期刊文献+

A note on the numerical simulations of flow past a wavy square-section cylinder 被引量:2

A note on the numerical simulations of flow past a wavy square-section cylinder
下载PDF
导出
摘要 The flow past a square-section cylinder with a geometric disturbance is investigated by numerical simulations. The extra terms, due to the introduction of mapping transformation simulating the effect of disturbance into the transformed Navier-Stokes equations, are correctly derived, and the incorrect ones in the previous literature are pointed out and analyzed. Furthermore, the relationship between the vorticity, especially on the cylinder surface, and the disturbance is derived and explained theoretically. The computations are performed at two Reynolds numbers of 100 and 180 and three amplitudes of waviness of 0.006, 0.025 and 0.167 with another aim to explore the effects of different Reynolds numbers and disturbance on the vortex dynamics in the wake and forces on the body. Numerical results have shown that, at the mild waviness of 0.025, the Kairmain vortex shedding is suppressed completely for Re = 100, while the forced vortex dislocation is appeared in the near wake at the Reynolds number of 180. The drag reduction is up to 21.6% at Re = 100 and 25.7% at Re = 180 for the high waviness of 0.167 compared with the non-wavy cylinder. The lift and the Strouhal number varied with different Reynolds numbers and the wave steepness are also obtained. The flow past a square-section cylinder with a geometric disturbance is investigated by numerical simulations. The extra terms, due to the introduction of mapping transformation simulating the effect of disturbance into the transformed Navier-Stokes equations, are correctly derived, and the incorrect ones in the previous literature are pointed out and analyzed. Furthermore, the relationship between the vorticity, especially on the cylinder surface, and the disturbance is derived and explained theoretically. The computations are performed at two Reynolds numbers of 100 and 180 and three amplitudes of waviness of 0.006, 0.025 and 0.167 with another aim to explore the effects of different Reynolds numbers and disturbance on the vortex dynamics in the wake and forces on the body. Numerical results have shown that, at the mild waviness of 0.025, the Kairmain vortex shedding is suppressed completely for Re = 100, while the forced vortex dislocation is appeared in the near wake at the Reynolds number of 180. The drag reduction is up to 21.6% at Re = 100 and 25.7% at Re = 180 for the high waviness of 0.167 compared with the non-wavy cylinder. The lift and the Strouhal number varied with different Reynolds numbers and the wave steepness are also obtained.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2008年第1期101-105,共5页 力学学报(英文版)
基金 the National High-Tech Research and Development Program of China (863 Program)(2006AA09Z350) the Knowledge Innovation Program of the Chinese Academy of Sciences (KJCX2-YW-L02)
关键词 Numerical simulation. Geometric disturbance.Square-section cylinder Wake flow Numerical simulation. Geometric disturbance.Square-section cylinder Wake flow
  • 相关文献

参考文献8

  • 1Bearman, EW., Tombazis, N.: The effects of three-dimensional imposed disturbances on bluff body near wake flows. J. Wind Eng. Indust. Aerodyn. 49, 339-350 (1993)
  • 2Tombazis, N., Bearman, EW.: A study of three-dimensional aspects of vortex shedding from a bluff body with a mild geometric disturbance. J. Fluid Mech. 330, 85-112 (1997)
  • 3Bearman, EW., Owen, J.C.: Reduction of bluff-body drag and suppression of vortex shedding by the introduction of wavy separation lines. J. Fluids Struct. 12, 123-130 (1998)
  • 4Darekar, R.M., Sherwin, S.J.: Flow past a square-section cylinder with a wavy stagnation face. J. Fluid Mech. 426, 263-295 (2001)
  • 5Newman, D.J.: A computational study of fluid/structure interactions: flow-induced vibrations of a flexible cable. Ph.D. thesis, Princeton University, pp. 9-13 (1996)
  • 6Jeong, J., Hussain, F.: On the identification of a vortex. J. Fluid Mech. 285, 69-94 (1995)
  • 7Robichaux, J., Balachandar, S., Vanka, S.R: Three-dimensional Floquet instability of the wake of square cylinder. Phys. Fluids 11(3), 560-578 (1999)
  • 8Braza, M., Faghani, D., Persillon, H.: Successive stages and the role of natural vortex dislocations in three-dimensional wake transition. J. Fluid Mech. 439, 1-41 (2001)

同被引文献5

引证文献2

二级引证文献13

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