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Erschienen in: Experiments in Fluids 1/2007

01.07.2007 | Research Article

Effect of buoyancy on the wakes of circular and square cylinders: a schlieren-interferometric study

verfasst von: S. K. Singh, P. K. Panigrahi, K. Muralidhar

Erschienen in: Experiments in Fluids | Ausgabe 1/2007

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Abstract

Wakes behind heated cylinders, circular, and square have been experimentally investigated at low-Reynolds numbers. The electrically heated cylinder is mounted in a vertical airflow facility such that buoyancy aids the inertia of main flow. The operating parameters, i.e., Reynolds number and Richardson number are varied to examine flow behavior over a range of experimental conditions from forced to mixed convection regime. Laser schlieren-interferometry has been used for visualization and analysis of flow structures. Complete vortex shedding sequence has been recorded using a high-speed camera. The results on detailed dynamical characteristics of vortical structures, i.e., their size, shape and phase, Strouhal number, power spectra, convection velocity, phase shift, vortex inception length, and fluctuations are reported. On heating, alteration of organized (coherent) structures with respect to shape, size and their movement is readily perceived from instantaneous Schlieren images before they reduce to a steady plume. For both cylinders, Strouhal number shows a slow increase with an increase in Richardson number. At a critical value, there is complete disappearance of vortex shedding and a drop in Strouhal number to zero. The corresponding spectra evolve from being highly peaked at the vortex shedding frequency to a broadband appearance when vortex shedding is suppressed. The geometry of vortex structures transforms to a slender shape before shedding is suppressed. At this heating level, absence of multiple peaks in power spectra at cylinder centerline indicates absence of interaction between opposite shear layers. The convection velocity of vortices increases in stream wise direction to an asymptotic value and its variation is a function of Richardson number. The convection speed abruptly falls to zero at critical Richardson number. The phase difference of shed vortices between upstream and downstream location increases with an increase in Richardson number. Velocity profiles show an increase in fluid speed and beyond the critical point, buoyancy forces add enough momentum to cancel momentum deficit due to the cylinder. Overall, the combined effect of temperature gradient on the separating shear layer velocity profile in near field and vortical structures interaction in far field influences wake instability of a heated cylinder.

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Literatur
Zurück zum Zitat Anderson RC, Milton JE (1989) A large aperture inexpensive interferometer for routine flow measurements. In: IEEE Conference Proceedings on Instrumentation in aerospace simulation facilities, 18–21 September 1989, ICIASF’89 record 10.1109/ICIASF, 1989, 77693, pp 394–399 Anderson RC, Milton JE (1989) A large aperture inexpensive interferometer for routine flow measurements. In: IEEE Conference Proceedings on Instrumentation in aerospace simulation facilities, 18–21 September 1989, ICIASF’89 record 10.1109/ICIASF, 1989, 77693, pp 394–399
Zurück zum Zitat Badr HM (1984) Laminar combined convection from a horizontal cylinder-parallel and contra flow regimes. Int J Heat Mass Transf 27(1):15–27MATHCrossRefMathSciNet Badr HM (1984) Laminar combined convection from a horizontal cylinder-parallel and contra flow regimes. Int J Heat Mass Transf 27(1):15–27MATHCrossRefMathSciNet
Zurück zum Zitat Ben-yaker A, Hanson RK (2002) Ultra-fast-framing schlieren system for studies of the time evolution of jets in supersonic cross flows. Exp Fluids 32:652–666 Ben-yaker A, Hanson RK (2002) Ultra-fast-framing schlieren system for studies of the time evolution of jets in supersonic cross flows. Exp Fluids 32:652–666
Zurück zum Zitat Brackenridge JB, Peterka J (1967) Criteria for quantitative schlieren interferometry. App Opt 6(4):731–735CrossRef Brackenridge JB, Peterka J (1967) Criteria for quantitative schlieren interferometry. App Opt 6(4):731–735CrossRef
Zurück zum Zitat Chang KS, Sa JY (1990) The effect of buoyancy on the vortex shedding in the near wake of a circular cylinder. J Fluid Mech 220:253–266CrossRef Chang KS, Sa JY (1990) The effect of buoyancy on the vortex shedding in the near wake of a circular cylinder. J Fluid Mech 220:253–266CrossRef
Zurück zum Zitat Dumouchel F, Lecordier JC, Paranthoen P (1998) The effective Reynolds number of a heated cylinder. Int J Heat Mass Transf 41(12):1787–1794CrossRef Dumouchel F, Lecordier JC, Paranthoen P (1998) The effective Reynolds number of a heated cylinder. Int J Heat Mass Transf 41(12):1787–1794CrossRef
Zurück zum Zitat Gerrard JH (1966) The mechanics of the formation region of vortices behind bluff bodies. J Fluid Mech 25:401–413CrossRef Gerrard JH (1966) The mechanics of the formation region of vortices behind bluff bodies. J Fluid Mech 25:401–413CrossRef
Zurück zum Zitat Goldstein RJ (ed) (1996) Fluid mechanics measurements, 2nd edn. Taylor and Francis, New York Goldstein RJ (ed) (1996) Fluid mechanics measurements, 2nd edn. Taylor and Francis, New York
Zurück zum Zitat Jain PC, Lohar BL (1979) Unsteady mixed convection heat transfer from a horizontal circular cylinder. Trans ASME J Heat Transf 101:126–131 Jain PC, Lohar BL (1979) Unsteady mixed convection heat transfer from a horizontal circular cylinder. Trans ASME J Heat Transf 101:126–131
Zurück zum Zitat Konstantinidis E, Balabani S, Yianneskis M (2003) The effect of flow perturbations on the near wake characteristics of a circular cylinder. J Fluids Struct 18:367–386CrossRef Konstantinidis E, Balabani S, Yianneskis M (2003) The effect of flow perturbations on the near wake characteristics of a circular cylinder. J Fluids Struct 18:367–386CrossRef
Zurück zum Zitat Lecordier JC, Browne LWB, Masson SL, Dumouchel F, Paranthoen P (2000) Control of vortex shedding by thermal effect at low Reynolds numbers. Exp Th Fluid Sc 21:227–237CrossRef Lecordier JC, Browne LWB, Masson SL, Dumouchel F, Paranthoen P (2000) Control of vortex shedding by thermal effect at low Reynolds numbers. Exp Th Fluid Sc 21:227–237CrossRef
Zurück zum Zitat Lin C, Hsieh SC (2003) Convection velocity of vortex structures in the near wake of a circular cylinder. ASCE J Eng mech 129(10):1108–1118CrossRefMathSciNet Lin C, Hsieh SC (2003) Convection velocity of vortex structures in the near wake of a circular cylinder. ASCE J Eng mech 129(10):1108–1118CrossRefMathSciNet
Zurück zum Zitat Luo SC, Chew YT, Ng YT (2003) Characteristics of square cylinder wake transition flow. Phys Fluids 15(9):2549–2559CrossRef Luo SC, Chew YT, Ng YT (2003) Characteristics of square cylinder wake transition flow. Phys Fluids 15(9):2549–2559CrossRef
Zurück zum Zitat Maas WJPM, Rindt CCM, van Steenhoven AA (2003) The influence of heat on the 3D-transition of the von Karman vortex street. Int J Heat Mass Transf 46:3069–3081 Maas WJPM, Rindt CCM, van Steenhoven AA (2003) The influence of heat on the 3D-transition of the von Karman vortex street. Int J Heat Mass Transf 46:3069–3081
Zurück zum Zitat Merkin JH (1977) Mixed convection from a horizontal circular cylinder. Int J Heat Mass Transf 20:73–77CrossRef Merkin JH (1977) Mixed convection from a horizontal circular cylinder. Int J Heat Mass Transf 20:73–77CrossRef
Zurück zum Zitat Michaux-Leblond N, Belorgey M (1997) Near wake behavior of a heated circular cylinder: viscosity-buoyancy duality. Exp Therm Fluid Sci 15:91–100CrossRef Michaux-Leblond N, Belorgey M (1997) Near wake behavior of a heated circular cylinder: viscosity-buoyancy duality. Exp Therm Fluid Sci 15:91–100CrossRef
Zurück zum Zitat Muralidhar K (2001) Temperature field measurement in buoyancy-driven flows using interferometric tomography. Annu Rev Heat Transf 12:265–376 Muralidhar K (2001) Temperature field measurement in buoyancy-driven flows using interferometric tomography. Annu Rev Heat Transf 12:265–376
Zurück zum Zitat Noto K, Ishida H, Matsumoto R (1985) A breakdown of the Karman vortex street due to natural convection. Flow visualization III. Springer, Berlin, pp 348–352 Noto K, Ishida H, Matsumoto R (1985) A breakdown of the Karman vortex street due to natural convection. Flow visualization III. Springer, Berlin, pp 348–352
Zurück zum Zitat Oosthuizen PH, Madan S (1971) The effect of flow direction on combined convective heat transfer from cylinders to air. Trans ASME C J Heat Transf 93:240–242 Oosthuizen PH, Madan S (1971) The effect of flow direction on combined convective heat transfer from cylinders to air. Trans ASME C J Heat Transf 93:240–242
Zurück zum Zitat Robichaux J, Balachandar S, Vanka SP (1999) Three-dimensional Floquet instability of the wake of a square cylinder. Phys Fluids 11(3):560–578CrossRefMATHMathSciNet Robichaux J, Balachandar S, Vanka SP (1999) Three-dimensional Floquet instability of the wake of a square cylinder. Phys Fluids 11(3):560–578CrossRefMATHMathSciNet
Zurück zum Zitat Schumm M, Berger E, Monkewitz PA (1994) Self-excited oscillations in the wake of two-dimensional bluff bodies and their control. J Fluid Mech 271:17–53CrossRef Schumm M, Berger E, Monkewitz PA (1994) Self-excited oscillations in the wake of two-dimensional bluff bodies and their control. J Fluid Mech 271:17–53CrossRef
Zurück zum Zitat Settles GS (2001) Schlieren and shadowgraph techniques: visualizing phenomenon in transparent media. Springer, New York Settles GS (2001) Schlieren and shadowgraph techniques: visualizing phenomenon in transparent media. Springer, New York
Zurück zum Zitat Sharma A, Eswaran V (2004) Effect of aiding and opposing buoyancy on the heat and fluid flow across a square cylinder at Re = 100. Num Heat Transf A 45:601–624CrossRef Sharma A, Eswaran V (2004) Effect of aiding and opposing buoyancy on the heat and fluid flow across a square cylinder at Re = 100. Num Heat Transf A 45:601–624CrossRef
Zurück zum Zitat Shi JM, Gerlach D, Breuer M, Biswas G, Durst F (2004) Heating effect on steady and unsteady horizontal laminar flow of air past a circular cylinder. Phys Fluids 16(12):4331–4345CrossRef Shi JM, Gerlach D, Breuer M, Biswas G, Durst F (2004) Heating effect on steady and unsteady horizontal laminar flow of air past a circular cylinder. Phys Fluids 16(12):4331–4345CrossRef
Zurück zum Zitat Smith KM, Dutton JC (1999) A procedure for turbulent structure convection velocity measurements using time-correlated images. Exp Fluids 27:244–250CrossRef Smith KM, Dutton JC (1999) A procedure for turbulent structure convection velocity measurements using time-correlated images. Exp Fluids 27:244–250CrossRef
Zurück zum Zitat Sohankar A, Norberg C, Davidson L (1999) Simulation of three-dimensional flow around a square cylinder at moderate Reynolds numbers. Phys Fluids 11(2):288–306CrossRefMATH Sohankar A, Norberg C, Davidson L (1999) Simulation of three-dimensional flow around a square cylinder at moderate Reynolds numbers. Phys Fluids 11(2):288–306CrossRefMATH
Zurück zum Zitat Vit T, Ren M, Travnicek Z, Marsik F, Rindt CCM (2006) The influence of temperature gradient on the Strouhal-Reynolds number relationship for water and air. Exp Therm Fluid Sci. doi:10.1016/j.exptthermflusci.2006.08.002 Vit T, Ren M, Travnicek Z, Marsik F, Rindt CCM (2006) The influence of temperature gradient on the Strouhal-Reynolds number relationship for water and air. Exp Therm Fluid Sci. doi:10.1016/j.exptthermflusci.2006.08.002
Zurück zum Zitat Wang A, Travnicek Z, Chia KC (2000) On the relationship of effective Reynolds number and Strouhal number for the laminar vortex shedding of a heated circular cylinder. Phys Fluids 12(6):1401–1410CrossRefMATH Wang A, Travnicek Z, Chia KC (2000) On the relationship of effective Reynolds number and Strouhal number for the laminar vortex shedding of a heated circular cylinder. Phys Fluids 12(6):1401–1410CrossRefMATH
Zurück zum Zitat Yu MH, Monkewitz PA (1990) The effect of nonuniform density on the absolute instability of two-dimensional inertial jets and wakes. Phys Fluids A 2(7):1175–1181CrossRef Yu MH, Monkewitz PA (1990) The effect of nonuniform density on the absolute instability of two-dimensional inertial jets and wakes. Phys Fluids A 2(7):1175–1181CrossRef
Metadaten
Titel
Effect of buoyancy on the wakes of circular and square cylinders: a schlieren-interferometric study
verfasst von
S. K. Singh
P. K. Panigrahi
K. Muralidhar
Publikationsdatum
01.07.2007
Verlag
Springer-Verlag
Erschienen in
Experiments in Fluids / Ausgabe 1/2007
Print ISSN: 0723-4864
Elektronische ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-007-0329-8

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