Rigid splitter plates in the wake of bluff bodies are known to suppress the primary vortex shedding. In the present work, we experimentally study the problem of a flexible splitter plate in the wake of a circular cylinder. In this case, the splitter plate is free to continuously deform along its length due to the fluid forces acting on it; the flexural rigidity (EI) of the plate being an important parameter. Direct visualizations of the splitter plate motions, for very low values of flexural rigidity (EI), indicate periodic traveling wave type deformations of the splitter plate with maximum tip amplitudes of the order of I cylinder diameter. As the Reynolds number based on cylinder diameter is varied, two regimes of periodic splitter plate ...
Wind tunnel experiments were conducted to understand the turbulence-induced motions of a rigid at pl...
In the present work, passive control of vortex shedding behind a circular cylinder by splitter plate...
Splitter plates are passive flow control devices for reducing drag and suppressing vortex shedding f...
Rigid splitter plates in the wake of bluff bodies are known to suppress the primary vortex shedding....
Previous work on rigid splitter plates in the wake of a bluff body has shown that the primary vortex...
Previous work on rigid splitter plates in the wake of a bluff body has shown that the primary vort...
In the wake of the bluff bodies rigid splitter plates are known to control vortex shedding. In this ...
A computational analysis of vortex-shedding-induced vibration of a flexible splitter plate behind a ...
The effect of placing a "slip" splitter plate in the wake of a circular cylinder along the line of s...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
Numerical results of fluid flow over a rotationally oscillating circular cylinder with splitter plat...
Previous work (Eloranta et al. in Exp Fluids 39:841–855, 2005) has shown that flow separation from t...
Instabilities developing in a configuration constituted by an elastic plate clamped behind a rigid c...
The flow-induced deformation of a thin, elastic splitter plate attached to the rear of a circular cy...
In this experimental study, the flow structure in the wake flow region was investigated with the Par...
Wind tunnel experiments were conducted to understand the turbulence-induced motions of a rigid at pl...
In the present work, passive control of vortex shedding behind a circular cylinder by splitter plate...
Splitter plates are passive flow control devices for reducing drag and suppressing vortex shedding f...
Rigid splitter plates in the wake of bluff bodies are known to suppress the primary vortex shedding....
Previous work on rigid splitter plates in the wake of a bluff body has shown that the primary vortex...
Previous work on rigid splitter plates in the wake of a bluff body has shown that the primary vort...
In the wake of the bluff bodies rigid splitter plates are known to control vortex shedding. In this ...
A computational analysis of vortex-shedding-induced vibration of a flexible splitter plate behind a ...
The effect of placing a "slip" splitter plate in the wake of a circular cylinder along the line of s...
The file attached to this record is the author's final peer reviewed version. The Publisher's final ...
Numerical results of fluid flow over a rotationally oscillating circular cylinder with splitter plat...
Previous work (Eloranta et al. in Exp Fluids 39:841–855, 2005) has shown that flow separation from t...
Instabilities developing in a configuration constituted by an elastic plate clamped behind a rigid c...
The flow-induced deformation of a thin, elastic splitter plate attached to the rear of a circular cy...
In this experimental study, the flow structure in the wake flow region was investigated with the Par...
Wind tunnel experiments were conducted to understand the turbulence-induced motions of a rigid at pl...
In the present work, passive control of vortex shedding behind a circular cylinder by splitter plate...
Splitter plates are passive flow control devices for reducing drag and suppressing vortex shedding f...