449
Views
6
CrossRef citations to date
0
Altmetric
Original Articles

Vortex shedding and vorticity fluxes in the wake of cylinders within a random array

, &
Pages 999-1014 | Received 01 Apr 2016, Accepted 05 Jul 2016, Published online: 11 Aug 2016

References

  • Williamson CH. Vortex dynamics in the cylinder wake. Annu Rev Fluid Mech. 1996;28:477–539.
  • Norberg C. Fluctuating lift on a circular cylinder: review and new measurements. J Fluids Struct. 2003;17:57–96.
  • Parnaudeau P, Carlier J, Heitz D, et al. Experimental and numerical studies of the flow over a circular cylinder at Reynolds number 3900. Phys Fluids. 2008;20:085101.
  • Ranjan R, Menon S. On the application of the two-level large-eddy simulation method to turbulent free-shear and wake flows. J Turbul. 2015;16:136–166.
  • Roshko A. Perspectives on bluff body aerodynamics. J Wind Eng Ind Aerodyn. 1993;49:79–100.
  • Zdravkovich M. Review of flow interference between two circular cylinders in various arrangements. J Fluids Eng. 1977;99:618–633.
  • Kiya M, Arie M, Tamura H, et al. Vortex shedding from two circular cylinders in staggered arrangement. J Fluids Eng. 1980;102:166–171.
  • Sumner D. Two circular cylinders in cross-flow: a review. J Fluids Struct. 2010;26:849–899.
  • Lam K, Lo S. A visualization study of cross-flow around four cylinders in a square configuration. J Fluids Struct. 1992;6:109–131.
  • Zhang HJ, Zhou Y. Effect of unequal cylinder spacing on vortex streets behind three side-by-side cylinders. Phys Fluids. 2001;13:3675–3686.
  • Tanino Y, Nepf HM. Lateral dispersion in random cylinder arrays at high Reynolds number. J Fluid Mech. 2008;600:339–371.
  • Tanino Y, Nepf HM. Laboratory investigation of lateral dispersion within dense arrays of randomly distributed cylinders at transitional Reynolds number. Phys Fluids. 2009;21:046603.
  • Braza M, Perrin R, Hoarau Y. Turbulence properties in the cylinder wake at high Reynolds numbers. J Fluids Struct. 2006;22:757–771.
  • Gallardo JP, Pettersen B, Andersson HI. Coherence and Reynolds stresses in the turbulent wake behind a curved circular cylinder. J Turbul. 2014;15:883–904.
  • Ricardo AM, Koll K, Franca MJ, et al. The terms of turbulent kinetic energy budget within random arrays of emergent cylinders. Water Resour Res. 2014;50:4131–4148.
  • Eames I, Jonsson C, Johnson PB. The growth of a cylinder wake in turbulent flow. J Turbul. 2011;12:1–16.
  • Brown GL, Roshko A. Turbulent shear layers and wakes. J Turbul. 2012;13:1–32.
  • Ferreira RML, Ricardo AM, Franca MJ. Discussion of “Laboratory Investigation of Mean Drag in a Random Array of Rigid, Emergent Cylinders” by Heydi M. Nepf and Yukie Tanino, Journal of Hydraulic Engineering, Vol. 134, No 1, 2008. J Hydraul Eng. 2009;135:690–693.
  • Ricardo AM, Franca M, Schleiss A, et al. Interaction of different wavelengths in a turbulent flow within a random array of rigid and emergent stems. 2nd European Congress of the International Association for Hydraulic Research and Engineering (IAHR). 2012 June 27–29; Munich, Germany.
  • Hjemfelt AT, Mockros LF. Motion of discrete particles in a turbulent fluid. Appl Sci Res. 1966;16:149–161.
  • Ricardo AM, Di Carlo S, Franca MJ, et al. Vortex interaction in patches of randomly placed emergent cylinders. In Schleiss AJ, et al., editors. Proceedings of River Flow; Florida: CRC Press; 2014. p. 63–69.
  • Schiller L, Linke W. Pressure and frictional resistance of a cylinder at Reynolds numbers 5,000 to 40,000. Z Flugtech Motorluft. 1933:24:193–198.
  • Rodríguez I, Lehmkuhl O, Chiva J, et al. On the flow past a circular cylinder from critical to super-critical Reynolds numbers: wake topology and vortex shedding. Int J Heat Fluid Fl. 2015;55:91–103.
  • Ferreira RML, Franca MJ, Leal JaGAB, et al. Flow over rough mobile beds: friction factor and vertical distribution of the longitudinal mean velocity. Water Resour Res. 2012;48:W05529-1/14.
  • Braza M, Chassaing P, Minh HH. Numerical study and physical analysis of the pressure and velocity fields in the near wake of a circular cylinder. J Fluid Mech. 1986;165:79–130.
  • Strykowski P, Sreenivasan K. On the formation and suppression of vortex ‘shedding’ at low Reynolds numbers. J Fluid Mech. 1990;218:71–107.
  • Sakamoto H, Tan K, Haniu H. An optimum suppression of fluid forces by controlling a shear layer separated from a square prism. J Fluids Eng. 1991;113:183–189.
  • Lee SJ, Lee SI, Park CW. Reducing the drag on a circular cylinder by upstream installation of a small control rod. Fluid Dyn Res. 2004;34:233–250.
  • Hunt J, Eames I. The disappearance of laminar and turbulent wakes in complex flows. J Fluid Mech. 2002;457:111–132.
  • Raffel M, Willert CE, Wereley ST, et al. Particle image velocimetry: a practical guide. 2nd ed. New York: Springer; 2007.
  • Chassaing P. Turbulence en mécanique des fluides [Turbulence in fluid mechanics]. Toulouse: Cépaduès Éditions; 2000.
  • Ricardo AM, Ferreira RML. Vorticity fluxes on the wake of cylinders within random arrays. Proceedings of 4th IAHR Europe Congress; 2016 July 27–29; Liege, Belgium.
  • Moulinec C, Hunt J, Nieuwstadt F. Disappearing wakes and dispersion in numerically simulated flows through tube bundles. Flow Turbul Combust. 2004;73:95–116.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.