A Navier-Stokes Solver for Compressible Turbulent Flows on Quadtree and Octree Based Cartesian Grids

Cartesian grids represent a special extent in unstructured grid literature. They employ chiefly created algorithms to produce automatic meshing while simulating flows around complex geometries without considering shape of the bodies. In this article, firstly, it is intended to produce regionally dev...

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Main Authors: E. Kara, A. İ. Kutlar, M. H. Aksel
Format: Article
Language:English
Published: Isfahan University of Technology 2019-01-01
Series:Journal of Applied Fluid Mechanics
Subjects:
Online Access:http://jafmonline.net/JournalArchive/download?file_ID=48553&issue_ID=254
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spelling doaj-3a90b724d58049f3bbecbaf0d4dd53b82020-11-25T01:10:54ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722019-01-01122539549.A Navier-Stokes Solver for Compressible Turbulent Flows on Quadtree and Octree Based Cartesian GridsE. Kara0A. İ. Kutlar1M. H. Aksel2University of Gaziantep, Gaziantep, 27310, TurkeyUniversity of Gaziantep, Gaziantep, 27310, TurkeyMiddle East Technical University, Ankara, 06800, TurkeyCartesian grids represent a special extent in unstructured grid literature. They employ chiefly created algorithms to produce automatic meshing while simulating flows around complex geometries without considering shape of the bodies. In this article, firstly, it is intended to produce regionally developed Cartesian meshes for two dimensional and three dimensional, disordered geometries to provide solutions hierarchically. Secondly, accurate results for turbulent flows are developed by finite volume solver (GeULER-NaTURe) with both geometric and solution adaptations. As a result, a “hands-off” flow solver based on Cartesian grids as the preprocessor is performed using object-oriented programming. Spalart-Allmaras turbulence model added Reynolds Averaged Navier Stokes equations are solved for the flows around airfoils and wings. The solutions are validated and verified by one two dimensional and one three dimensional turbulent flow common test cases in literature. Both case studies disclose the efficaciousness of the developed codes and qualify in convergence and accuracy.http://jafmonline.net/JournalArchive/download?file_ID=48553&issue_ID=254Cartesian grid generation; Finite volume solver; Turbulent flows; Object-oriented programming; RANS equations; Spalart-Allmaras (SA) turbulence model.
collection DOAJ
language English
format Article
sources DOAJ
author E. Kara
A. İ. Kutlar
M. H. Aksel
spellingShingle E. Kara
A. İ. Kutlar
M. H. Aksel
A Navier-Stokes Solver for Compressible Turbulent Flows on Quadtree and Octree Based Cartesian Grids
Journal of Applied Fluid Mechanics
Cartesian grid generation; Finite volume solver; Turbulent flows; Object-oriented programming; RANS equations; Spalart-Allmaras (SA) turbulence model.
author_facet E. Kara
A. İ. Kutlar
M. H. Aksel
author_sort E. Kara
title A Navier-Stokes Solver for Compressible Turbulent Flows on Quadtree and Octree Based Cartesian Grids
title_short A Navier-Stokes Solver for Compressible Turbulent Flows on Quadtree and Octree Based Cartesian Grids
title_full A Navier-Stokes Solver for Compressible Turbulent Flows on Quadtree and Octree Based Cartesian Grids
title_fullStr A Navier-Stokes Solver for Compressible Turbulent Flows on Quadtree and Octree Based Cartesian Grids
title_full_unstemmed A Navier-Stokes Solver for Compressible Turbulent Flows on Quadtree and Octree Based Cartesian Grids
title_sort navier-stokes solver for compressible turbulent flows on quadtree and octree based cartesian grids
publisher Isfahan University of Technology
series Journal of Applied Fluid Mechanics
issn 1735-3572
publishDate 2019-01-01
description Cartesian grids represent a special extent in unstructured grid literature. They employ chiefly created algorithms to produce automatic meshing while simulating flows around complex geometries without considering shape of the bodies. In this article, firstly, it is intended to produce regionally developed Cartesian meshes for two dimensional and three dimensional, disordered geometries to provide solutions hierarchically. Secondly, accurate results for turbulent flows are developed by finite volume solver (GeULER-NaTURe) with both geometric and solution adaptations. As a result, a “hands-off” flow solver based on Cartesian grids as the preprocessor is performed using object-oriented programming. Spalart-Allmaras turbulence model added Reynolds Averaged Navier Stokes equations are solved for the flows around airfoils and wings. The solutions are validated and verified by one two dimensional and one three dimensional turbulent flow common test cases in literature. Both case studies disclose the efficaciousness of the developed codes and qualify in convergence and accuracy.
topic Cartesian grid generation; Finite volume solver; Turbulent flows; Object-oriented programming; RANS equations; Spalart-Allmaras (SA) turbulence model.
url http://jafmonline.net/JournalArchive/download?file_ID=48553&issue_ID=254
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