Dynamic Response of Two-Degree-of-Freedom Riserless Drill String for Vortex-Induced Vibration Suppression and Enhancement

被引:0
作者
Yu Wang
Min Lou
Yangyang Wang
Chen Zhang
机构
[1] China University of Petroleum (East China),School of Petroleum Engineering
[2] Ministry of Education,Key Laboratory of Unconventional Oil & Gas Development (China University of Petroleum (East China))
来源
Journal of Ocean University of China | 2023年 / 22卷
关键词
riserless drill string; two-degree-of-freedom; vortex-induced vibration; rotation; dynamic response;
D O I
暂无
中图分类号
学科分类号
摘要
The mechanical behavior, dynamic evolution, and flow-field distribution of a two-degree-of-freedom riserless drill string were simulated numerically by using FLUENT fluid simulation software with the user-defined function embedded. The rotation angular velocities before and after the critical rotation angular velocity were used as independent variables, and the reduced velocity range was 3–14. Fluid-structure coupling was realized based on the dynamic overset grid and the SST k-ω turbulence model. Results reveal that the dynamic response of the riserless drill string was considerably affected by rotation and flow velocity, which are coupled with each other. The cross-flow average dimensionless displacement increased with the rotation angular velocity, and rotation considerably enhanced the in-line maximum average dimensionless displacement. However, the cross-flow amplitude caused by vortex-induced vibration was suppressed when the rotation angular velocity reached a certain value. The in-line and cross-flow frequencies were the same, thereby causing the trajectory to deviate from the standard ‘figure-eight’ shape and become a closed circle shape. The vortex did not fall behind the cylinder at low reduced velocity with high-rotation angular velocity, and the structure of the near-wake vortex remained U-shaped. The wake of the cylinder was deflected along the cross-flow direction, thereby leading to vibration asymmetry and resulting in increased vibration instability and disordered vibration trajectories, especially at high-rotation angular velocities.
引用
收藏
页码:612 / 626
页数:14
相关论文
共 124 条
  • [11] Frank W(1999)An experimental investigation of two-degrees-of-freedom VIV trajectories of a cylinder at different scales and natural frequency ratios Journal of Fluids and Structures 13 813-851
  • [12] Gabbai R D(2020)Motions, forces and mode transitions in vortex-induced vibrations at low mass-damping Ocean Engineering 195 106704-334
  • [13] Benaroya H(2021)A mini review of recent progress on vortex-induced vibrations of marine risers Ocean Engineering 238 109697-453
  • [14] Gao Y(2020)Investigation on the vortex-induced vibration active control of the riser in the ‘lock-in’ region based on adaptive fuzzy sliding mode theory Journal of Sound and Vibration 485 115524-876
  • [15] Fu S X(2003)Dynamic characteristics of a slender flexible cylinder excited by concomitant vortex-induced vibration and time-varying axial tension Journal of Fluid Mechanics 476 303-820
  • [16] Ren T(2018)Flow past a rotating cylinder Physics of Fluids. 30 053602-412
  • [17] Xiong Y M(1996)Three-dimensional numerical investigation of vortex-induced vibration of a rotating circular cylinder in uniform flow Experiments in Fluids 20 441-136
  • [18] Song L J(2006)The velocity field of the turbulent very near wake of a circular cylinder Journal of Fluids and Structures 22 865-235
  • [19] Hong K S(2018)Effect of blockage on vortex-induced vibrations at low Reynolds numbers Journal of Fluid Mechanics 847 786-511
  • [20] Shah U H(2020)Vortex-induced vibration of a transversely rotating sphere Journal of Wind Engineering and Industrial Aerodynamics 206 104368-66