Hopf bifurcation in wakes behind a rotating and translating circular cylinder
From MaRDI portal
Publication:4426459
DOI10.1063/1.868976zbMath1027.76554OpenAlexW2108717250WikidataQ58226042 ScholiaQ58226042MaRDI QIDQ4426459
De-jun Sun, Guo-Hui Hu, Bing-gang Tong, Xie-Yuan Yin
Publication date: 15 January 2004
Published in: Physics of Fluids (Search for Journal in Brave)
Full work available at URL: http://dspace.imech.ac.cn/handle/311007/39124
Related Items
Laminar flow past two rotating circular cylinders in a side-by-side arrangement ⋮ Laminar flow of power-law fluids past a rotating cylinder ⋮ Flow characteristics of two rotating side-by-side circular cylinder ⋮ Flow dynamics and forces associated with a cylinder rolling along a wall ⋮ Laminar flow past a rotating circular cylinder ⋮ Numerical estimate of the stability curve for the flow past a rotating cylinder ⋮ Numerical modeling of a viscous incompressible unsteady separated flow past a rotating cylinder ⋮ Heat and fluid flow across a rotating cylinder dissipating uniform heat flux in 2D laminar flow regime ⋮ Numerical investigation of heat and fluid flow across a rotating circular cylinder maintained at constant temperature in 2-D laminar flow regime ⋮ Laminar flow over a steadily rotating circular cylinder under the influence of uniform shear ⋮ A generalized mean-field model of the natural and high-frequency actuated flow around a high-lift configuration
Cites Work
- Steady flow past a rotating cylinder
- Steady and unsteady flow past a rotating circular cylinder at low Reynolds numbers
- On chaos in wakes
- A numerical investigation into the steady flow past a rotating circular cylinder at low and intermediate Reynolds numbers
- A vorticity model for viscous flow past a cylinder
- Time-dependent viscous flow past an impulsively started rotating and translating circular cylinder
- A finite-element study of the onset of vortex shedding in flow past variously shaped bodies
- Bénard-von Kármán instability: transient and forced regimes
- A numerical study of flow around an impulsively started circular cylinder by a deterministic vortex method
- A global stability analysis of the steady and periodic cylinder wake