scholarly journals A pressure-correction and bound-preserving discretization of the phase-field method for variable density two-phase flows

2021 ◽  
pp. 110769
Author(s):  
Chen Liu ◽  
Deep Ray ◽  
Christopher Thiele ◽  
Lu Lin ◽  
Beatrice Riviere
Author(s):  
Naoki Takada

For interface-tracking simulation of two-phase flows in various micro-fluidics devices, the applicability of two versions of Navier-Stokes phase-field method (NS-PFM) was examined, combining NS equations for a continuous fluid with a diffuse-interface model based on the van der Waals-Cahn-Hilliard free-energy theory. Through the numerical simulations, the following major findings were obtained: (1) The first version of NS-PFM gives good predictions of interfacial shapes and motions in an incompressible, isothermal two-phase fluid with high density ratio on solid surface with heterogeneous wettability. (2) The second version successfully captures liquid-vapor motions with heat and mass transfer across interfaces in phase change of a non-ideal fluid around the critical point.


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