Numerical solution of inviscid and viscous flow around the profile

This work deals with the 2D numerical solution of inviscid compressible flow and viscous compressible laminar and turbulent flow around the profile. In a case of turbulent flow algebraic Baldwin-Lomax model is used and compared with Wilcox’s k-ω model. Calculations are done in GAMM channel computati...

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Main Authors: Slouka Martin, Kozel Karel, Prihoda Jaromir
Format: Article
Language:English
Published: EDP Sciences 2015-01-01
Series:EPJ Web of Conferences
Online Access:http://dx.doi.org/10.1051/epjconf/20159202082
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author Slouka Martin
Kozel Karel
Prihoda Jaromir
author_facet Slouka Martin
Kozel Karel
Prihoda Jaromir
author_sort Slouka Martin
collection DOAJ
description This work deals with the 2D numerical solution of inviscid compressible flow and viscous compressible laminar and turbulent flow around the profile. In a case of turbulent flow algebraic Baldwin-Lomax model is used and compared with Wilcox’s k-ω model. Calculations are done in GAMM channel computational domain with 10% DCA profile and in turbine cascade computational domain with 8% DCA profile. Numerical methods are based on a finite volume solution and compared with experimental measurements for 8% DCA profile.
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spelling doaj.art-f1050c07bf3b4624bd0fe0053a70273d2022-12-21T23:29:46ZengEDP SciencesEPJ Web of Conferences2100-014X2015-01-01920208210.1051/epjconf/20159202082epjconf_efm2014_02082Numerical solution of inviscid and viscous flow around the profileSlouka Martin0Kozel Karel1Prihoda Jaromir2Dept. of Technical Mathematics, Faculty of Mechanical Eng., CTU in PragueDept. of Technical Mathematics, Faculty of Mechanical Eng., CTU in PragueInstitute of Thermomechanics, Academy of Science CRThis work deals with the 2D numerical solution of inviscid compressible flow and viscous compressible laminar and turbulent flow around the profile. In a case of turbulent flow algebraic Baldwin-Lomax model is used and compared with Wilcox’s k-ω model. Calculations are done in GAMM channel computational domain with 10% DCA profile and in turbine cascade computational domain with 8% DCA profile. Numerical methods are based on a finite volume solution and compared with experimental measurements for 8% DCA profile.http://dx.doi.org/10.1051/epjconf/20159202082
spellingShingle Slouka Martin
Kozel Karel
Prihoda Jaromir
Numerical solution of inviscid and viscous flow around the profile
EPJ Web of Conferences
title Numerical solution of inviscid and viscous flow around the profile
title_full Numerical solution of inviscid and viscous flow around the profile
title_fullStr Numerical solution of inviscid and viscous flow around the profile
title_full_unstemmed Numerical solution of inviscid and viscous flow around the profile
title_short Numerical solution of inviscid and viscous flow around the profile
title_sort numerical solution of inviscid and viscous flow around the profile
url http://dx.doi.org/10.1051/epjconf/20159202082
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AT prihodajaromir numericalsolutionofinviscidandviscousflowaroundtheprofile