--> Application of Structural Seismic Attributes for “Polygonal Faults” Interpretation in Unconventional Carbonate Reservoir
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Application of Structural Previous HitSeismicNext Hit Previous HitAttributesNext Hit for “Polygonal Faults” Interpretation in Unconventional Carbonate Reservoir

Abstract

Previous HitSeismicNext Hit Previous HitattributesNext Hit are specific functions derived from Previous HitseismicNext Hit data, to enhance the appearance of different geologic features along the main Previous HitseismicNext Hit reflectors in both cross-section and map views. In this work we applied volume Previous HitseismicNext Hit Previous HitattributesNext Hit in order to enhance the appearance of the polygonal faults located at the Abu El-Gharadig basin, North of Western Desert, Egypt. The main objective is to illuminate the small or sub-Previous HitseismicNext Hit faults to determine its implication on the unconventional carbonate reservoir, of the Middle Eocene Apollonia Formation. The workflow started by the application of the structural smoothing attribute on a 3D post-stack, depth migrated Previous HitseismicNext Hit volume, in order to highlight the discontinuities of the Previous HitseismicNext Hit reflectors along the Previous HitseismicNext Hit sections. This is followed by the calculation of two main Previous HitattributesNext Hit, Previous HitseismicNext Hit coherence and curvature Previous HitattributesNext Hit. The most positive and most negative curvature Previous HitattributesNext Hit allowed us to identify small faults that are below Previous HitseismicNext Hit resolution. We found that the curvature Previous HitattributesNext Hit delineate faults distribution in our area of study better than other Previous HitattributesNext Hit. The presence of these faults had been verified by the geosteering technique applied during the drilling of one of the horizontal wells in the field. As a result, this study can potentially enhance the quality interpretation of Previous HitseismicTop data and better identification of the major and minor faults that have an important implication on the fluid flow characterization of the reservoir.