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Stochastic simulation methods for characterization of lithoclasses in carbonate reservoirs

机译:碳酸盐岩储层岩石类特征随机模拟方法

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摘要

The construction of a reservoir model begins with the geology, specifically a geological conceptual model, sub-division into layers, top and bottom limits/surfaces, and characterization of rock types or facies within the layers. To model the geology in heterogeneous case studies, of which carbonate reservoirs are a good example, conceptual and deterministic models are unable to adequately represent the internal geometry and, for this reason, stochastic models are most, particularly used mainly for the spatial characterization of rock types.This paper presents a comparison of bi-point geostatistical simulation methods for characterization of lithoclasses, making use of a carbonated reservoir as a case study. To cope with the geological complexity, and to assist in understanding the internal distribution of properties, the lithoclasses were derived from cores based on their lithology, petrophysical properties and capillary pressure, and subsequently extended to log data.Five simulation methodologies, able to deal with categorical variables, are compared in a multi-phase framework: (1) truncated gaussian simulation, posterior conditioning and classification of simulated probabilities based on local and global proportions (TGSPC); (2) truncated gaussian simulation, posterior conditioning and classification using simulated annealing (TGSPC. +. SA); (3) sequential indicator simulation with correction for local probabilities (SIS); (4) simulated annealing post-processing of sequential indicator simulation images (SIS. +. SA); and (5) probability field simulation (PFS). Matched to experimental data, theoretical multi-phase variogram models, and proportions are observed, as well as the presence of artefacts. To evaluate the range of uncertainty of the simulated images, 30 realizations are generated, and entropy and average geobody volumes (connected blocks belonging to the same lithoclass) are computed and compared.
机译:储层模型的构建始于地质学,特别是地质概念模型,细分为层,顶部和底部界限/表面以及层内岩石类型或相的表征。在碳酸盐岩储层是一个很好的例子的非均质案例研究中,为了对地质建模,概念和确定性模型无法充分表示内部几何形状,因此,随机模型最多,尤其是主要用于岩石的空间表征本文以碳酸盐岩储层为例,对岩性分类的双点地统计学模拟方法进行了比较。为了应对地质复杂性,并帮助理解物性的内部分布,岩石类根据岩性,岩石物理特性和毛细压力从岩心中衍生出来,随后扩展到测井数据.5种能够处理的模拟方法在多阶段框架中比较分类变量:(1)截断的高斯模拟,后验条件和基于局部和全局比例的模拟概率分类(TGSPC); (2)使用模拟退火(TGSPC。+。SA)截断高斯模拟,后处理和分类; (3)具有局部概率校正(SIS)的顺序指标模拟; (4)模拟退火后处理的顺序指标模拟图像(SIS。+。SA); (5)概率场模拟(PFS)。与实验数据相匹配,可以观察到理论上的多相变异函数模型和比例,以及伪像的存在。为了评估模拟图像不确定性的范围,生成了30个实现,并计算并比较了熵和平均地体体积(属于同一岩层的连通区块)。

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