Title of article :
On the Extension of Moving Particle Method for Flow Computation in Irregular Flow Domain
Author/Authors :
Ng, K. C. Center of Fluid Dynamics (CFD) - Department of Mechanical Engineering - Universiti Tenaga Nasional, Selangor, Malaysia , Sheu, T. W. H. Center for Advanced Studies in Theoretical Sciences (CASTS) - National Taiwan University, Taipei, Taiwan , Hwang, Y. H. Department of Marine Engineering - National Kaohsiung Marine University, Taiwan
Pages :
9
From page :
465
To page :
473
Abstract :
A new numerical scheme based on the particle method, namely the Moving Particle Pressure Mesh (MPPM) method, has been previously developed by the authors to address the limitation of the conventional Moving Particle Semi-implicit (MPS) method in simulating incompressible flow. In this paper, we shall investigate on a more practical way to extend our MPPM method to handle complex geometry, i.e. by employing an embedded unstructured mesh system to cope with an arbitrarily-complex flow domain. No-slip boundary condition is modelled via placing a series of fixed particles at the wall boundaries, negating the use of ghost particles which are difficult to generate. In order to verify our numerical procedure, the vortex-shedding process behind a cylinder is computed and it is found the numerical result is agreeable with the reference solution.
Keywords :
Moving Particle Semi-implicit (MPS) , Moving Particle Pressure Mesh (MPPM) , CFD , incompressible flow , unstructured mesh , semi-Lagrangian
Journal title :
Astroparticle Physics
Serial Year :
2016
Record number :
2407561
Link To Document :
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