نمایش مختصر رکورد

dc.contributor.authorEzzatneshan, Eslamen_US
dc.date.accessioned1399-07-08T21:51:45Zfa_IR
dc.date.accessioned2020-09-29T21:51:45Z
dc.date.available1399-07-08T21:51:45Zfa_IR
dc.date.available2020-09-29T21:51:45Z
dc.date.issued2019-08-01en_US
dc.date.issued1398-05-10fa_IR
dc.date.submitted2017-01-28en_US
dc.date.submitted1395-11-09fa_IR
dc.identifier.citationEzzatneshan, Eslam. (2019). Implementation of curved wall boundary and absorbing open boundary conditions for the D3Q19 lattice Boltzmann method for simulation of in compressible fluid flows. Scientia Iranica, 26(4), 2329-2341. doi: 10.24200/sci.2018.20608en_US
dc.identifier.issn1026-3098
dc.identifier.issn2345-3605
dc.identifier.urihttps://dx.doi.org/10.24200/sci.2018.20608
dc.identifier.urihttp://scientiairanica.sharif.edu/article_20608.html
dc.identifier.urihttps://iranjournals.nlai.ir/handle/123456789/119677
dc.description.abstractIn this work, a three-dimensional lattice Boltzmann method is developed for numerical simulation of the fluid flows around the arbitrary geometries in the wide range of Reynolds numbers. For efficient simulation of high Reynolds number flow structures in the turbulent regime, a large eddy simulation (LES) approach with the Smagorinsky subgrid turbulence model is employed. An absorbing boundary condition based on the concept of sponge layer is improved and implemented to damp the vorticity fluctuations near the open boundaries and regularize the numerical solution by significantly reducing the spurious reflections from the open boundaries. An off-lattice scheme with a polynomial interpolation is used for implementation of curved boundary conditions for the arbitrary geometries. The efficiency and accuracy of the numerical approach presented are examined by computing the low to high Reynolds number flows around the practical geometries, including the flow past a sphere in a range of Reynolds numbers from 102 to 104 and flow around the NACA0012 wing section in two different flow conditions. The present results are in good agreement with the numerical and experimental data reported in the literature. The study demonstrates the present computational technique is robust and efficient for solving flow problems with practical geometries.en_US
dc.format.extent3249
dc.format.mimetypeapplication/pdf
dc.languageEnglish
dc.language.isoen_US
dc.publisherSharif University of Technologyen_US
dc.relation.ispartofScientia Iranicaen_US
dc.relation.isversionofhttps://dx.doi.org/10.24200/sci.2018.20608
dc.subject3-D lattice Boltzmann methoden_US
dc.subjectcurved wall boundary conditionen_US
dc.subjectabsorbing open boundary conditionen_US
dc.subjecthigh Reynolds numbersen_US
dc.subjectarbitrary geometriesen_US
dc.subjectMechanical Engineeringen_US
dc.titleImplementation of curved wall boundary and absorbing open boundary conditions for the D3Q19 lattice Boltzmann method for simulation of in compressible fluid flowsen_US
dc.typeTexten_US
dc.typeArticleen_US
dc.contributor.departmentAerospace Engineering Group, Dept. of New Technologies Engineering, Shahid Beheshti University, Tehran, Iranen_US
dc.citation.volume26
dc.citation.issue4
dc.citation.spage2329
dc.citation.epage2341


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