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A multi-scale approach to improve reservoir characterization and forecasting: the Albacora Field (deep-water offshore Brazil) study

机译:改善储层特征和预测的多尺度方法:Albacora油田(巴西近海深水)研究

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摘要

The Upper Albian Namorado Sandstone is one of the reservoirs of the Albacora Field, located in the Campos Basin, deep-water offshore Brazil. It is a sand-rich turbidite system where the most important controls on permeability are calcite cementation, thin beds of non-reservoir lithologies and some north-south trending faults. A major multidisciplinary reservoir characterization project was conducted to improve the reservoir description using all available data. In this paper, we focus on how the effect of rock heterogeneities were represented in the fluid flow model and on the performance obtained from this model. The basic idea was to define a hierarchical model of facies established on the basis of there main work scales: porous systems (thin sections and core sample scale); composite facies (whole core and log scale); and seismic facies (interwell to field scale). An up-scaling technique, based on the geopseudo concept, was used to generate the effective petrophysical properties for the fluid-flow simulation model. A Markov-Bayes geostatistical simulation method was applied in facies stochasticmodelling. The sophisticated model that was built allowed very fast history matching.
机译:上阿尔比亚纳莫拉多砂岩是位于巴西近海坎普斯盆地的阿尔巴科拉油田的储层之一。这是一个富含沙子的浊质体系,对渗透率的最重要控制是方解石胶结,非储层岩性薄层和一些南北走向的断层。进行了一项主要的多学科储层表征项目,以使用所有可用数据来改善储层描述。在本文中,我们关注于流体流动模型中岩石非均质性的影响如何表示以及从该模型获得的性能。基本思想是定义基于主要工作规模建立的相的分层模型:多孔系统(薄层和核心样本规模);复合相(整个岩心和测井尺度);和地震相(井间尺度)。基于geopseudo概念的放大技术被用于生成流体流动模拟模型的有效岩石物理特性。将Markov-Bayes地统计模拟方法应用于相随机建模中。构建的复杂模型允许非常快速的历史记录匹配。

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