4.5 Article

Multi-scale and multi-technique characterization of hybrid coquinas: A study case from the Morro do Chaves Formation (Barremian-Aptian of Sergipe-Alagoas Basin, Northeast Brazil)

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ELSEVIER
DOI: 10.1016/j.petrol.2021.109718

关键词

Multi-scale reservoir characterization; Rock typing; Upscaling; Petrophysics; Heterogeneity; Coquinas

资金

  1. Shell-Brasil [ANP 20225-9]

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This study introduced a novel method of petrophysical characterization of coquinas through a multi-technique and multi-scale approach, analyzing mineralogical content, x-ray attenuation, and pore type to define tomofacies and rock types. The upscaling method using tomofacies and rock types proved to be successful in improving reservoir characterization in heterogeneous and complex limestone successions, revealing better reservoir quality in the upper portion of the Morro do Chaves Formation core and poorer reservoir quality influenced by cementation processes in the lower portion.
The coquinas are carbonate rocks with variable content of siliciclastics and have a complex porous framework that implies an issue for their characterization as reservoirs. Furthermore, these rocks are considered important reservoirs due to the giant accumulations in the Campos and Santos basins (Coqueiros and Itapema formations, respectively), increasing the interest in understanding and characterizing these complex and heterogeneous lithologies. In this context, this study aims to introduce a novel method of petrophysical characterization of coquinas through a multi-technique and multi-scale approach in a continuous well core of approximately 135 m, drilled in the Atol Quarry, Sa similar to o Miguel dos Campos County, Alagoas State. Based in mineralogical content, x-ray attenuation and pore type, seven tomofacies were defined using computerized tomography and allowed a representative sampling (plugs and thin sections). Five rock types were defined based textural aspects (tomofacies and petrography) and petrophysical data (routine core analysis and micro-computerized tomography). The rock types were compared to well logs, establishing boundary values and distributed along the whole well, in an upscaling process from thin-section and plugs (microscopic scale) to the well core (macroscale). The Morro do Chaves Formation core was divided into two portions: upper portion, with better reservoir quality and greater influence of mineral dissolution; and lower portion, a poor reservoir quality portion influenced by cementation processes. The upscaling method using the concepts of tomofacies and rock types proved to be a successful way to improve the understanding of reservoir characterization in heterogeneous of complex limestone successions, which can improve the recovery factor and aid in the field development.

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