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中国石油大学(北京)石油工程学院 Zhao J, Qin F, Derome Dominique, Carmeliet Jan, Simulation of Quasi-static Drainage Displacement in Porous Media on Pore-scale: Coupling Lattice Boltzmann Method and
A pore filling-based model to predict quasi-static displacement . . . We evaluate the predictive model using pore network simulations in this work and experiments in the literature, confirming that it can reasonably predict the pattern transition for immiscible displacements in ordered porous media under quasi-static conditions
GNPNM: A graph neural pore network model for predicting quasi-static . . . A computationally efficient, data-driven model is proposed for simulating quasi-static drainage processes in pore networks A graph encoder and a multi-layer perceptron are hybridized to predict fluid configurations in pore networks from their latent representations
Pore-scale fluid flow simulation coupling lattice Boltzmann method and . . . In past few years, significant efforts have been devoted to couple lattice Boltzmann method and pore network model to simulate fluid flow in porous media, aiming to combine the accuracy of lattice Boltzmann method and efficiency of pore network model
Pore-scale fluid flow simulation coupling lattice Boltzmann method and . . . In past few years, significant efforts have been devoted to couple lattice Boltzmann method and pore network model to simulate fluid flow in porous media, aiming to combine the accuracy of lattice Boltzmann method and efficiency of pore network model