首页> 外文会议>SPWLA Annual Logging Symposium;Society of Petrophysicists and Well Log Analysts, inc >INTEGRATED PETROPHYSICAL ROCK CLASSIFICATION IN THE MCELROY FIELD, WEST TEXAS, USA
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INTEGRATED PETROPHYSICAL ROCK CLASSIFICATION IN THE MCELROY FIELD, WEST TEXAS, USA

机译:美国西得克萨斯州麦克罗伊油田的综合岩石物理岩石分类

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McElroy Field, located in the Permian Basin, is a typical example of a complex carbonate reservoir. Discovered in 1926, McElroy Field has been under waterflood since the early 1960’s. However, maximizing oil recovery is still a major challenge in this field. A comprehensive analysis on the distribution of depositional facies and diagenetic modifications can ultimately enhance future development and oil production in the McElroy Field. We have applied a rock typing workflow based on conventional well logs and core data to incorporate both depositional and diagenetic attributes for characterizing the heterogeneity within the McElroy Field.The applied rock typing workflow consists of several sequential steps. Firstly, the depositional rock types were described and consolidated in the core domain for the purpose of propagation into the well-log domain. Reservoir typing was then conducted to identify controls on reservoir properties. This analysis indicated that diagenetic overprint has the dominant influence on the fluid flow in the McElroy Field. Pore type groups were classified by clustering attributes of Gaussian function fits to the pore-throat radius distributions derived from Mercury Injection Capillary Pressure (MICP) measurements. The identified depositional rock types and pore type groups were populated in the core-plug and the well-log domains applying a supervised model trained using k-Nearest Neighbors algorithm (KNN). Vuggy porosity was characterized in the core domain using CT-scan imaging techniques and correlated to log-derived estimates of porosity to predict vuggy porosity in the well-log domain. Assessment of vuggy porosity using CT-scan image analysis showed that the separation of sonic porosity and density-neutron porosity is not a reliable tool for estimating vuggy porosity in gypsum-bearing reservoirs. All of the generated geological and petrophysical data were integrated to define the petrophysical rock types that control the reservoir’s dynamic characteristics. Identified petrophysical rock types were validated using dynamic injection profiles. The obtained results showed that the fluid flow in this field is dominantly controlled by diagenetic modifications. Finally, we studied the distribution of the identified petrophysical rock types to establish trends for field-wide spatial distribution of petrophysical rock types. The spatial trends of petrophysical rock types in the field serve to unveil the potential for future development opportunities in the McElroy Field.
机译:位于二叠纪盆地的McElroy油田是复杂碳酸盐岩储层的典型例子。 McElroy油田于1926年被发现,自1960年代初以来就一直处于注水状态。然而,最大化采油量仍然是该领域的主要挑战。对沉积相和成岩作用的分布进行综合分析,最终可以促进McElroy油田的未来开发和石油生产。我们已经基于常规测井和核心数据应用了岩石分型工作流程,以结合沉积和成岩属性,以表征McElroy油田内的非均质性。 所应用的摇滚打字工作流程包括几个连续的步骤。首先,对沉积岩类型进行了描述和合并,以扩展到测井领域。然后进行储层分类,以识别对储层性质的控制。该分析表明,成岩覆盖对麦克埃罗伊油田的流体流动具有主要影响。孔类型组根据高斯函数拟合的聚类属性进行分类,该聚类属性符合从水银注入毛细管压力(MICP)测量得出的孔喉半径分布。使用k-最近邻算法(KNN)训练的监督模型,将确定的沉积岩类型和孔隙类型组填充在岩心塞和测井区域中。使用CT扫描成像技术在岩心区域表征孔隙孔隙度,并将其与对数推导的孔隙度估算值相关,以预测测井域孔隙孔隙度。使用CT扫描图像分析评估孔隙孔隙度表明,将声波孔隙度和密度中子孔隙度分开并不是评估含石膏储层孔隙孔隙度的可靠工具。所有生成的地质和岩石物理数据都经过整合,以定义控制储层动态特性的岩石岩石类型。确定的岩石物理类型使用动态注入剖面进行了验证。获得的结果表明,该领域的流体流动主要受成岩作用控制。最后,我们研究了已识别的岩石物理类型的分布,从而建立了岩石物理类型在整个领域的空间分布趋势。油田岩石物理类型的空间趋势揭示了McElroy油田未来发展机会的潜力。

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