1 |
Volume averaging theory (VAT) based modeling for longitudinal mass dispersion in structured porous medium with porous particles Yang C, Huang R, Lin YX, Qiu T Chemical Engineering Research & Design, 153, 582, 2020 |
2 |
A Compressible Fluid Flow Model Coupling Channel and Porous Media Flows and Its Application to Fuel Cell Materials Jarauta A, Zingan V, Minev P, Secanell M Transport in Porous Media, 134(2), 351, 2020 |
3 |
Direct numerical simulation of hydrodynamic dispersion in open-cell solid foams Chandra V, Das S, Peters EAJF, Kuipers JAM Chemical Engineering Journal, 358, 1305, 2019 |
4 |
Rigorous derivation of a new macroscopic model for modeling partially-saturated flow of a liquid in multilayered thin swelling porous media Kaffel A International Journal of Heat and Mass Transfer, 129, 1274, 2019 |
5 |
Fundamental theorem for porous media in hydrostatic equilibrium Takatsu Y International Journal of Heat and Mass Transfer, 137, 1124, 2019 |
6 |
A new efficient mass-exchange closure for modeling unsaturated flows and mass-transport processes in thin porous media Kaffel A, Pillai K, Feldkamp J, Tower T International Journal of Heat and Mass Transfer, 140, 1055, 2019 |
7 |
Computational analysis of shock-induced flow through stationary particle clouds Osnes AN, Vartdal M, Omang MG, Reif BAP International Journal of Multiphase Flow, 114, 268, 2019 |
8 |
Modeling heat transfer in gas-particle mixtures: Calculation of the macro-scale heat exchange in Eulerian-Lagrangian approaches using spatial averaging Belerrajoul M, Davit Y, Quintard M, Simonin O, Duval F International Journal of Multiphase Flow, 117, 64, 2019 |
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Mathematical model for coffee extraction based on the volume averaging theory Sano Y, Kubota S, Kawarazaki A, Kawamura K, Kashiwai H, Kuwahara F Journal of Food Engineering, 263, 1, 2019 |
10 |
Numerical Simulation of Free Surface Fluid Flows Through Porous Media by Using the Explicit MPS Method Sun XS, Sun MD, Takabatake K, Pain CC, Sakai M Transport in Porous Media, 127(1), 7, 2019 |