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The impact of fine-scale reservoir geometries on streamline flow patterns in submarine lobe deposits using outcrop analogues from the Karoo Basin

机译:利用卡鲁盆地露头类似物对精细油藏几何形状对海底沉积物流线型流动模式的影响

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摘要

Improved prediction of the recovery of oil-in-place in basin-floor fan reservoirs requires accurate characterization and modelling of multiscale heterogeneities. The use of outcrop analogues is a key tool to augment this process by documenting and quantifying sedimentary architecture, hierarchy and sedimentary facies relationships. A 3D geological modelling workflow is presented that tests the impact of fine-scale heterogeneities within basin-floor lobe complexes on reservoir connectivity. Construction of geological models of a basin-floor lobe complex allows realistic depositional architecture and facies distributions to be captured. In addition, detailed models are constructed from channelized areas within a basin-floor lobe complex. Petrophysical modelling and streamline analysis are employed to test the impact on reservoir connectivity between lobe models with: (i) vertically stacked facies with coarsening- and thickening-upwards trends in all locations; and (ii) lateral facies changes with dimensions and distributions constrained from outcrop data. The findings show that differences in facies architecture and, in particular, lobe-on-lobe amalgamation have a significant impact on connectivity and macroscopic sweep efficiency, which influence the production results. Channelized lobe areas are less predictable reservoir targets owing to uncertainties associated with channel-fill heterogeneities. The use of deterministic sedimentary architecture concepts and facies relationships have proven vital in the accurate modelling of reservoir heterogeneities.
机译:对盆地底扇储层中就地采油量的改进预测要求对多尺度非均质性进行准确的表征和建模。露头类似物的使用是通过记录和量化沉积构造,层次和沉积相关系来增强这一过程的关键工具。提出了一种3D地质建模工作流程,该流程可测试盆底叶状复合物中细尺度异质性对储层连通性的影响。盆地-底垂复合体的地质模型的构建允许捕获现实的沉积构造和相分布。此外,从盆底叶群内的通道化区域构造了详细的模型。运用岩石物理模型和流线分析来测试对下列波瓣模型之间的储层连通性的影响:(i)垂直堆叠的相,在所有位置都有增粗和增厚趋势; (ii)横向相随露头数据限制的尺寸和分布而变化。研究结果表明,相结构的差异,尤其是瓣对叶的融合对连接性和宏观扫描效率有重大影响,这会影响生产结果。由于与河道充斥的非均质性有关的不确定性,河道化的波瓣区域是较难预测的储层目标。在确定储层非均质性的精确模型中,确定性沉积构造概念和相关系的使用已证明至关重要。

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