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Using The Other End of the Capillary Previous HitPressureNext Hit Curve - Discriminating Permeability Based Rock Types With Previous HitWellNext Hit Previous HitLogsNext Hit When the Permeability Mechanism is Related to Previous HitDisplacementNext Hit Previous HitPressureNext Hit and not Porosity

By

 Yousef Al Shobaili1, Edward A. Clerke1

(1) Saudi Aramco, Dhahran, Saudi Arabia

 A large Lower Cretaceous age carbonate reservoir in Saudi Arabia contains reservoir rocks with permeabilities that vary Previous HitfromNext Hit 0.2 to 2000 md. Characterization efforts to model the reservoir proceed Previous HitfromNext Hit the very important highest permeability rock types that dominate Previous HitwellNext Hit and inflow behavior to the lower quality storage and dispersed delivery rock types.

Investigations of capillary Previous HitpressureNext Hit data suggested three petrophysical rock types (PRT’s), one petrophysical rock type with permeability related to porosity and two PRT’s with permeability unrelated to porosity but strongly related to the systematic decrease of the entry or Previous HitdisplacementNext Hit Previous HitpressureNext Hit, Pd, or the increase in the largest pore throats.

Previous HitWellNext Hit Previous HitlogsNext Hit that are sensitive to porosity are Previous HitwellNext Hit known and recognized. Our reservoir, however, needed to use Previous HitwellNext Hit log responses related to the Pd (Previous HitdisplacementNext Hit Previous HitpressureNext Hit) end of the capillary Previous HitpressureNext Hit curve. This rock property is usually assessed with invasion related Previous HitwellNext Hit log responses. A range of potential Previous HitwellNext Hit log candidates were investigated, robust discrimination of order of magnitude changes in permeability caused by increases in large pore throat sizes were successfully discriminated by the judicious use of the combination of porosity, SP and sonic Previous HitwellNext Hit Previous HitlogsTop.