Experiments show hysteresis in hydrodynamic loads, orbiting tip vortices at higher Strouhal numbers, and data-driven scalings of forces dominated by quadratic Strouhal-number terms combined with reduced frequency.
& Smits, Alexander J.2017 Scaling the propulsive performance of heaving and pitching foils.Journal of Fluid Mechanics822, 386–397
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Hydrodynamic loads and vortex evolution from a bio-inspired pectoral fin near a solid body
Experiments show hysteresis in hydrodynamic loads, orbiting tip vortices at higher Strouhal numbers, and data-driven scalings of forces dominated by quadratic Strouhal-number terms combined with reduced frequency.