORCID,Petrunin Alexey12ORCID,Gvozdik Sofia13ORCID,Sidorov Roman1ORCID

Affiliation:

1. Geophysical Center of the Russian Academy of Sciences (GC RAS), 119296 Moscow, Russia

2. Schmidt Institute of Physics of the Earth of the Russian Academy of Sciences (IPE RAS), 123242 Moscow, Russia

3. Faculty of Geology, Lomonosov Moscow State University (MSU), 119234 Moscow, Russia

Abstract

This paper presents a set of various geological and geophysical data for the Arctic zone, including some detailed models for the eastern part of the Russian Arctic zone. This hard-to-access territory has a complex geological structure, which is poorly studied by direct geophysical methods. Therefore, these data can be used in an integrative analysis for different purposes. These are the gravity field, heat flow, and various seismic tomography models. The gravity field data include several reductions calculated during our preceding studies, which are more appropriate for the study of the Earth’s interiors than the initial free air anomalies. Specifically, these are the Bouguer, isostatic, and decompensative gravity anomalies. A surface heat flow map included in the dataset is based on a joint inversion of multiple geophysical data constrained by the observations from the International Heat Flow Commission catalog. Available seismic tomography models were analyzed to select the best one for further investigation. We provide the models for the sedimentary cover and the Moho depth, which are significantly improved compared to the existing ones. The database provides a basis for qualitative and quantitative analysis of the region.

Funder

Russian Science Foundation

Publisher

MDPI AG

Subject

Information Systems and Management,Computer Science Applications,Information Systems

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