The flow-induced vibrations of an elastically mounted circular cylinder, free to oscillate in the direction parallel to the current and subjected to a forced rotation about its axis, are investigated by means of two- and three-dimensional numerical simulations, at a Reynolds number equal to 100 based on the cylinder diameter and inflow velocity. The cylinder is found to oscillate up to a rotation rate (ratio between the cylinder surface and inflow velocities) close to 2 (first vibration region), then the body and the flow are steady until a rotation rate close to 2.7 where a second vibration region begins. Each vibration region is characterized by a specific regime of response. In the first region, the vibration amplitude follows a bell-sha...
International audienceThe one- versus two-degree-of-freedom vortex-induced vibrations of a circular ...
The present experimental investigation characterises the dynamic response and wake structure of a si...
Flow-induced vibration (FIV) of a rotating circular cylinder with high rotation rates between 4.5 an...
The flow-induced vibrations of an elastically mounted circular cylinder, free to oscillate in the st...
The flow-induced vibrations of an elastically mounted circular cylinder, free to oscillate in an arb...
While flow-induced vibration of bluff bodies has been extensively studied over the last half-century...
This study experimentally investigates the in-line flow-induced vibration (FIV) of an elastically mo...
The one- versus two-degree-of-freedom vortex-induced vibrations of a circular cylinder are investiga...
The vortex-induced vibrations of an elastically mounted circular cylinder are investigated on the ba...
International audienceThis study experimentally investigates the in-line flow-induced vibration (FIV...
The free vibrations of a flexible circular cylinder inclined at 80° within a uniform current are inv...
International audienceThe one- versus two-degree-of-freedom vortex-induced vibrations of a circular ...
The present experimental investigation characterises the dynamic response and wake structure of a si...
The free vibrations of a flexible circular cylinder inclined at 80 degrees within a uniform current ...
International audienceThe one- versus two-degree-of-freedom vortex-induced vibrations of a circular ...
International audienceThe one- versus two-degree-of-freedom vortex-induced vibrations of a circular ...
The present experimental investigation characterises the dynamic response and wake structure of a si...
Flow-induced vibration (FIV) of a rotating circular cylinder with high rotation rates between 4.5 an...
The flow-induced vibrations of an elastically mounted circular cylinder, free to oscillate in the st...
The flow-induced vibrations of an elastically mounted circular cylinder, free to oscillate in an arb...
While flow-induced vibration of bluff bodies has been extensively studied over the last half-century...
This study experimentally investigates the in-line flow-induced vibration (FIV) of an elastically mo...
The one- versus two-degree-of-freedom vortex-induced vibrations of a circular cylinder are investiga...
The vortex-induced vibrations of an elastically mounted circular cylinder are investigated on the ba...
International audienceThis study experimentally investigates the in-line flow-induced vibration (FIV...
The free vibrations of a flexible circular cylinder inclined at 80° within a uniform current are inv...
International audienceThe one- versus two-degree-of-freedom vortex-induced vibrations of a circular ...
The present experimental investigation characterises the dynamic response and wake structure of a si...
The free vibrations of a flexible circular cylinder inclined at 80 degrees within a uniform current ...
International audienceThe one- versus two-degree-of-freedom vortex-induced vibrations of a circular ...
International audienceThe one- versus two-degree-of-freedom vortex-induced vibrations of a circular ...
The present experimental investigation characterises the dynamic response and wake structure of a si...
Flow-induced vibration (FIV) of a rotating circular cylinder with high rotation rates between 4.5 an...