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Letture consigliate

C. Bose et al., Dynamic interlinking between near- and far-field wakes behind a pitching–heaving airfoil, J. Fluid Mech. 911, A31 (2021). M. D. de Tullio and G. Pascazio, A moving-least-squares immersed boundary method for simulating the fluid–structure interaction of elastic bodies with arbitrary thickness, J. Comput. Phys. 325, 201–225 (2016). O. Flores and M. Garcia-Villalba, Hydrodynamic interactions in tandem flapping wing systems, Phys. Rev. Fluids (2025). A. Gehrke and K. Mulleners, Highly deformable flapping membrane wings suppress the leading edge vortex in hover to perform better, Proc. Natl. Acad. Sci. U.S.A. 122(6), e2410833121 (2025). R. Godoy-Diana, Bio-inspired swimming and flying – Vortex dynamics and fluid/structure interaction, Ph.D. thesis, Univ. Pierre et Marie Curie (2014). https://hal.science/tel-01098010 H. Liu et al., Vortices and forces in biological flight: Insects, birds, and bats, Annu. Rev. Fluid Mech. 56, 147–174 (2024). D. Quinn and G. Lauder, Tunable stiffness in fish robotics: Mechanisms and advantages, Bioinspir. Biomim. 17, 011002 (2021). W. Shyy et al., Recent progress in flapping wing aerodynamics and aeroelasticity, Prog. Aerosp. Sci. 46, 284–327 (2010). A. J. Smits, Undulatory and oscillatory swimming, J. Fluid Mech. 874, P1 (2019). G. R. Spedding, The aerodynamics of flight, in *Mechanics of Animal Locomotion*, Vol. 11, pp. 52–111 (1992). https://tinyurl.com/GSbirdflight M. L. Timm et al., Multi-body hydrodynamic interactions in fishlike swimming, Appl. Mech. Rev. 76, 030801 (2024).

Luogo

Centro Internazionale di Scienze Meccaniche
Piazza G. Garibaldi, 18
33100 UDINE
Udine
Italy

Date

19/04/2026 18:0023/04/2026 18:00

Codice corso

C2601

Organizzatore

Centro Internazionale di Scienze Meccaniche
Piazza G. Garibaldi, 18
UDINE

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