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A class of high-order physics-preserving schemes for thermodynamically consistent model of incompressible and immiscible two-phase flow in porous media
The linear and efficient structure-preserving method for the thermodynamical consistent model of two-phase flow in porous media with rock compressibility
Using the total chemical potential to generalize the capillary pressure concept and therefrom derive a governing equation for two-phase flow in porous media
An energy stable, conservative and bounds‐preserving numerical method for thermodynamically consistent modeling of incompressible two‐phase flow in porous media with rock compressibility
Jisheng Kou, Xiuhua Wang, Huangxin Chen and Shuyu Sun International Journal for Numerical Methods in Engineering 124(11) 2589 (2023) https://doi.org/10.1002/nme.7222
An efficient and physically consistent numerical method for the Maxwell–Stefan–Darcy model of two‐phase flow in porous media
Jisheng Kou, Huangxin Chen, ShiGui Du and Shuyu Sun International Journal for Numerical Methods in Engineering 124(3) 546 (2023) https://doi.org/10.1002/nme.7131
Energy Stable and Mass Conservative Numerical Method for Gas Flow in Porous Media with Rock Compressibility