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High resolution facies architecture and digital outcrop modeling of the Sandakan formation sandstone reservoir, Borneo: Implications for reservoir characterization and flow simulation

机译:高分辨率面部架构和数字露天露天型砂岩储层,婆罗洲:储层特征和流动模拟的影响

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摘要

Advances in photogrammetry have eased the acquisition of high-resolution digital information from outcrops, enabling faster, non-destructive data capturing and improved reservoir modeling. Geocellular models for flow dynamics with in the virtual outcrop in siliciclastic deposits at different sets of sandstone facies architecture remain, however, a challenge. Digital maps of bedding, lithological contrast, spatial-temporal variations of bedding and permeability characteristics make it more easy to understand flow tortuosity in a particular architecture. An ability to precisely model these properties can improve reservoir characterization and flow modeling at different scales. Here we demonstrate the construction of realistic 2D sandstone facies based models for a pragmatic simulation of flow dynamics using a combination of digital point clouds dataset acquired from LiDAR and field investigation of the Sandakan Formation, Sabah, Borneo. Additionally, we present methods for enhancing the accuracy of outcrop digital datasets for producing high resolution flow simulation. A well-exposed outcrop from the Sandakan Formation, Sabah, northwest Borneo having a lateral extent of 750 m was chosen in order to implement our research approach. Sandstone facies and its connectivity are well constrained by outcrop observations, data from air-permeability measurements, bilinear interpolation of permeability, grid construction and water vector analysis for flow dynamics. These proportions were then enumerated in terms of static digital outcrop model (DOM) and facies model based on sandstone facies bedding characteristics. Flow simulation of water vector analysis through each of the four sandstone facies types show persistent spatial correlation of permeability that align with either cross-bedded orientation or straight with more dispersion high quality sandstone (porosity 21.25%–41.2% and permeability 1265.20–5986.25 mD) and moderate quality sandstone (porosity 10.44%–28.75% and permeability 21.44–1023.33 mD). Whereas, in more heterolithic sandstone (wavy- to flaser-bedded and bioturbated sandstone), lateral variations in permeability show spatially non-correlated patterns over centimeters to tens of meters with mostly of low quality sandstone (porosity 3.4%–12.31% and permeability < 1 mD to 3.21 mD). These variations reflect the lateral juxtaposition in flow dynamics. It has also been resulted that the vertical connectivity and heterogeneities in terms of flow are mostly pragmatic due to the interconnected sandstone rather than the quality of sandstone. Keywords: Siliciclastic sandstone facies, Connectivity, Heterogeneity, Digital outcrop model, Flow dynamics
机译:摄影测量中的进步可以缓解从露出的高分辨率数字信息,从而实现更快,无损数据捕获和改进的储层建模。然而,在不同砂岩相面架构中的硅砾矿床中虚拟露头的流动动力学的地理细胞模型仍然存在挑战。床上用品,岩性对比度的数字地图,床上用品和渗透特性的空间 - 时间变化,使其更容易理解流量曲折度在特定的体系结构。精确造型这些属性的能力可以在不同尺度上提高储层表征和流量建模。在这里,我们展示了基于现实的2D砂岩相建的基于模型的模型,用于使用从Lidar的LIDAR和现场调查的数字点覆盖数据集的组合进行了流动动态的语用模拟。另外,我们提供了提高露出数字数据集的准确性的方法,以产生高分辨率流动模拟。选择了Sandakan Chormation,Sabah,西北婆罗洲的露出露头,横向范围为750米,以实施我们的研究方法。砂岩相及其连接受到露天观察的良好限制,来自透气性测量的数据,渗透性,渗透率的双线性插值,流动动力学的网格施工和水载体分析。然后,这些比例在静态数字露天模型(DOM)和基于砂岩相板床上用品特性方面的相位模型来列举。通过四个砂岩相谱面的水载分析流量模拟表现出透气性的渗透性的持续空间相关性,其与交叉层面取向或直接用更多分散的高质量砂岩(孔隙率21.25%-41.2%和1265.20-5986.25 md)和适度的砂岩(孔隙率为10.44%-28.75%和渗透率21.44-1023.33md)。然而,在更杂散的砂岩(波浪至瓶玻璃和生物矛盾的砂岩)中,渗透性的横向变化显示空间非相关的图案,以厘米到几十米,大多数是低质量的砂岩(孔隙率为3.4%-12.31%和渗透率< 1 MD至3.21 MD)。这些变化反映了流动动力学中的横向并置。还导致流动方面的垂直连接和异质性主要是由于互联的砂岩而不是砂岩的质量而务实。关键词:硅砂岩相,连通性,异质性,数字露头模型,流动动力学

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