Discrete-fracture-model of multi-scale time-splitting two-phase flow including nanoparticles transport in fractured porous media
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摘要
In this article, we consider a two-phase immiscible incompressible flow including nanoparticles transport in fractured heterogeneous porous media. The system of the governing equations consists of water saturation, Darcy’s law, nanoparticles concentration in water, deposited nanoparticles concentration on the pore-wall, and entrapped nanoparticles concentration in the pore-throat, as well as, porosity and permeability variation due to the nanoparticles deposition/entrapment on/in the pores. The discrete-fracture model (DFM) is used to describe the flow and transport in fractured porous media. Moreover, multiscale time-splitting strategy has been employed to manage different time-step sizes for different physics, such as saturation, concentration, etc. Numerical examples are provided to demonstrate the efficiency of the proposed multi-scale time splitting approach.
论文关键词:Multiscale time-splitting,IMPES,Nanoparticles,Two-phase flow,Porous media,Reservoir simulation
论文评审过程:Received 8 December 2016, Revised 2 October 2017, Accepted 8 November 2017, Available online 22 November 2017, Version of Record 22 December 2017.
论文官网地址:https://doi.org/10.1016/j.cam.2017.11.008