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Bulk Flow Regimes and Fractional Flow in 2D Porous Media by Numerical Simulations
Authors:Knudsen  Henning Arendt  Aker   Eyvind  Hansen   Alex
Affiliation:(1) Department of Physics, Norwegian University of Science and Technology, NTNU, NO-7491 Trondheim, Norway;(2) Nordita, Blegdamsvej 17, DK-2100 Copenhagen, Denmark;(3) Department of Physics, University of Oslo, NO-0316 Oslo, Norway;(4) Niels Bohr Institute, Blegdamsvej 17, DK-2100 Copenhagen, Denmark;(5) Schlumberger House, WesternGeco, Solbråvn 23, NO-1372 Asker, Norway
Abstract:
We investigate a two-dimensional network simulator that models the dynamics of two-phase immiscible bulk flow where film flow can be neglected. We present a method for simulating the detailed dynamical process where the two phases are allowed to break up into bubbles, and bubbles are allowed to merge together. The notions of drainage and imbibition are not adequate to describe this process since there is no clear front between the fluids. In fact, the simulator is constructed so that one can study the behaviour of the system far from inlets and outlets, where the two fluids have been mixed together so much that all initial fronts have broken up. The simulator gives the fractional flow as a function of the saturation of each of the fluids. For the case of two fluids with equal viscosity, we classify flow regimes that are parametrized by the capillary number.
Keywords:Network modelling  Immiscible  Two-phase flow  Capillary and viscous forces  Fractional flow  Bulk flow  Flow regimes
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