Numerical simulation of flow induced airfoil vibrations with large amplitudes
- Programs and Algorithms of Numerical Mathematics, Publisher: Institute of Mathematics CAS(Prague), page 186-194
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topWinter, Ondřej, and Sváček, Petr. "Numerical simulation of flow induced airfoil vibrations with large amplitudes." Programs and Algorithms of Numerical Mathematics. Prague: Institute of Mathematics CAS, 2019. 186-194. <http://eudml.org/doc/294938>.
@inProceedings{Winter2019,
abstract = {This paper is interested with the numerical simulation of the fluid-structure interaction problem realized with the aid of the OpenFOAM package. The case of flow past oscillating NACA 0012 profile was chosen. The loose, strong and combined strong coupling algorithms were tested. The results are presented and a significant improvement of the combined coupling algorithm is shown.},
author = {Winter, Ondřej, Sváček, Petr},
booktitle = {Programs and Algorithms of Numerical Mathematics},
keywords = {finite volume method; OpenFOAM; aeroelasticity; arbitrary lagrangian eulerian method},
location = {Prague},
pages = {186-194},
publisher = {Institute of Mathematics CAS},
title = {Numerical simulation of flow induced airfoil vibrations with large amplitudes},
url = {http://eudml.org/doc/294938},
year = {2019},
}
TY - CLSWK
AU - Winter, Ondřej
AU - Sváček, Petr
TI - Numerical simulation of flow induced airfoil vibrations with large amplitudes
T2 - Programs and Algorithms of Numerical Mathematics
PY - 2019
CY - Prague
PB - Institute of Mathematics CAS
SP - 186
EP - 194
AB - This paper is interested with the numerical simulation of the fluid-structure interaction problem realized with the aid of the OpenFOAM package. The case of flow past oscillating NACA 0012 profile was chosen. The loose, strong and combined strong coupling algorithms were tested. The results are presented and a significant improvement of the combined coupling algorithm is shown.
KW - finite volume method; OpenFOAM; aeroelasticity; arbitrary lagrangian eulerian method
UR - http://eudml.org/doc/294938
ER -
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