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  • The aeroelasticity describes the structure movement induced by the fluid flow. In this paper, the fluid flow is solved and the rigid structure movement is defined by a time-dependent function. The character of low velocity air flow over the non-vibrating and vibrating NACA 0012 profile is described for various flow models (laminar, turbulent). The results gained by a numerical simulation provided by ANSYS Fluent software and a solver based on discontinuous Galerkin finite element method are compared with experimental data. The goal of this work is to consider the suitability of the used models of viscous flow and numerical methods for this problem.
  • The aeroelasticity describes the structure movement induced by the fluid flow. In this paper, the fluid flow is solved and the rigid structure movement is defined by a time-dependent function. The character of low velocity air flow over the non-vibrating and vibrating NACA 0012 profile is described for various flow models (laminar, turbulent). The results gained by a numerical simulation provided by ANSYS Fluent software and a solver based on discontinuous Galerkin finite element method are compared with experimental data. The goal of this work is to consider the suitability of the used models of viscous flow and numerical methods for this problem. (en)
Title
  • Investigation of flow over non-vibrating and vibrating airfoil
  • Investigation of flow over non-vibrating and vibrating airfoil (en)
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  • Investigation of flow over non-vibrating and vibrating airfoil
  • Investigation of flow over non-vibrating and vibrating airfoil (en)
skos:notation
  • RIV/47718684:_____/14:#0000577!RIV15-MPO-47718684
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  • I, Z(MSM4771868401)
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  • 22729
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  • RIV/47718684:_____/14:#0000577
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  • NACA 0012; vibrating airfoil; flow around body; turbulent flow (en)
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  • [4E41614DEC72]
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  • Železná Ruda - Špičák
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  • Plzeň
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  • Proceedings of 30th Conference with International Participation Computational Mechanics 2014
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  • Klečková, Jitka
  • Hamza, Jan
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number of pages
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  • Západočeská univerzita v Plzni
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  • 978-80-261-0429-2
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