Effects of Non-Sinusoidal Motion and Effective Angle of Attack on Energy Extraction Performance of a Fully- Activated Flapping Foil
Article dans une revue avec comité de lecture
Auteur
BOUDIS, A.
38463 Centre de Développement des Energies Renouvelables [CDER]
92874 Université des Sciences et de la Technologie Houari Boumediene = University of Sciences and Technology Houari Boumediene [Alger] [USTHB]
38463 Centre de Développement des Energies Renouvelables [CDER]
92874 Université des Sciences et de la Technologie Houari Boumediene = University of Sciences and Technology Houari Boumediene [Alger] [USTHB]
BENZAOUI, A.
92874 Université des Sciences et de la Technologie Houari Boumediene = University of Sciences and Technology Houari Boumediene [Alger] [USTHB]
92874 Université des Sciences et de la Technologie Houari Boumediene = University of Sciences and Technology Houari Boumediene [Alger] [USTHB]
Date
2021Journal
Journal of Applied Fluid MechanicsRésumé
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 is devoted to study effects of non-sinusoidal heaving trajectory, non-sinusoidal pitching trajectory, and the effective angle of attack on the energy extraction performances of a flapping foil operating at low Reynolds number (Re=1100). An elliptic function with an adjustable parameter S (flattening parameter) is used to simulate various sinusoidal and non-sinusoidal flapping trajectories. The flow around the flapping foil is simulated by solving Navier–Stokes equations using the commercial software Star CCM+ based on the finite-volume method. Overset mesh technique is used to model the flapping motion. The study is applied to the NACA0015 foil with the following kinetic parameters: a dimensionless heaving amplitude h0 = 1c, a shift angle between heaving and pitching motions f = 90 , a reduced frequency f = 0:14, and an effective angle of attack amax varying between 15 and 50 , corresponding to a pitching amplitude in the range q0 = 55:51 to 90:51 . The results show that, the non-sinusoidal trajectory affects considerably the energy extraction performances. For the reference case (sinusoidal heaving and pitching motions, Sh = Sq = 1), best performances are obtained for the effective angle of attack, amax = 40 . At small effective angle of attack amax < 30 , the non-sinusoidal pitching motion combined with a sinusoidal heaving motion, greatly improve energy extraction performances. For amax = 15 , Sh = 1 and Sq = 2, energy extraction efficiency is improved by 52.22% and the power coefficient by 70.40% comparatively to sinusoidal pitching motion. At high effective angles of attack ( amax >40 ), non-sinusoidal pitching motion has a negative effect. Performance improvement is quite limited with the combined motions non-sinusoidal heaving/sinusoidal pitching.
Fichier(s) constituant cette publication
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 ...
-
Communication avec acteBOUDIS, Ali; BENZAOUI, Ahmed; OUALLI, Hamid; GUERRI, Ouahiba; BAYEUL-LAINÉ, Annie-Claude (ISROMAC 2017, 2017)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 ...
-
Communication avec acteALLAB, Yacine; KINDINIS, Andrea; BAYEUL-LAINÉ, Annie-Claude; SIMONET, Sophie; COUTIER-DELGOSHA, Olivier (2014)More than a well-being, providing a good Indoor Climate Quality (ICQ) in education buildings is necessary for students’ health and in order to maximize academic results. In the context of a research focusing on hybrid ...
-
Communication avec acteFASSE, Guillaume; CURUTCHET, Arnaud; PAILLARD, Benoît; COUTIER-DELGOSHA, Olivier; HAUVILLE, Frederic; BAYEUL-LAINÉ, Annie-Claude (2018)In order to obtain higher propulsion efficiency for marine transportation, the authors have numerically tested a novel trochoidal propeller using a sinusoidal blade pitch function. The main results presented here are the ...