--> Abstract: Flow Units Characterization in a Dual Porosity-Permeability Carbonate Reservoir: A Case Study from Western Offshore, India, by Ajay Kumar, Aks Kakani, Calvert Stefan, Sutapa Bhadra, Arpana Sarkar, and Chandramani Shrivastva; #90105 (2010)
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Previous HitFlowNext Hit Previous HitUnitsNext Hit Previous HitCharacterizationNext Hit in a Dual Porosity-Permeability Carbonate Previous HitReservoirNext Hit: A Case Study from Western Offshore, India

Ajay Kumar1; Aks Kakani1; Calvert Stefan1; Sutapa Bhadra2; Arpana Sarkar2; Chandramani Shrivastva2

(1) BGEPIL, Mumbai, India.

(2) DCS, Schlumberger Asia Services Ltd., Mumbai, India.

Understanding the distribution of Previous HitflowNext Hit Previous HitunitsNext Hit in complex carbonate Previous HitreservoirNext Hit is of utmost importance in development planning and production optimization. The variation in Previous HitreservoirNext Hit properties along with the texture in carbonate reservoirs is a clear manifestation of the complex diagenetic changes the carbonates were subjected to. Proper analysis of the impact of such processes is imperative for decent Previous HitreservoirNext Hit Previous HitcharacterizationNext Hit and subsequent dynamic modeling.

There is little correlation between pore volume, geometry, grain size, shape and sorting in case of the carbonate reservoirs. The facies variation as identified on the image logs add to the heterogeneity of the reservoirs and give rise to different Previous HitflowNext Hit Previous HitunitsNext Hit conceptually. Determining facies type and distribution is necessity for effective Previous HitreservoirNext Hit management. Conventional logs alone are insufficient to identify and characterize the facies types, porosity distribution etc. The present study outlines a technique to integrate heterogeneity analysis with dual porosity to provide accurate and quantifiable permeability Previous HitunitsNext Hit of the Previous HitreservoirNext Hit.

Study area is situated in northern part of western offshore basin, India. It is oil producing carbonate Previous HitreservoirNext Hit having different Previous HitunitsNext Hit. The Previous HitreservoirNext Hit is heterogeneous in nature with high and low porosity Previous HitunitsNext Hit. An integrated formation evaluation technique using LWD, NMR, Electrical Imaging and Formation tester data, improved the understanding of Previous HitreservoirNext Hit heterogeneity. Image data shows different degree of diagenesis in carbonates resulting in complex textural variation. Porosity analysis from borehole image and NMR measurements show intensive solution activity and provides porosity distribution and quantification of vuggy fraction.

In order to link log data to the hydraulic properties of the Previous HitreservoirNext Hit and to provide useful and consistent porosity analysis in carbonate, pore system has been partitioned into three components: micropores, mesopores and macropores based on their pore throat diameter. Permeability is then reconstructed based on various porosity distributions. Porosity partitioning permeability analysis shows good match with MDT mobility as well as core permeability as compared to TIMUR and NMR derived permeability. Integrating the entire data set differentiates quantifiable Previous HitflowNext Hit Previous HitunitsNext Hit and results in better Previous HitreservoirNext Hit Previous HitcharacterizationNext Hit. This is a novel methodology to differentiate permeable Previous HitunitsTop in such heterogeneous carbonate reservoirs.