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contributor authorJaganath, Varun Varma
contributor authorSteinfurth, Ben
date accessioned2026-08-23T08:29:48Z
date available2026-08-23T08:29:48Z
date copyright2026/04/01
date issued2026
identifier issn0098-2202
identifier otherfe-25-1483.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4316632
description abstractAbstract. Energy harvesting from vortex-induced vibrations is a promising technology that relies on the vibrations of bluff bodies due to the vortex shedding phenomenon. Increasing the vibration amplitude at a given freestream kinetic energy is equivalent to enhancing the efficiency of the harvesting device. In this study, we assess the potential of active flow control (AFC) to amplify force fluctuations. Pressurized air is ejected alternately from the top and bottom parts of a cylinder. Through experimentation in a low-speed wind tunnel (Re=8000), we show that the magnitude of lift fluctuations can be enhanced by up to a factor of three compared to the unforced flow when the actuation is aligned with the natural vortex shedding frequency. Particle image velocimetry measurements indicate that this is caused by strong streamline bending, whereas at a higher forcing frequency, fluctuations are reduced because the shedding instability is disrupted in each cycle. This work elaborates on the physics of slot blowing for amplitude enhancement, and results suggest that a significant increase in the dynamic load acting on a cylinder can be achieved with carefully chosen AFC parameters, thereby promoting future energy harvesting applications.
publisherThe American Society of Mechanical Engineers (ASME)
titlePulsed Blowing for Amplifying Unsteady Lift on a Cylinder
typeJournal Paper
journal volume148
journal issue4
journal titleJournal of Fluids Engineering
identifier doi10.1115/1.4070608
journal fristpage339
journal lastpage362
page24
treeJournal of Fluids Engineering:;2026:;volume( 148 ):;issue:004
contenttypeFulltext


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