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首页> 外文期刊>Sedimentary geology >Influence of subtle paleo-tectonics on fades and reservoir distribution in epeiric carbonates: Integrating stratigraphic analysis and modelling (U. Muschelkalk, SW Germany)
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Influence of subtle paleo-tectonics on fades and reservoir distribution in epeiric carbonates: Integrating stratigraphic analysis and modelling (U. Muschelkalk, SW Germany)

机译:微细的古构造对表生碳酸盐岩的衰落和储层分布的影响:地层分析和模拟的综合(美国,Muschelkalk,德国)

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摘要

The Middle Triassic Upper Muschelkalk carbonate ramp deposits in SW-Germany provide an excellent 'laboratory scale' analogue for vast epeiric basin fills such as in the Middle East. The Upper Muschelkalk and the entire Mesozoic overburden in SW-Germany were deposited on a complex mosaic of three major, differentially subsiding Variscan paleo-tectonic blocks: the Rhenohercynian, Saxothuringian and Moldanubian - subtly influencing the depositional fades pattern for long periods of time. This study is based on detailed sedimentological logs of 41 boreholes and surface outcrop sections and 39 gamma-ray logs, lithofacies analysis, and a 1-D and 2-D sequence stratigraphic analysis leading to a regional correlation integrating sequence architecture and marker beds. Using the subsurface 3D modelling tool Petrel, two nested geocellular reservoir models were generated: (i) a basin scale (201.5 x 325 km) Lithofacies Associations (LFA) model based on truncated Gaussian simulation (TGS); (ii) a field scale (50 x 50 km) Lithofacies Types (LFT) model based on sequential indicator simulation (SIS). The integrated 3D facies models reveal landward facies retrogradation with patchy isolated shoal bodies during the transgressive hemisequence and basinward facies progradation with well-connected large shoals within the regressive hemisequence. Models combined with structural maps show the influence of large Variscan block segments and smaller scale internal structural elements on the distribution, and the size of reservoir analogues, both shoal- and dolomite bodies. This relationship offers a new tool for exploration in epeiric carbonates using deep-seated paleotectonic patterns for the prediction of both hydrocarbon and geothermal reservoirs. (C) 2019 Elsevier B.V. All rights reserved.
机译:德国西南部的中三叠世上Muschelkalk碳酸盐斜坡斜坡沉积物为广阔的盆地盆地填充物(例如在中东)提供了出色的“实验室规模”模拟。德国西南部的Muschelkalk上层和整个中生代覆盖层沉积在三个主要的,差异沉降的Variscan古构造块体的复杂镶嵌体上:Rhenohercynian,Saxothuringian和Moldanubian-长期影响着沉积物的衰落模式。这项研究基于详细的41个钻孔和地表露头剖面的沉积学测井资料以及39个伽马射线测井资料,岩相分析以及一维和二维序列地层分析,从而形成了整合了序列构造和标记层的区域相关性。使用地下3D建模工具Petrel生成了两个嵌套的地质细胞储层模型:(i)基于截断的高斯模拟(TGS)的盆地尺度(201.5 x 325 km)岩相联合(LFA)模型; (ii)基于顺序指示器模拟(SIS)的现场规模(50 x 50 km)岩相类型(LFT)模型。整合的3D相模型揭示了海侵过程中陆相相的片状孤立的浅滩体逆行,而陆相相则在逆序水相中有相通的大浅滩相交。结合结构图的模型显示了大的Variscan块段和较小规模的内部结构元素对浅滩和白云岩体的分布和储集类似物的大小的影响。这种关系为利用深部古构造模式预测海相碳酸盐岩中的碳酸盐岩和地热储层提供了新的勘探工具。 (C)2019 Elsevier B.V.保留所有权利。

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