Title of article :
A preconditioned solver for sharp resolution of multiphase flows at all Mach numbers
Author/Authors :
Hadikhani ، Pooria - College of Engineering University of Tehran , Majidi ، Sahand - Shahid Beheshti University , Afshari ، Asghar - College of Engineering University of Tehran
Abstract :
A preconditioned fiveequation twophase model coupled with an interface sharpening technique is introduced for simulation of a wide range of multiphase flows with both high and low Mach regimes. HartenLaxvan LeerContact (HLLC) Riemann solver is implemented for solving the discretized equations while tangent of hyperbola for interface capturing (THINC) interface sharpening method is applied to reduce the excessive diffusion of the method at the interface. In this work, preconditioning technique is used in a system of equations including viscous and capillary effects. Several one and twodimensional test cases are used to evaluate the performance and accuracy of this method. Numerical results demonstrate the efficiency of preconditioning in low Mach number flows. Comparisons between results of preconditioned and conventional system highlight the necessity of using preconditioning technique to reproduce main characteristics of lowspeed flow regimes. Additionally, preconditioned systems transform to the conventional systems at high Mach number flows thus exhibiting the same level of accuracy as the standard flow solver. Therefore, the preconditioned compressible twophase method can be used as an allspeed twophase flow solver accounting for capillary and viscous stresses.
Keywords :
Interface capturing , Multiphase flows , Preconditioning , Fiveequation model , Interface sharpening
Journal title :
Journal of Computational Applied Mechanics
Journal title :
Journal of Computational Applied Mechanics