期刊文献+

Large eddy simulation of a vortex ring impinging on a three-dimensional circular cylinder 被引量:1

Large eddy simulation of a vortex ring impinging on a three-dimensional circular cylinder
下载PDF
导出
摘要 Abstract A vortex ring impacting a three-dimensional circular cylinder is studied using large eddy simulation (LES) for a Reynolds number Re = 4 × 10^4 based on the initial translation speed and diameter of the vortex ring. We have investigated the evolution of vortical structures and identified three typical evolution phases. When the primary vortex closely approaches to the cylinder, a secondary vortex is generated and its segment parts move inward to the primary vortex ring. Then two large-scale loop-like vortices are formed to evolve in opposite directions. Thirdly, the two loop-like vortices collide with each other to form complicated small-scale vortical structures. Moreover, a series of hair-pin vortices are generated due to the stretching and deformation of the tertiary vortex. The trajectories of vortical structures and the relevant evolution speeds are analyzed. The total kinetic energy and enstrophy are investigated to reveal their properties relevant to the three evolution phases. Abstract A vortex ring impacting a three-dimensional circular cylinder is studied using large eddy simulation (LES) for a Reynolds number Re = 4 × 10^4 based on the initial translation speed and diameter of the vortex ring. We have investigated the evolution of vortical structures and identified three typical evolution phases. When the primary vortex closely approaches to the cylinder, a secondary vortex is generated and its segment parts move inward to the primary vortex ring. Then two large-scale loop-like vortices are formed to evolve in opposite directions. Thirdly, the two loop-like vortices collide with each other to form complicated small-scale vortical structures. Moreover, a series of hair-pin vortices are generated due to the stretching and deformation of the tertiary vortex. The trajectories of vortical structures and the relevant evolution speeds are analyzed. The total kinetic energy and enstrophy are investigated to reveal their properties relevant to the three evolution phases.
出处 《Theoretical & Applied Mechanics Letters》 CAS 2013年第3期46-50,共5页 力学快报(英文版)
基金 supported by the National Natural Science Foundation of China (11132010 and 11072236) the 111 Project (B07033)
关键词 large eddy simulation vortex ring circular cylinder vortical structure high Reynoldsnumber large eddy simulation, vortex ring, circular cylinder, vortical structure, high Reynoldsnumber
  • 相关文献

参考文献15

  • 1J. D. A. Walker, C. R. Smith, and A. W. Cerra, et al., J. Fluid Meeh. 181, 99 (1987).
  • 2C. C. Chu, C. T. Wang, and C. C. Chang, Phys. Fluids 7, 1391 (1995).
  • 3P. Orlandi, Phys. Fluids A 2, 1429 (1990).
  • 4H. J. Clerex, and C. H. Bruneau, Comput. Fluids 35, 245 (2006).
  • 5M. Cheng, J. Lou, and L. S. Luo, J. Fluid Meeh. 660, 430 (2010).
  • 6L. D. Couch, and P. S. Krueger, Exp. Fluids 51, 1123 (2011).
  • 7J. Homa, M. Lucas, and D. Rockwell, J. Fluid Meeh. 197, 571 (1988).
  • 8R. Verziceo, J. B. Flor, and G. J. F. Heijst, et al., Exp. Fluids 18, 153 (1995).
  • 9T. Naitoh, B. Sun, and H. Yamada, Fluid Dyn. Res. 15, 43 (1995).
  • 10M. Sreedhar, and S. Ragab, Phys. Fluids 6, 2501 (1994).

同被引文献1

引证文献1

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部