ABSTRACTThe numerical study about the vortex-induced vibration and vortex shedding in the wake has been presented. Prior to the numerical simulation of flexible riser systems concerning engineering conditions, efficiency validating of the proposed FSI solution method have been performed. The comparison between numerical simulation and published experimental data shows that the CFD method designed for FSI solution could give acceptable result for the VIV prediction of flexible riser/pipe system. As meaningful study on VIV and vortex shedding mode with the focus on flexible riser model systems, two kinds of typical simulation cases have been carried out. One was related to the simulation of vortex visualization in the wake for a riser model s...
Cross-flow (CF) vortex-induced vibration (VIV) of a flexible riser considering both internal flow an...
Three dimensional responses of riser subjected to Vortex Induced Vibration (VIV) are investigated. P...
Acknowledgements A.P. would like to acknowledge the support of the National Subsea Research Institut...
Several research efforts have been directed toward the development of modelsfor response prediction ...
Three-dimensional fluid-structure interaction (FSI) simulations are conducted on a vertical riser wi...
A two-dimensional (2-D) vortex-induced vibration (VIV) prediction model for high aspect ratio (LID) ...
Due to the complex interactions of vortex-induced vibrations (VIV) and downstream wake dynamics, the...
International audienceThis study is based on the simulation of the fluid-structure interaction on ri...
Based on improving the wake-oscillator model, an analytical model for vortex-induced vibration (VIV)...
This study is based on the simulation of the fluid-structure interaction on risers. We aim to quan...
This paper presents a numerical algorithm used together with a Finite-Element based Vortex-Induced V...
This paper presents a numerical study on vortex-induced vibration (VIV) of a vertical riser subject ...
This paper experimentally identifies some non-linear effects, e.g. modal coupling effect and beating...
Vortex-induced vibration is natural phenomena where an object is exposed to moving fluid caused vibr...
In this paper, the vortex-induced force characteristics of a flexible riser with buoyancy modules an...
Cross-flow (CF) vortex-induced vibration (VIV) of a flexible riser considering both internal flow an...
Three dimensional responses of riser subjected to Vortex Induced Vibration (VIV) are investigated. P...
Acknowledgements A.P. would like to acknowledge the support of the National Subsea Research Institut...
Several research efforts have been directed toward the development of modelsfor response prediction ...
Three-dimensional fluid-structure interaction (FSI) simulations are conducted on a vertical riser wi...
A two-dimensional (2-D) vortex-induced vibration (VIV) prediction model for high aspect ratio (LID) ...
Due to the complex interactions of vortex-induced vibrations (VIV) and downstream wake dynamics, the...
International audienceThis study is based on the simulation of the fluid-structure interaction on ri...
Based on improving the wake-oscillator model, an analytical model for vortex-induced vibration (VIV)...
This study is based on the simulation of the fluid-structure interaction on risers. We aim to quan...
This paper presents a numerical algorithm used together with a Finite-Element based Vortex-Induced V...
This paper presents a numerical study on vortex-induced vibration (VIV) of a vertical riser subject ...
This paper experimentally identifies some non-linear effects, e.g. modal coupling effect and beating...
Vortex-induced vibration is natural phenomena where an object is exposed to moving fluid caused vibr...
In this paper, the vortex-induced force characteristics of a flexible riser with buoyancy modules an...
Cross-flow (CF) vortex-induced vibration (VIV) of a flexible riser considering both internal flow an...
Three dimensional responses of riser subjected to Vortex Induced Vibration (VIV) are investigated. P...
Acknowledgements A.P. would like to acknowledge the support of the National Subsea Research Institut...