Petroelastic modeling of carbonate reservoirs in the view of different void types

Ya. S. Grigoryan, I. Bayuk
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Abstract

Background. Fractures present in carbonate rocks facilitate fluid flow within void spaces. Each type of voids can have a different effect on rock elastic properties, which, in turn, allow the characteristics of voids to be estimated by assessing the velocity of elastic waves. In this paper, an effect of pores and fractures on the velocity of elastic waves is analyzed by petroelastic modeling. An example of solving an inverse problem is presented, involving the determination of fracture porosity and relative fracture opening using the data on elastic wave velocity and hydrocarbon reservoir density obtained during geophysical well logging.Aim. To increase the accuracy of experimental data on the velocity of elastic waves that propagate across hydrocarbon carbonate reservoirs by assessing the pore and fracture characteristics of voids.Materials and methods. The effective medium theory was used as an efficient way to evaluate physical, including elastic, properties based on rock composition and microstructure. Using Berryman’s self-consistent method, we created a model of rock elastic properties, or a petroelastic model, the void space in which was represented by isometric pores and fractures. This model was applied to a well in a petroleum province in West Siberia.Results. The effect of characteristics determining the void space of porous-fractured rocks on the velocity of elastic waves was defined. Velocity surfaces were constructed in accordance with changing parameters of the model, i.e. fracture porosity and fracture aspect ratio. The obtained theoretical and experimental data were compared in order to determine fracture development zones and to evaluate volume concentration and relative fracture opening in these zones.Conclusion. The effect of pores and fractures on elastic wave velocity in porous-fractured carbonate reservoirs was studied by petroelastic modeling. The zones of excessive fracturing were defined and the parameters of volume concentration and relative fracture opening were determined using the data obtained by geophysical well logging in a petroleum province in West Siberia.
不同孔隙类型下碳酸盐岩储层岩石弹性建模
背景。碳酸盐岩中的裂缝有利于流体在空隙中流动。每种类型的孔洞对岩石的弹性特性都有不同的影响,这反过来又允许通过评估弹性波的速度来估计孔洞的特征。本文采用岩石弹性模型分析了孔隙和裂缝对弹性波速度的影响。本文给出了利用地球物理测井获得的弹性波速和储层密度数据求解裂缝孔隙度和相对裂缝开度反问题的实例。通过评估孔隙和裂缝特征,提高碳酸盐岩储层弹性波传播速度实验数据的准确性。材料和方法。有效介质理论是基于岩石成分和微观结构评价岩石物理(包括弹性)性质的有效方法。利用Berryman的自一致方法,我们创建了一个岩石弹性特性模型,即岩石弹性模型,其中的空隙空间由等距孔隙和裂缝表示。将该模型应用于西西伯利亚某石油省的一口井。定义了多孔裂隙岩石孔隙空间特征对弹性波传播速度的影响。根据模型参数的变化,即裂缝孔隙度和裂缝长径比,构建速度面。将所得理论数据与实验数据进行对比,以确定裂缝发育区域,并评价这些区域的体积浓度和相对裂缝开度。采用岩石弹性模型研究了孔隙裂缝型碳酸盐岩储层孔隙裂缝对弹性波速的影响。利用西西伯利亚某石油省的地球物理测井资料,确定了过量压裂带,确定了体积浓度和相对裂缝开度参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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