En este trabajo fueron analizadas las variaciones fractales y de lagunaridad de los registros geofísicos de pozo, con el fin de asociarlos con las propiedades estratigráficas y petrofísicas del yacimiento naturalmente fracturado de Cantarell, en el Golfo de México. Los registros considerados fueron: porosidad neutrón (NPHI), densidad (RHOB, DRHO, PEF), resistividad (LLD, LLS, MSFL), radiactividad natural (GR, CGR, URAN, POTA, THOR) y caliper (CALI). Los registros de resistividad produjeron valores de lagunaridad notablemente altos, especialmente en las rocas generadoras y almacenadoras, a diferencia de los demás registros, cuya homogeneidad de traza implicó una baja lagunaridad. Los resultados indican que la lagunaridad observada depende de la resolución y profundidad radial de penetración del método geofísico estudiado y aumenta sistemáticamente en el siguiente orden: (RHOB) < (CALI) < (PEF) < (URAN) < (GR) < (NPHI) < (POTA) < (CGR) < (THOR) < (MSFL) < (DRHO) < (LLS) < (LLD).
This paper describes several engineering workflows as part of the Digital Oil Field Solution implemented in a Gas Asset where there are different technical challenges. The main objective of this technology application is to revert the production decrease and optimize the operations in the asset, enhancing the capabilities of monitoring and surveillance and also to improve the analysis capability, taking the advantage of the benefits of the real time instrumentation, data integration, data quality, in addition to the definition of a complete automation process for all the information in different frequencies covering all the stages such as: data acquisition, transmission, integration, until monitoring and surveillance. With the implementation of operational and engineering workflows better efficiencies can be achieved, improving in time of response, and the decision making process, having tools for early anomaly detection to take proactively corrective actions that minimize the deferred production and losses.
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