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[SCI]Interpretation of gravity and magnetic data with geological constraints for 3D structure of the Thuringian Basin, Germany 时间:2017-03-20

Interpretation of gravity and magnetic data with geological constraints for 3D structure of the Thuringian Basin, Germany

作者:Prutkin, I (Prutkin, Ilya)[ 1 ] ; Vajda, P (Vajda, Peter)[ 2 ] ; Jahr, T (Jahr, Thomas)[ 1 ] ; Bleibinhaus, F (Bleibinhaus, Florian)[ 1 ] ; Novak, P (Novak, Pavel)[ 3 ] ; Tenzer, R (Tenzer, Robert)[ 4 ]

JOURNAL OF APPLIED GEOPHYSICS

卷: 136 页: 35-41

DOI: 10.1016/j.jappgeo.2016.10.039

出版年: JAN 2017

摘要

We apply a novel method for the separation of potential field sources and their 3D inversion at the regional study area of Thuringian Basin in central Germany. The gravity and magnetic data are separated into long, medium and short wavelengths and then inverted separately. The main goal is to study uniqueness of the solution and its stability in all numerical steps of the interpretation process and to demonstrate, how geological constraints can diminish the degree of non-uniqueness by the interpretation of the gravity and magnetic anomalies. Our numerical experiments with medium wavelengths reveal that if we explain negative anomalies with the topography of near-surface layers, the obtained solution is not supported by borehole data. These negative anomalies are thus explained by restricted bodies (granitic intrusions) at the depths from 4 down to 10 km. These bodies are located above a density interface with topography at the depth of approximately 10 km. The 3D inversion of magnetic data (at short wavelengths) allows investigating a detailed structure of the upper boundary of the crystalline basement: two uplifts in the depths between 2.0 and 0.7 km are found. By using the residual negative anomalies we further study the salt tectonics, showing that the geometry of a salt pillow with a thickness of approximately 200 m closely agrees with borehole data. (C) 2016 Elsevier B.V. All rights reserved.

关键词

作者关键词:Potential field methods; 3D inversion; Sedimentary basin

KeyWords Plus:INVERSION; ZONE

基金资助致谢

基金资助机构授权号

German Federal Ministry of Education and Research (BMBF grant)

03IS2091A

Slovak Grant Agency VEGA

1/0141/15

2/0042/15

Czech Science Foundation

GA15-08045S

查看基金资助信息

出版商

ELSEVIER SCIENCE BV, PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS

类别 / 分类

研究方向:Geology; Mining & Mineral Processing

Web of Science 类别:Geosciences, Multidisciplinary; Mining & Mineral Processing

文献信息

文献类型:Article

语种:English

入藏号: WOS:000392769700004

ISSN: 0926-9851

eISSN: 1879-1859

期刊信息

Impact Factor (影响因子): 1.355