Anderson, J. M., K. Streitlien and D. S. Barrett (1998). Oscillating foils of high propulsive efficiency. Journal of Fluid Mechanics 360(360), 41-72.##
Ashraf, M. A., J. Young and J. C. S. Lai (2011). Reynolds number, thickness and camber effects on flapping airfoil propulsion. Journal of Fluids and Structures 27(2), 145-160.##
Benkherouf, T., M. Mekadem, H. Oualli, S. Hanchi, L. Keirsbulck and L. Labraga (2011). Efficiency of an auto-propelled flapping airfoil. Journal of Fluids and Structures 27(4), 552-566.##
Boudis, A., A. C. Bayeul-Laine, A. Benzaoui, H. Oualli, O. Guerri and O. Coutier-Delgosha (2019). Numerical Investigation of the Effects of Nonsinusoidal Motion Trajectories on the Propulsion Mechanisms of a Flapping Airfoil. Journal of Fluids Engineering 141(4), Article 041106.##
Chao, L.-M., G. Pan, D. Zhang and G.-X. Yan (2019). Numerical investigations on the force generation and wake structures of a nonsinusoidal pitching foil. Journal of Fluids and Structures 85, 27-39.##
Eloy, C. (2012). Optimal Strouhal number for swimming animals. Journal of Fluids and Structures 30(2), 205-218.##
Fish, F. E. and G. V. Lauder (2006). Passive and active flow control by swimming fishes and mammals. Annual Review of Fluid Mechanics 38(1), 193-224.##
Gazzola, M., M. Argentina and L. Mahadevan (2014). Scaling macroscopic aquatic locomotion. Nature Physics 10(10), 758-761.##
Gray, J. (1936). Studies in Animal Locomotion, VI. The Propulsive Powers of the Dolphin. Journal of Experimental Biology 13(2), 192-199.##
Heathcote, S., Z. Wang and I. Gursul (2008). Effect of spanwise flexibility on flapping wing propulsion. Journal of Fluids and Structures 24(2), 183-199.##
Hover, F. S., O. Haugsdal and M. S. Triantafyllou (2004). Effect of angle of attack profiles in flapping foil propulsion. Journal of Fluids and Structures 19(1), 37-47.##
Kaya, M. and I. H. Tuncer (2007). Nonsinusoidal path optimization of a flapping airfoil. AIAA Journal 45(8), 2075-2082.##
Kinsey, T. and G. Dumas (2012). Computational Fluid Dynamics Analysis of a Hydrokinetic Turbine Based on Oscillating Hydrofoils. Journal of Fluids Engineering 134(2), Article 021104.##
Lai, J. C. S. and M. F. Platzer (2015). Jet Characteristics of a Plunging Airfoil. AIAA Journal 37(12), 1529-1537.##
Lewin, G. C. and H. Haj-Hariri (2003). Modelling thrust generation of a two-dimensional heaving airfoil in a viscous flow. Journal of Fluid Mechanics 492, 339-362.##
Lighthill, M. J. (1969). Hydromechanics of Aquatic Animal Propulsion. Annual Review of Fluid Mechanics 1(1), 413-446.##
Lighthill, M. J. (1970). Aquatic animal propulsion of high hydromechanical efficiency. Journal of Fluid Mechanics 44(2), 265-301.##
Ljungqvist, B. D. (1999). Flapping and flexible wings for biological and micro air vehicles. Progress in Aerospace Sciences 35(5), 455-505.##
Nguyen, T. A., H. Vu Phan, T. K. L. Au, H. C. J. B. Park (2016). Experimental study on thrust and power of flapping-wing system based on rack-pinion mechanism. Bioinspiration and Biomimetics 11(4), 046001.##
Olivier, M. and G. Dumas (2016). Effects of mass and chordwise flexibility on 2D self-propelled flapping wings. Journal of Fluids and Structures 64, 46-66.##
Pedro, G., A. Suleman and N. Djilali (2003). A numerical study of the propulsive efficiency of a flapping hydrofoil. International Journal for Numerical Methods in Fluids 42(5), 493-526.##
Platzer, M. F., K. D. Jones, J. Young and J. C. S. Lai (2008). Flapping-wing aerodynamics: Progress and challenges. AIAA Journal 46(9), 2136-2149.##
Qadri, M. N. M., A. Shahzad, F. Zhao and H. Tang (2019). An Experimental Investigation of a Passively Flapping Foil in Energy Harvesting Mode. Journal of Applied Fluid Mechanics 12(5), 1547-1561.##
Qi, Z., J. Zhai, G. Lie and J. Peng (2019). Effects of non-sinusoidal pitching motion on the propulsion performance of an oscillating foil. PloS One 14(7), Article e0218832.##
Read, D. A., F. S. Hover and M. S. Triantafyllou (2003). Forces on oscillating foils for propulsion and maneuvering. Journal of Fluids and Structures 17(1), 163-183.##
Schouveiler, L., F. S. Hover and M. S. Triantafyllou (2005). Performance of flapping foil propulsion. Journal of Fluids and Structures 20(7), 949-959.##
Triantafyllou, G. S., M. S. Triantafyllou and M. A. Grosenbaugh (1993). Optimal Thrust Development in Oscillating Foils with Application to Fish Propulsion. Journal of Fluids and Structures 7(2), 205-224.##
Triantafyllou, M. S., G. S. Triantafyllou and D. K. P. Yue (2000). Hydrodynamics of fishlike swimming. Annual Review of Fluid Mechanics 32, 33.##
Triantafyllou, M. S., A. H. Techet and F. S. Hover (2004). Review of experimental work in biomimetic foils. IEEE Journal of Oceanic Engineering 29(3), 585-594.##
Tuncer, I. H. and M. Kaya (2005). Optimization of flapping airfoils for maximum thrust and propulsive efficiency. AIAA Journal 43(11), 2329-2336.##
Xiao, Q. and W. Liao (2010). Numerical investigation of angle of attack profile on propulsion performance of an oscillating foil. Computers and Fluids 39(8), 1366-1380.##
Xu, L., F.-B. Tian, J. C. S. Lai and J. Young (2021). Optimal Efficiency and Heaving Velocity in Flapping Foil Propulsion. AIAA Journal 59(6), 2143-+.##
Young, J. and S. Lai, J. C. (2004). Oscillation frequency and amplitude effects on the wake of a plunging airfoil. AIAA Journal 42(10), 2042-2052.##
Young, J. and J. C. S. Lai (2007). Mechanisms Influencing the Efficiency of Oscillating Airfoil Propulsion. AIAA Journal 45(7), 1695-1702.##