首页> 外文期刊>Petroleum Geoscience >Reservoir-scale characterization and multiphase fluid-flow modelling of lateral petrophysical heterogeneity within dolomite facies of the Madison Formation,Sheep Canyon and Lysite Mountain,Wyoming,USA
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Reservoir-scale characterization and multiphase fluid-flow modelling of lateral petrophysical heterogeneity within dolomite facies of the Madison Formation,Sheep Canyon and Lysite Mountain,Wyoming,USA

机译:美国怀俄明州麦迪逊组,绵羊峡谷和莱斯特山白云岩相内的横向岩石物理非均质性的储层尺度表征和多相流体流动模拟

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摘要

Carbonate reservoirs often exhibit complex pore networks and various scales of petrophysical heterogeneity associated with stratigraphic cyclicity,facies distribution and diagenesis.In addition,petrophysical variability also exists within distinct rock fabrics at the interwell scale.Data from lateral transects through dolomitized carbonates of the Mississippian Madison Formation in north and central Wyoming exhibit three scales of lateral petrophysical variability.These include a near-random component(nugget effect),short-range variability and a long-range periodic trend(hole effect)that is observed in both dolowackestone(Sheep Canyon)and dolograinstone(Lysite Mountain)facies.The dolowackestone represents outer and middle ramp mud-supported fabrics,while the dolograinstone represents amalgamated skeletal and oolitic shoals.Detailed 3D petrophysical models of the dolomite facies and 2D multiphase waterflood simulations explore the effects of this heterogeneity on reservoir performance through several model scenarios.Fingering of the injected fluid front,sweep-efficiency,breakthrough time and bottom-hole well pressures are sensitive to lateral reservoir heterogeneity and rock fabric.Models with greater short-scale continuity of petrophysical properties have higher degrees of large-scale fingering,higher sweep efficiency and shorter breakthrough times.The reservoir performance of the dolowackestone differs from the dolograinstone for those models that exhibit a specific range of short-scale heterogeneity.In general,the dolowackestone has a higher degree of both small-and large-scale fingering,lower sweep efficiency and longer breakthrough time compared with the dolograinstone.Intra-facies scale variability is significant in regard to reservoir performance and is often difficult or impossible to determine from typical subsurface datasets.Information from outcrop analogues is necessary to create conceptual 3D geological models and to begin to quantify interwell heterogeneity within dolomite reservoirs.
机译:碳酸盐岩储集层通常表现出复杂的孔隙网络,并且各种岩石物理非均质性与地层周期性,相分布和成岩作用有关。此外,在不同井间尺度的岩石构造中也存在岩石物理变异性。怀俄明州北部和中部的地层表现出三个横向岩石物性变异,包括近随机分量(金块效应),短程变异性和长周期周期趋势(孔效应),都在dolowackestone(绵羊峡谷)中观察到。 )和dolograinstone(Lysite Mountain)相。dolowackestone代表外斜斜坡和中斜坡泥岩支撑的织物,dolograinstone代表混合的骨骼和鲕粒浅滩。白云岩相的详细3D岩石物理模型和2D多相水驱模拟探索了这种非均质性的影响储层性能在几个模型场景中。注入流体的前指,扫掠效率,突破时间和井底压力对横向储层非均质性和岩石构造敏感。岩石物理性质的短尺度连续性更大的模型尺度指法,更高的波及效率和更短的突破时间。对于那些表现出特定范围的短尺度非均质性的模型,dolowackestone的储层性能不同于dolograinstone。总的来说,dolowackestone具有较大和较小的程度与多洛金石相比,大尺度指法,更低的波及效率和更长的突破时间。相内尺度的变化对于储层性能而言是重要的,并且通常很难或不可能从典型的地下数据集中确定。露头类似物的信息对于建立概念是必要的3D地质模型并开始量化井间异质性白云岩储层内的环境。

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