In this experimental study, the flow structure in the wake flow region was investigated with the Particle image velocimetry technique (PIV) by attaching elastic plates at different lengths behind the cylinder. The flow structure occurred at the wake flow region altered depending on the length of the flexible matter. In this experiment, the strips with the lengths of 75, 90, 120, 135 and 180 mm were used to control instabilities. Diameter of the cylinder (D) is 60 mm and the water height (h(w)) is 600 mm. Reynolds number was kept constant as 5000 based on cylinder diameter. The images were captured at mid-height of the cylinder (h(m)) which is 250 mm. As a result of experimental studies, attached flexible strip suppressed vortex shedding occ...
American Society of Mechanical Engineers (ASME)ASME 2015 International Mechanical Engineering Congre...
Experiments were conducted in a free-surface, re-circulating water channel to determine the dependen...
The aim of present study is to control the unsteady flow structure downstream of a circular cylinder...
In the wake of the bluff bodies rigid splitter plates are known to control vortex shedding. In this ...
In this study, flow structures and downstream wake behind a flexible splitter plate attached to a ci...
The aim of the present study was to investigate details of flow structure in downstream of a circula...
The present study investigates the details of flow structure to downstream of a circular cylinder mo...
In this study, the flow characteristic of the circular cylinder was placed vertically in channel whi...
WOS: 000485728100003This study aimed to experimentally investigate the swirling flow characteristic ...
In the present work, passive control of vortex shedding behind a circular cylinder by splitter plate...
The flow behavior around a vertical circular cylinder placed in shallow water was controlled by a sp...
The control of flow in the wake of a circular cylinder by an attached permeable plate having various...
Previous work on rigid splitter plates in the wake of a bluff body has shown that the primary vortex...
American Society of Mechanical Engineers (ASME)ASME 2015 International Mechanical Engineering Congre...
Experiments were conducted in a free-surface, re-circulating water channel to determine the dependen...
The aim of present study is to control the unsteady flow structure downstream of a circular cylinder...
In the wake of the bluff bodies rigid splitter plates are known to control vortex shedding. In this ...
In this study, flow structures and downstream wake behind a flexible splitter plate attached to a ci...
The aim of the present study was to investigate details of flow structure in downstream of a circula...
The present study investigates the details of flow structure to downstream of a circular cylinder mo...
In this study, the flow characteristic of the circular cylinder was placed vertically in channel whi...
WOS: 000485728100003This study aimed to experimentally investigate the swirling flow characteristic ...
In the present work, passive control of vortex shedding behind a circular cylinder by splitter plate...
The flow behavior around a vertical circular cylinder placed in shallow water was controlled by a sp...
The control of flow in the wake of a circular cylinder by an attached permeable plate having various...
Previous work on rigid splitter plates in the wake of a bluff body has shown that the primary vortex...
American Society of Mechanical Engineers (ASME)ASME 2015 International Mechanical Engineering Congre...
Experiments were conducted in a free-surface, re-circulating water channel to determine the dependen...
The aim of present study is to control the unsteady flow structure downstream of a circular cylinder...