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Multiscale digital rock modeling for reservoir simulation

机译:用于储层模拟的多尺度数字岩石建模

摘要

Methods for upscaling digital rock modeling data are described. Core-plug samples for pore-scale modeling are chosen using whole-core mini-permeability grids and conventional CT scans. Pore models or pore-network models are used for flow modeling. Borehole-scale models use MPS (Multi-Point Statistics) to combine mini-permeability grids and conventional CTscans of whole core with electrical borehole images to create 3D numerical pseudocores for each RRT (Reservoir Rock Type). Effective SCAL properties computed from various MPS borehole-scale realizations or models are used to populate interwell-scale models for each RRT. Effective properties computed from flow simulations for interwell volumes are used to populate full-field scale models. At the full-field scale, outcrop analogs, sequence stratigraphy, forward stratigraphic models, diagenetic models, and basin-scale models are combined using MPS to improve flow simulations. At every stage, REVs (representative element volumes) are computed to be certain rock heterogeneities have been captured.
机译:描述了放大数字岩石建模数据的方法。使用全芯微型渗透网格和常规CT扫描选择用于孔隙尺度建模的岩心塞样品。孔模型或孔网络模型用于流动建模。钻孔规模模型使用MPS(多点统计)将整个岩心的微型渗透率网格和常规CT扫描与电钻孔图像结合起来,从而为每种RRT(储层岩石类型)创建3D数字伪岩心。从各种MPS钻孔规模实现或模型计算出的有效SCAL属性用于填充每个RRT的井间规模模型。从井间流量的流量模拟计算出的有效属性将用于填充全场比例模型。在全油田规模下,露头类似物,层序地层学,正向地层模型,成岩模型和盆地规模模型使用MPS进行了组合,以改善流动模拟。在每个阶段,REV(代表元素体积)都被计算为已捕获某些岩石异质性。

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