2017FigshareOpen access

Palaeogeographic evolution of the Lower Jurassic: high-resolution bio- and sequence-stratigraphy in the Central European Basin

Gregor Barth, Grzegorz Pieńkowski, Jens Zimmermann, Matthias Franz, Gesa Kuhlmann

Open full text 0 citations

Abstract

Basin scale stratigraphic correlation is the fundamental base for successful reservoir exploration and especially when dealing with cross-border areas. Differences in lithostratigraphic and chronostratigraphic nomenclature between subbasins and countries often result in problematic estimations of reservoir geometries and potential. This study combines available biostratigraphic, biofaunal and lithofacies data, together with sequence-stratigraphical correlations of the Lower Jurassic from the Central European Basin (CEB), to propose a genetic-based framework of transgressive and regressive depositional units. The determination of four major biofacies environments, composed of (I) polyhaline open marine/offshore environments, (II) upper mesohaline marine/brackish environments, (III) lower mesohaline brackish environments and (IV) low oligohaline to fresh water continental environments comprising very rare marine phytoplankton and terrestrial spores and pollens, were translated to 12 biofacies reconstructions of ammonite (Sub-)Chronozone levels. Variations of biofacies reconstructions in time and space were supplemented by biostratigraphically constrained large scale progradational and retrogradational sedimentary architecture. Retrogradation is accompanied by increasing polyhaline environments and pinpoint basinwide 3rd order flooding events, whereas progradation is accompanied by decreasing polyhaline environments pointing to 3rd order regressions. The outcomes of this study support exploration of Lower Jurassic deep geothermal reservoirs or CO2 storage sites in the eastern CEB (especially Germany and Poland).

About this research paper

What this paper is about

Basin scale stratigraphic correlation is the fundamental base for successful reservoir exploration and especially when dealing with cross-border areas. Differences in lithostratigraphic and chronostratigraphic nomenclature between subbasins and countries often result in problematic estimations of reservoir geometries and potential. This study combines available biostratigraphic, biofaunal and lithofacies data, together with sequence-stratigraphical correlations of the Lower Jurassic from the Central European Basin (CEB), to propose a genetic-based framework of transgressive and regressive depositional units. The determination of four major biofacies environments, composed of (I) polyhaline open marine/offshore environments, (II) upper mesohaline marine/brackish environments, (III) lower mesohaline brackish environments and (IV) low oligohaline to fresh water continental environments comprising very rare marine phytoplankton and terrestrial spores and pollens, were translated to 12 biofacies reconstructions of ammonite (Sub-)Chronozone levels. Variations of biofacies reconstructions in time and space were supplemented by biostratigraphically constrained large scale progradational and retrogradational sedimentary architecture. Retrogradation is accompanied by increasing polyhaline environments and pinpoint basinwide 3rd order flooding events, whereas progradation is accompanied by decreasing polyhaline environments pointing to 3rd order regressions. The outcomes of this study support exploration of Lower Jurassic deep geothermal reservoirs or CO2 storage sites in the eastern CEB (especially Germany and Poland).

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Basin scale stratigraphic correlation is the fundamental base for successful reservoir exploration and especially when dealing with cross-border areas. Differences in lithostratigraphic and chronostratigraphic nomenclature between subbasins and countries often result in problematic estimations of reservoir geometries and potential. This study combines available biostratigraphic, biofaunal and lithofacies data, together with sequence-stratigraphical correlations of the Lower Jurassic from the Central European Basin (CEB), to propose a genetic-based framework of transgressive and regressive depositional units. The determination of four major biofacies environments, composed of (I) polyhaline open marine/offshore environments, (II) upper mesohaline marine/brackish environments, (III) lower mesohaline brackish environments and (IV) low oligohaline to fresh water continental environments comprising very rare marine phytoplankton and terrestrial spores and pollens, were translated to 12 biofacies reconstructions of ammonite (Sub-)Chronozone levels. Variations of biofacies reconstructions in time and space were supplemented by biostratigraphically constrained large scale progradational and retrogradational sedimentary architecture. Retrogradation is accompanied by increasing polyhaline environments and pinpoint basinwide 3rd order flooding events, whereas progradation is accompanied by decreasing polyhaline environments pointing to 3rd order regressions. The outcomes of this study support exploration of Lower Jurassic deep geothermal reservoirs or CO2 storage sites in the eastern CEB (especially Germany and Poland).

Key concepts: Paleontology, Geology, Sequence stratigraphy, Structural basin, Sequence (biology), Stratigraphy, Biostratigraphy, Biology

Related papers

Back to paper searchBrowse research topicsOriginal source
Palaeogeographic evolution of the Lower Jurassic: high-resolution bio- and sequence-stratigraphy in the Central European Basin — Research Paper | ScholarLens