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Three‐dimensional remeshed smoothed particle hydrodynamics for the simulation of isotropic turbulence
Authors:Anas Obeidat  Stéphane P. A. Bordas
Affiliation:1. Institute of Computational Engineering, Faculty of Science Technology and Communication, University of Luxembourg, Luxembourg;2. Institute of Research and Development, Duy Tan University, Danang, Vietnam
Abstract:We present a remeshed particle‐mesh method for the simulation of three‐dimensional compressible turbulent flow. The method is related to the meshfree smoothed particle hydrodynamics method, but the present method introduces a mesh for efficient calculation of the pressure gradient, and laminar and turbulent diffusion. In addition, the mesh is used to remesh (reorganise uniformly) the particles to ensure a regular particle distribution and convergence of the method. The accuracy of the presented methodology is tested for a number of benchmark problems involving two‐ and three‐dimensional Taylor‐Green flow, thin double shear layer, and three‐dimensional isotropic turbulence. Two models were implemented, direct numerical simulations, and Smagorinsky model. Taking advantage of the Lagrangian advection, and the finite difference efficiency, the method is capable of providing quality simulations while maintaining its robustness and versatility.
Keywords:remesh smoothed particle hydrodynamics  turbulent flow  three‐dimensional isotropic decaying turbulence
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