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Jurassic and Cretaceous organic-lean claystone formations in the Lower Saxony Basin (LSB), Germany, are considered for nuclear waste storage due to their favorable physical properties. Understanding the burial and thermal history of these formations, including overpressure generation and its impact, is crucial for site selection. Past undetected overpressures may result in erroneous estimation of present-day petrophysical prop...
Jurassic sedimentary sequences suitable for nuclear waste storage in northern Germany consist of organic-lean claystone and were uplifted to < 100 m depth in the Hils Syncline area (southern Lower Saxony Basin). This Hils Syncline, showcasing a northwestward increase in thermal maturity, facilitates the study of shale petrophysical properties influenced by burial history. This study introduces a 3D-thermally calibrated numeric...
Numerical 3D basin modeling is used to reconstruct the burial and temperature histories in onshore northeastern Netherlands, incorporating the four main geological structural elements Groningen Platform, Lauwerszee Trough, Friesland Platform, and Lower Saxony Basin. The structural framework is based on recently published open access depth surface data; public temperature and vitrinite reflectance data from 28 wells are used to...
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