Publikationen

Abteilung Geologie

Publikationen unserer Abteilung

Zeige Ergebnisse 221 - 230 von 335

2015


Wölfler, A., Frisch, W., Fritz, H., Danišík, M., & Wölfler, A. (2015). Ductile to brittle fault zone evolution in Austroalpine units to the southeast of the Tauern Window (Eastern Alps). Swiss Journal of Geosciences, 239-251.
Zeumann, S., & Hampel, A. (2015). Deformation of erosive and accretive forearcs during subduction of migrating and non-migrating aseismic ridges: Results from 3-D finite element models and application to the Central American, Peruvian, and Ryukyu margins. TECTONICS, 34(9), 1769-1791. https://doi.org/10.1002/2015TC003867

2014


Baes, M., & Sobolev, S. V. (2014). A Modified Wilson Cycle Scenario Based on Thermo-Mechanical model. In AGU 2014
Baes, M., & Sobolev, S. V. (2014). subduction initiation: Insights from numerical models. In German Swiss Geodynamics Workshop
Baes, M., & Sobolev, S. V. (2014). Subduction initiation triggered by mantle suction flow. In EGU 2014
Brandes, C., & Tanner, D. C. (2014). Fault-related folding: A review of kinematic models and their application. Earth-Science Reviews, 138, 352-370. https://doi.org/10.1016/j.earscirev.2014.06.008
Dinis, J., Mendes, M., Dinis, P., Pais, J., Rey, J., & Heimhofer, U. (2014). Clays and Vegetation: Comparing Palaeoclimatic Signatures in the Portuguese Lower Cretaceous. In Springer Geology (S. 649-653). (Springer Geology). Springer. https://doi.org/10.1007/978-3-319-04364-7_124
Gerya, T. V., Stern, R. J., Baes, M., Sobolev, S. V., & Whattam, S. (2014). Dynamics and Significance of Plume-Induced Subduction Initiation: Numerical Modeling. In AGU 2014
Glotzbach, C., & Brandes, C. (2014). Air density of the Permian atmosphere: Constraints from lithified raindrop imprints. Palaeogeography, Palaeoclimatology, Palaeoecology, 409, 280-289. https://doi.org/10.1016/j.palaeo.2014.05.024
Glotzbach, C., Röttjer, M., Hampel, A., Hetzel, R., & Kubik, P. W. (2014). Quantifying the impact of former glaciation on catchment-wide denudation rates derived from cosmogenic 10Be. TERRA NOVA, 26(3), 186-194. https://doi.org/10.1111/ter.12085