Numerical investigation of the effect of motion trajectory on the vortex shedding process behind a flapping airfoil
Communication avec acte
Date
2017Résumé
The effect of non-sinusoidal trajectory on the propulsive performances and the vortex shedding process behind a flapping airfoil is investigated in this study. A movement of a rigid NACA 0012 airfoil undergoing a combined heaving and pitching motions at low Reynolds number (11 000) is considered. An elliptic function with an adjustable parameter S (flatness coefficient) is used to realize various non-sinusoidal trajectories. The two-dimensional unsteady and incompressible Navier-Stokes equation governing the flow over the flapping airfoil is resolved using the commercial so ware STAR CCM+. It is shown that the combination of sinusoidal and non-sinusoidal mapping motion has a great effect on the propulsive performances of the flapping airfoil. The maximum propulsive efficiency is always achievable with sinusoidal trajectories. However, non-sinusoidal trajectories are found to considerably improve the propulsive force up to 52% larger than its natural value. Flow visualization shows that the vortex shedding process and the wake structure are substantially altered under the non-sinusoidal trajectory effect. Depending on the nature of the flapping trajectory, several modes of vortex shedding are identified and presented in this paper.
Fichier(s) constituant cette publication
- Nom:
- LMFL_ISROMAC_2017_BAYEUL-LAINE.pdf
- Taille:
- 5.074Mo
- Format:
- Description:
- Main article
Cette publication figure dans le(s) laboratoire(s) suivant(s)
Documents liés
Visualiser des documents liés par titre, auteur, créateur et sujet.
-
Article dans une revue avec comité de lectureBOUDIS, Ali; BENZAOUI, Ahmed; OUALLI, H; GUERRI, O; COUTIER-DELGOSHA, Olivier; BAYEUL-LAINÉ, Annie-Claude (Elsevier, 2018)In this study, numerical investigations on the energy extraction performance of a flapping foil device are carried out by using a modified foil shape. The new foil shape is designed by combining the thick leading edge of ...
-
Article dans une revue avec comité de lectureBOUDIS, A.; BENZAOUI, A.; OUALLI, H.; GUERRI, O.; COUTIER-DELGOSHA, Olivier; BAYEUL-LAINÉ, Annie-Claude (American Society of Mechanical Engineers, 2019)The effect of nonsinusoidal trajectory on the propulsive performances and the vortex shedding process behind a flapping airfoil is investigated in this study. A movement of a rigid NACA0012 airfoil undergoing a combined ...
-
Article dans une revue avec comité de lectureBOUDIS, A.; OUALLI, H.; BENZAOUI, A.; GUERRI, O; BAYEUL-LAINÉ, Annie-Claude; COUTIER-DELGOSHA, Olivier (Journal of Applied Fluid Mechanics, 2021)Flapping foil energy harvesting systems are considered as highly competitive devices for conventional turbines. Several research projects have already been carried out to improve performances of such new devices. This paper ...
-
Airfoil Shape Optimization of a Horizontal Axis Wind Turbine Blade using a Discrete Adjoint Solver Article dans une revue avec comité de lectureIn this study, airfoil shape optimization of a wind turbine blade is performed using the ANSYS Fluent Adjoint Solver. The aim of this optimization process is to increase the wind turbine output power, and the objective ...
-
Communication avec acteMAGHOULI, Ali; HADDADI, Mohammad; COUTIER-DELGOSHA, Olivier; SIMONET, Sophie; BAYEUL-LAINÉ, Annie-Claude (2022-06)In recent years, the idea of using a pump as a left ventricle assist device is being well developed by several groups. Meanwhile, one of the challenges in this field is the occurrence of biological phenomena such as ...