13. Vortex pendulum

Problem Description & Analysis
A pendulum with a vertically oriented cylindrical bob is suspended above a channel of flowing water. When the bob is partially submerged, the flow may cause the pendulum to oscillate in a direction perpendicular to the flow. Explain this phenomenon and determine how it depends on relevant parameters.
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Suggested Resources
- 🔗 Vortex Dynamics — HyperPhysics (GSU)
- 🔗 Pendulum Dynamics — MIT OCW 8.01
- ▶ Pendulum Waves — Harvard Natural Sciences Demo
- 🔗 Fluid Vortex — PhET Simulation
- 📖 Williamson, C.H.K. & Govardhan, R. (2004). Vortex-induced vibrations. Annu. Rev. Fluid Mech. 36, 413–455.
- 📖 Sarpkaya, T. (2004). A critical review of the intrinsic nature of vortex-induced vibrations. J. Fluids Struct. 19(4), 389–447
- 📖 Blevins, R.D. Flow-Induced Vibration
- 📖 Sumer, B.M. & Fredsøe, J. Hydrodynamics Around Cylindrical Structures
- 📖 «Experiments on vortex-induced vibration of a vertical cylindrical structure: effect of low aspect ratio
- 📖 Large-amplitude flow-induced vibration of cylindrical pendulums» — J. Fluids Struct. (2018
- 📖 «A review on vortex-induced vibrations in confined flows» — Ocean Engineering (2023).
- 📖 Gonçalves, R.T. & Fujarra, A.L.C. (2014). Experimental study on VIV of floating circular cylinders with low aspect ratio. ASME OMAE.
- 📖 Facchinetti, de Langre & Biolley (2004). Coupled wake oscillator models for VIV
- 📖 «Piezoelectric energy extraction from a cylinder undergoing VIV using internal resonance»
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