Lithologically constrained velocity–density relationships and vertical stress gradients in the North Alpine Foreland Basin, SE Germany
Peter Obermeier,Florian Duschl,and Michael C. Drews
Peter Obermeier
Professorship of Geothermal Technologies, TUM School of Engineering and Design, Department of Civil and Environmental Engineering, Technical University of Munich, Munich, 80333, Germany
Professorship of Geothermal Technologies, TUM School of Engineering and Design, Department of Civil and Environmental Engineering, Technical University of Munich, Munich, 80333, Germany
Professorship of Geothermal Technologies, TUM School of Engineering and Design, Department of Civil and Environmental Engineering, Technical University of Munich, Munich, 80333, Germany
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Viewed (geographical distribution)
Total article views: 3,493 (including HTML, PDF, and XML)
Thereof 3,440 with geography defined
and 53 with unknown origin.
Total article views: 1,485 (including HTML, PDF, and XML)
Thereof 1,433 with geography defined
and 52 with unknown origin.
Total article views: 2,008 (including HTML, PDF, and XML)
Thereof 2,007 with geography defined
and 1 with unknown origin.
We investigate geophysical properties and the distribution of vertical stress, which is defined by the weight of the rock column above a certain location in the subsurface, in the upper 5 km of the North Alpine Foreland Basin in Germany. Our results help us to understand the present-day geological configuration and to improve safety for subsurface use, such as deep geothermal energy production in the study area.
We investigate geophysical properties and the distribution of vertical stress, which is defined...