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Numerical simulation of single-phase and multiphase non-Darcy flowin porous and fractured reservoirs

Journal Article · · Transport in Porous Media
OSTI ID:861175

A numerical method as well as a theoretical study of non-Darcy fluid flow of through porous and fractured reservoirs is described. The non-Darcy flow is handled in a three-dimensional, multiphase flow reservoir simulator, while the model formulation incorporates the Forchheimer equation for describing single-phase or multiphase non-Darcy flow and displacement. The numerical scheme has been verified by comparing its results against those of analytical methods. Numerical solutions are used to obtain some insight into the physics of non-Darcy flow and displacement in reservoirs. In addition, several type curves are provided for well-test analyses of non-Darcy flow to demonstrate a methodology for modeling this type of flow in porous and fractured rocks, including flow in geothermal reservoirs.

Research Organization:
Ernest Orlando Lawrence Berkeley NationalLaboratory, Berkeley, CA (US)
Sponsoring Organization:
USDOE Assistant Secretary for Energy Efficiency andRenewable Energy
DOE Contract Number:
AC02-05CH11231
OSTI ID:
861175
Report Number(s):
LBNL--45855; BnR: EB4001000
Journal Information:
Transport in Porous Media, Journal Name: Transport in Porous Media Journal Issue: 2 Vol. 49; ISSN TPMEEI
Country of Publication:
United States
Language:
English

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