000 02091nab a2200205 4500
005 20260520002030.0
008 260224s2011 xxu
245 0 0 _aCFD-based representation of non-Newtonian polymer injectivity for a horizontal well with coupled formation-wellbore hydraulics
260 _a
_b
_cjul. 2011
270 _a18/11/2011 ; 18/11/2011
300 _a10 p. ; 86-95
520 _aTranscripción del resumen del autor. Polymers are often injected into horizontal wells during enhanced oil recovery (EOR) processes. During injection of these high-viscosity, non-Newtonian polymers, a significant pressure drop may occur along the length of the well. Accurate models for pressure drop in the well and polymer leakage into the reservoir are necessary for simulation but presently do not exist. We developed new, approximate models for pressure in horizontal wells based on Computational Fluid Dynamics (CFD) modeling of coupled well/reservoir flow. Here, the polymer is shear-thinning in the wellbore and may exhibit viscoelastic effects (such as shear-thickening behavior) in the surrounding reservoir. The CFD results are used to improve existing analytical models for simple, Newtonian flows. The closed-form model accounts for fluid, well, and reservoir properties and can easily be implemented into conventional reservoir simulators. The CFD-based model was directly implemented into the reservoir simulator UTCHEM to evaluate the effect of pressure loss in the well on sweep efficiency. Early times (less than 100 days) yielded a significant loss in oil recovery when compared to the uniform-pressure assumption for the well. However, at later times the recovery loss was negligible, suggesting a uniform-pressure well may be a reasonable assumption at these time scales, even for highly-viscous polymer fluids
581 _a1
773 0 _tJournal of Petroleum Science & Engineering
_g78
942 _cARTICULO
100 1 _aJackson, Gregory T.
_952132
100 1 _aBalhoff, Matthew T.
_951780
100 1 _aMojdeh, Delshad
_952133
999 _c186571
_d186571