Experimental investigation of flow-induced vibration of a rotating circular cylinder

KWL Wong, J Zhao, DL Jacono… - Journal of Fluid …, 2017 - cambridge.org
Journal of Fluid Mechanics, 2017cambridge.org
While flow-induced vibration of bluff bodies has been extensively studied over the last half-
century, only limited attention has been given to flow-induced vibration of elastically
mounted rotating cylinders. Since recent low-Reynolds-number numerical work suggests
that rotation can enhance or suppress the natural oscillatory response, the former could find
applications in energy harvesting and the latter in vibration control. The present
experimental investigation characterises the dynamic response and wake structure of a …
While flow-induced vibration of bluff bodies has been extensively studied over the last half-century, only limited attention has been given to flow-induced vibration of elastically mounted rotating cylinders. Since recent low-Reynolds-number numerical work suggests that rotation can enhance or suppress the natural oscillatory response, the former could find applications in energy harvesting and the latter in vibration control. The present experimental investigation characterises the dynamic response and wake structure of a rotating circular cylinder undergoing vortex-induced vibration at a low mass ratio () is significantly different from numerical predictions and other experimental results recorded at significantly lower Reynolds numbers.
Cambridge University Press
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