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Porosity, permeability and 3D fracture network characterisation of dolomite reservoir rock samples

机译:白云岩储集岩样品的孔隙度,渗透率和3D裂缝网络表征

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With fractured rocks making up an important part of hydrocarbon reservoirs worldwide, detailed analysis of fractures and fracture networks is essential. However, common analyses on drill core and plug samples taken from such reservoirs (including hand specimen analysis, thin section analysis and laboratory porosity and permeability determination) however suffer from various problems, such as having a limited resolution, providing only 2D and no internal structure information, being destructive on the samples and/or not being representative for full fracture networks. In this paper, we therefore explore the use of an additional method - non-destructive 3D X-ray micro-Computed Tomography (mu CT) - to obtain more information on such fractured samples. Seven plug-sized samples were selected from narrowly fractured rocks of the Hauptdolomit formation, taken from wellbores in the Vienna basin, Austria. These samples span a range of different fault rocks in a fault zone interpretation, from damage zone to fault core. We process the 3D mu CT data in this study by a Hessian-based fracture filtering routine and can successfully extract porosity, fracture aperture, fracture density and fracture orientations - in bulk as well as locally. Additionally, thin sections made from selected plug samples provide. 2D information with a much higher detail than the mu CT data. Finally, gas- and water permeability measurements under confining pressure provide an important link (at least in the order of magnitude) towards more realistic reservoir conditions.
机译:随着裂隙岩石成为全球油气储层的重要组成部分,对裂隙和裂隙网络的详细分析至关重要。但是,从这样的储层中获取的钻芯和钻头样品的常规分析(包括手工样品分析,薄片分析以及实验室孔隙率和渗透率确定)却遇到了各种问题,例如分辨率有限,仅提供2D且没有内部结构信息,对样品具有破坏性和/或不能代表完整的裂缝网络。因此,在本文中,我们探索了使用其他方法-无损3D X射线微计算机断层扫描(mu CT)-以获得有关此类破裂样品的更多信息。从奥地利维也纳盆地的井眼中采集的Hauptdolomit地层的狭窄裂缝岩石中选择了七个塞子大小的样品。这些样本涵盖了从断裂带到断层岩心的一系列不同的断层岩石。在本研究中,我们通过基于Hessian的裂缝过滤程序处理了3D mu CT数据,并且可以成功地整体或局部提取孔隙率,裂缝孔径,裂缝密度和裂缝方向。此外,还提供了由选定插头样品制成的薄切片。 2D信息的细节要比mu CT数据高得多。最后,在封闭压力下的气体和水的渗透率测量提供了一个指向更现实的储层条件的重要链接(至少在数量级上)。

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