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and was found to consist of 10 uniform layers. One core plug, 1-inch long, from each layer was obtained for conventional core plug analysis. The

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and was found to consist of 10 uniform layers. One core plug, 1-inch long, from each layer was obtained for conventional core plug analysis. The results of the measurements are provided under the project on eCampus. The following steps were taken during the measurements: 1. Each plug was weighed as received (War). 2. The water and oil were extracted from the plug and the volume of the water (Vw) and the oil density were recorded. 3. Each plug was cleaned, dried, and the weighed (Wd). 4. Each plug was saturated with water and the weighed (Ws). 5. Each water-saturated plug was immersed in the water and the weighed (Wim). 6. The plugs were dried and were subjected to air flow tests. The outlet volume (V2) over 5 minutes was recorded after steady-state was established. The following information is also available: Air viscosity, =0.018cp Air Klinkenberg Constant, b=0.5 atm Upstream pressure =1atm(g) Outlet pressure = atmospheric Water Density, =1g/cc Grain density, g=2.68g/cc (measured by crushing the left-over pieces.) 1. Determine as received saturations, total porosity, effective porosity, and permeability for each core plug. 2. Based on the as received saturations, estimate the most likely reservoir fluid within each layer

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