The following pages link to Amgad Salama (Q349152):
Displaying 14 items.
- Accelerating Monte Carlo molecular simulations by reweighting and reconstructing Markov chains: extrapolation of canonical ensemble averages and second derivatives to different temperature and density conditions (Q349153) (← links)
- On the viscous dissipation modeling of thermal fluid flow in a porous medium (Q364820) (← links)
- Solving global problem by considering multitude of local problems: application to fluid flow in anisotropic porous media using the multipoint flux approximation (Q396042) (← links)
- Theoretical analysis and semianalytical solutions for a turbulent buoyant hydrogen-air jet (Q411079) (← links)
- Radiative mixed convection over an isothermal cone embedded in a porous medium with variable permeability (Q538980) (← links)
- Speeding up the flash calculations in two-phase compositional flow simulations - the application of sparse grids (Q729051) (← links)
- Multiphase flow simulation with gravity effect in anisotropic porous media using multipoint flux approximation (Q1645686) (← links)
- Numerical and dimensional investigation of two-phase countercurrent imbibition in porous media (Q1932778) (← links)
- Matrix-oriented implementation for the numerical solution of the partial differential equations governing flows and transport in porous media (Q2361943) (← links)
- Quasistatic analysis on configuration of two-phase flow in Y-shaped tubes (Q2400703) (← links)
- Investigation of the imbibition/drainage of two immiscible fluids in capillaries with arbitrary axisymmetric cross-sections: a generalized model (Q5097358) (← links)
- Thermodynamically consistent phase-field modelling of activated solute transport in binary solvent fluids (Q5876550) (← links)
- Thermodynamically consistent numerical modeling of immiscible two-phase flow in poro-viscoelastic media (Q6592360) (← links)
- An energy stable and positivity-preserving computational method for compressible and immiscible two-phase flow in porous media (Q6639310) (← links)