Laboratory and Digital Petrophysical Multiscale Analysis of Porosity Types in Vaca Muerta Formation in El Mangrullo Field

C. Naides, D. Marchal
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Abstract

Unconventional shales reservoirs are complex in terms of composition, variable scales of analysis (from centimeter to nanometer) and petrophysical properties. To characterize these reservoirs, detailed analyses are required, including studies of rock samples in a wide range of scales. Extracted from a shale gas well (El Mangrullo Field, southwest of Neuquén Basin), the studied core involves a 123 m thick section within the lower enriched section (informally subdivided into Cocina, Parrilla, Orgánico Inferior y Orgánico Superior intervals) of Vaca Muerta Formation. This study consists in processing, interpreting, and integrating all the information from routine petrophysical laboratory studies (Tight Rock Analysis - TRA), well logs and high-resolution rock analysis (Digital Rock Analysis - DRA) using a customized and tailored workflow that provides quantitative and qualitative results. Permeability, total and effective porosity, organic porosity, and their distribution and another petrophysical properties (like pore size distribution, etc.) are characterized. The integration of the laboratory and DRA results allows the elaboration of a permoporous properties model. This model allowed us to integrate petrophysical model with the production of horizontal wells drilled in different sections of Vaca Muerta Formation.
El Mangrullo油田Vaca Muerta地层孔隙类型的实验室和数字岩石物理多尺度分析
非常规页岩储层在成分、分析尺度(从厘米到纳米)和岩石物理性质方面都很复杂。为了描述这些储层的特征,需要进行详细的分析,包括在大范围内研究岩石样品。该岩心提取自一口页岩气井(El Mangrullo油田,neuqu盆地西南部),其厚度为123米,位于Vaca Muerta组较低富集段(非正式地分为Cocina、Parrilla、Orgánico次段和Orgánico次段)内。该研究包括处理、解释和整合来自常规岩石物理实验室研究(致密岩石分析- TRA)、测井和高分辨率岩石分析(数字岩石分析- DRA)的所有信息,使用定制和定制的工作流程,提供定量和定性结果。对渗透率、总孔隙度、有效孔隙度、有机孔隙度及其分布以及其他岩石物性(如孔径分布等)进行了表征。实验室和DRA结果的整合允许对渗透性模型的阐述。该模型使我们能够将岩石物理模型与Vaca Muerta地层不同段的水平井生产相结合。
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