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An integrated workflow to assess the remaining potential of mature hydrocarbon basins: a case study from Northwest Germany (Upper Jurassic/Lower Cretaceous, Lower Saxony Basin)

机译:评估成熟烃盆地剩余潜力的综合工作流程:来自德国西北部的案例研究(侏罗纪/下白垩统,下萨克森盆地)

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Mature hydrocarbon provinces require a high level of geological understanding in order to extend the lives of producing fields, to replace reserves through smaller targets and to reduce the risks of exploring for more and more subtle hydrocarbon traps. Despite a large number of existing wells in the area studied in this paper, the depositional environments and the stratigraphic architecture were still poorly known. In order to improve the geological understanding, we propose a workflow to assess the remaining reservoir potential of mature hydrocarbon areas, integrating cores, cuttings, well-logs, biostratigraphy and seismic data. This workflow was developed for and is exemplified with the northwest of the Lower Saxony Basin (LSB), a mature hydrocarbon province in northwest Germany, but can be applied in a similar fashion to other areas. Systematic integration of lithofacies analysis, chrono- and sequence stratigraphy, combined with electrofacies analysis and modern digital methods like neural network-based lithology determination and 3D facies modelling provides a high-resolution understanding of the spatial facies and reservoir architecture in the study area. Despite widely correlatable litho-units in the Upper Jurassic and Lower Cretaceous in the LSB, complex heterogeneous sedimentary systems can be found in the basin's marginal parts. Two new play types were determined in the study area, showing a remaining potential for stratigraphic hydrocarbon traps. The results of this exploration scale study also provide the basis for re-evaluations on a field development scale. On a basin scale, this study may encourage further data acquisition and re-evaluations to discover previously unknown reservoirs.
机译:成熟的碳氢化合物省需要高度的地质了解,才能延长生产油田的寿命,通过较小的目标来替代储量,并减少勘探越来越多的微妙的碳氢化合物圈闭的风险。尽管本文研究的区域中有大量现有的井,但沉积环境和地层构造仍知之甚少。为了提高对地质的了解,我们提出了一个工作流程,以评估成熟烃类地区的剩余储层潜力,整合岩心,岩屑,测井,生物地层学和地震数据。该工作流程是为下萨克森盆地(LSB)的西北部开发的,并被其例示,下萨克森盆地是德国西北部的一个成熟的碳氢化合物省,但可以类似的方式应用于其他地区。岩相分析,时间地层和层序地层学的系统集成,结合电相分析和现代数字方法,例如基于神经网络的岩性确定和3D相建模,可以对研究区的空间相和储层构造提供高分辨率的了解。尽管LSB的上侏罗纪和下白垩统的岩石单元具有广泛的相关性,但在盆地的边缘部分仍可以发现复杂的非均质沉积系统。在研究区域确定了两种新的油气藏类型,显示出地层油气藏的剩余潜力。勘探规模研究的结果也为野外开发规模的重新评估提供了基础。在流域范围内,这项研究可能会鼓励进一步的数据采集和重新评估,以发现以前未知的储层。

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