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The thermal regime of the Northeastern-German Basin from 2-D inversion
Authors:Hans-Dieter Vosteen  Volker Rath  Andreas Schmidt-Mumm  Christoph Clauser  
Institution:aApplied Geophysics, RWTH Aachen University; Lochnerstr. 4-20, D-52056 Aachen, Germany;bSchool of Earth and Environmental Science, The University of Adelaide, S.A. 5005, Australia
Abstract:The thermal regime and the distribution of heat flow at the base of sedimentary basins is fundamental to the understanding of the process of basin evolution and the associated mobilization and migration of hydrocarbon and other fluids. For the Northeastern-German sedimentary basin, available information on structure, temperature, and thermal properties along a seismic DEKORP reflection profile allow high resolution 2-D forward and inverse simulations. This approach is attractive in situations where much information is available, if only with considerable uncertainty. In particular, this allows to introduce “soft” information into the analysis. In our case, forward simulations yield initial a priori estimates of the parameters while inversion calculations yield a posteriori estimates of the parameters and their uncertainty. The a priori parameters as well as their assumed uncertainty are input for a Bayesian parameter estimation scheme. In respect to the Northeastern-German sedimentary basin, the inverse analysis postulates a significant and characteristic a posteriori variation of thermal conductivity of the Zechstein unit along the entire profile as well as a generally large a posteriori thermal conductivity of the (pre-Permian) basement in the northern part of the basin. For inverse calculations, we used two alternative scenarios: One assumes the thermal conductivity of the Zechstein unit to be homogeneous along the profile while the other allows a lateral variation. A posteriori heat flow across the base of the model varies from 40 to 60 and 50 to 65 mW m−2 for models in which values for thermal conductivity and radiogenic heat generation rate were either based on literature values or direct measurements, respectively.
Keywords:Heat flow  Heat Conduction  Numerical simulation  Finite elements  Inversion study  Parameter estimation  Northeastern German Basin
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