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Erschienen in: Experiments in Fluids 4/2008

01.04.2008 | Research Article

Self-sustained oscillations between two tandem cylinders at Reynolds number 1,000

verfasst von: C. H. Kuo, S. M. Chein, H. J. Hsieh

Erschienen in: Experiments in Fluids | Ausgabe 4/2008

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Abstract

This study focuses on the self-sustained oscillatory flow characteristics between two tandem circular cylinders of equal diameter placed in a uniform inflow. The Reynolds number (Re D ), based on the cylinder diameter, was around 1,000 and all experiments were performed in a recirculating water channel. The streamwise distance between two tandem cylinders ranged within 1.5 ≤ X c/D ≤ 7.0. Here X c denotes the center-to-center distance between two tandem cylinders. For all experiments studied herein, quantitative velocity measurements were performed using hot-film anemometer and the LDV system. The laser sheet technique was employed for qualitative flow visualization. The wavelet transform was applied to elucidate the temporal variation and phase difference between two spectral components of the velocity signals detected in the flow field. The remarkable finding was that when two tandem circular cylinders were spaced at a distance within 4.5 ≤ X c/D ≤ 5.5, two symmetrical unstable shear layers with a certain wavelength were observed to impinge onto the downstream cylinder. The responding frequency (f u ), measured between these two cylinders, was much higher than the natural shedding frequency behind a single isolated cylinder at the same Re D . This responding frequency decreased as the distance X c/D increased. Not until X c/D ≥ 6.0, did it recover to the natural shedding frequency behind a single isolated cylinder. Between two tandem cylinders, the Strouhal numbers (St c = f u X c/Uc) maintained a nearly constant value of 3, indicating the self-sustained oscillating flow characteristics with a wavelength X c/3. Here U c is the convection speed of the unstable shear layers between two tandem cylinders. At Re D  = 1,000, the self-sustained oscillating characteristics between two tandem circular cylinders were proven to exhibit a sustained flow pattern, not just a sporadic phenomenon.

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Literatur
Zurück zum Zitat Alam MM, Moriya M, Sakamoto H (2002) Suppression of fluid forces acting on two circular cylinders in a tandem arrangement by passive control of flow. In: Hwung HH (ed) Proceedings of the fifth international conference on hydrodynamics,Taiwan, pp 235–240 Alam MM, Moriya M, Sakamoto H (2002) Suppression of fluid forces acting on two circular cylinders in a tandem arrangement by passive control of flow. In: Hwung HH (ed) Proceedings of the fifth international conference on hydrodynamics,Taiwan, pp 235–240
Zurück zum Zitat Alam MM, Moriya M, Takai K, Sakamoto H (2003) Fluctuating fluid forces acting on two circular cylinders in a tandem arrangement at a subcritical Reynolds number. J Wind Eng Ind Aerodyn 91:139–154CrossRef Alam MM, Moriya M, Takai K, Sakamoto H (2003) Fluctuating fluid forces acting on two circular cylinders in a tandem arrangement at a subcritical Reynolds number. J Wind Eng Ind Aerodyn 91:139–154CrossRef
Zurück zum Zitat Bearman P (1965) Investigation of the flow behind a two-dimensional model with blunt trailing edge and fitted with splitter plate. J Fluid Mech 21:241–257MATHCrossRef Bearman P (1965) Investigation of the flow behind a two-dimensional model with blunt trailing edge and fitted with splitter plate. J Fluid Mech 21:241–257MATHCrossRef
Zurück zum Zitat Berger E (1967) Suppression of vortex shedding and turbulence behind oscillating cylinder. Phys Fluids Ser A 10:S191–S193CrossRef Berger E (1967) Suppression of vortex shedding and turbulence behind oscillating cylinder. Phys Fluids Ser A 10:S191–S193CrossRef
Zurück zum Zitat Blevins RD (1985) The effect of sound on vortex shedding from cylinders. J Fluid Mech 161:217–237CrossRef Blevins RD (1985) The effect of sound on vortex shedding from cylinders. J Fluid Mech 161:217–237CrossRef
Zurück zum Zitat Carmona RA, Hwang WL, Torresani B (1997) Characterization of signals by the ridges of their wavelet transform. IEEE Trans Signal Process 45:2586–2590CrossRef Carmona RA, Hwang WL, Torresani B (1997) Characterization of signals by the ridges of their wavelet transform. IEEE Trans Signal Process 45:2586–2590CrossRef
Zurück zum Zitat Eisenlohr H, Eckelmann H (1989) Vortex splitting and its consequences in the vortex street wake of cylinders at low Reynolds number. Phys Fluids Ser A 1:189–192CrossRef Eisenlohr H, Eckelmann H (1989) Vortex splitting and its consequences in the vortex street wake of cylinders at low Reynolds number. Phys Fluids Ser A 1:189–192CrossRef
Zurück zum Zitat Gerrard JH (1978) The wakes of cylindrical bluff bodies at low Reynolds number. Philos Trans A 228:351–382CrossRef Gerrard JH (1978) The wakes of cylindrical bluff bodies at low Reynolds number. Philos Trans A 228:351–382CrossRef
Zurück zum Zitat Grossman A, Morlet J (1984) Decomposition of Hardy functions into square integrable wavelets of constant shape. SIAM Math Anal 15:723–736CrossRef Grossman A, Morlet J (1984) Decomposition of Hardy functions into square integrable wavelets of constant shape. SIAM Math Anal 15:723–736CrossRef
Zurück zum Zitat Gu ZF (1996) On the interference between two circular cylinders at supercritical Reynolds number. J Wind Eng Ind Aerodyn 62:175–190CrossRef Gu ZF (1996) On the interference between two circular cylinders at supercritical Reynolds number. J Wind Eng Ind Aerodyn 62:175–190CrossRef
Zurück zum Zitat Hetz AA, Dhaubhadel MN, Telionis DP (1991) Vortex shedding over five in-line cylinders. J Fluids Struct 5:243–257CrossRef Hetz AA, Dhaubhadel MN, Telionis DP (1991) Vortex shedding over five in-line cylinders. J Fluids Struct 5:243–257CrossRef
Zurück zum Zitat Huhe-Aode, Tatsuno M, Taneda S (1985) Visual studies of wake structure behind two cylinders in tandem arrangement. Reports Res Inst Appl Mech Kyushu Univ 32:1–20 Huhe-Aode, Tatsuno M, Taneda S (1985) Visual studies of wake structure behind two cylinders in tandem arrangement. Reports Res Inst Appl Mech Kyushu Univ 32:1–20
Zurück zum Zitat Igarashi T (1981) Characteristics of the flow around two circular cylinders arranged in tandem:first report. Bull JSME 24:323–331 Igarashi T (1981) Characteristics of the flow around two circular cylinders arranged in tandem:first report. Bull JSME 24:323–331
Zurück zum Zitat Igarashi T (1984) Characteristics of the flow around two circular cylinders arranged in tandem: second report—unique phenomenon at small spacing. Bull JSME 27:2380–2387 Igarashi T (1984) Characteristics of the flow around two circular cylinders arranged in tandem: second report—unique phenomenon at small spacing. Bull JSME 27:2380–2387
Zurück zum Zitat Igarashi T (1998) Visualization of flow around a bluff body controlled by a rod set upstream. In: Carlomagno GM, Grant I (eds) The 8th international symposium on flow visualization, September, Sorrento pp 101.1–101.6 Igarashi T (1998) Visualization of flow around a bluff body controlled by a rod set upstream. In: Carlomagno GM, Grant I (eds) The 8th international symposium on flow visualization, September, Sorrento pp 101.1–101.6
Zurück zum Zitat Ishigai S, Nishikawa E, Nishimura E, Cho K (1972) Experimental study of structure of gas flow in tube banks with tube axes normal to flow (Part 1: Karman vortex flow around two tubes at various spacings). Bull JSME 15:949–956 Ishigai S, Nishikawa E, Nishimura E, Cho K (1972) Experimental study of structure of gas flow in tube banks with tube axes normal to flow (Part 1: Karman vortex flow around two tubes at various spacings). Bull JSME 15:949–956
Zurück zum Zitat Jester W, Kallinderis Y (2003) Numerical study of incompressible flow about fixed cylinder pairs. J Fluids Struct 17:561–577CrossRef Jester W, Kallinderis Y (2003) Numerical study of incompressible flow about fixed cylinder pairs. J Fluids Struct 17:561–577CrossRef
Zurück zum Zitat Kiya M, Arie M, Tamura H, Mori H (1980) Vortex shedding from two circular cylinders in staggered arrangement. J Fluids Eng 102:166–173CrossRef Kiya M, Arie M, Tamura H, Mori H (1980) Vortex shedding from two circular cylinders in staggered arrangement. J Fluids Eng 102:166–173CrossRef
Zurück zum Zitat Lange CF, Durst F, Breuer M (1998) Momentum and heat transfer from cylinders in laminar cross flows at 10−4 ≤ Re ≤ 200. Int Heat Mass Transfer 41:3409–3430MATHCrossRef Lange CF, Durst F, Breuer M (1998) Momentum and heat transfer from cylinders in laminar cross flows at 10−4 ≤  Re ≤ 200. Int Heat Mass Transfer 41:3409–3430MATHCrossRef
Zurück zum Zitat Maurel S, Texier A (1998) Splitter plate effect on bluff body vortex formation. In: Carlomagno GM, Grant I (eds) The 8th international symposium on flow visualization, Sorrento, September, pp 264.1–264.8 Maurel S, Texier A (1998) Splitter plate effect on bluff body vortex formation. In: Carlomagno GM, Grant I (eds) The 8th international symposium on flow visualization, Sorrento, September, pp 264.1–264.8
Zurück zum Zitat Mittal S, Kumar V, Raghuvanshi A (1997) Unsteady incompressible flows past two cylinders in tandem and staggered arrangement. Int J Numer Methods Fluids 25:1315–1344MATHCrossRef Mittal S, Kumar V, Raghuvanshi A (1997) Unsteady incompressible flows past two cylinders in tandem and staggered arrangement. Int J Numer Methods Fluids 25:1315–1344MATHCrossRef
Zurück zum Zitat Mochizuki O, Kiya M, Suzuki T, Komiyama K (1993) Aerodynamic noise generated by two circular cylinders arranged in tandem. J Wind Eng Ind Aerodyn 50:107–116CrossRef Mochizuki O, Kiya M, Suzuki T, Komiyama K (1993) Aerodynamic noise generated by two circular cylinders arranged in tandem. J Wind Eng Ind Aerodyn 50:107–116CrossRef
Zurück zum Zitat Nishimura T, Itoh H, Miyashita H (1993) The influence of tube layout on flow and mass transfer characteristics in tube banks in the transitional flow regime. Int J Heat Mass Transfer 36:553–563CrossRef Nishimura T, Itoh H, Miyashita H (1993) The influence of tube layout on flow and mass transfer characteristics in tube banks in the transitional flow regime. Int J Heat Mass Transfer 36:553–563CrossRef
Zurück zum Zitat Ozono S, Watanabe K (1998) Flow control by a short splitter plate asymmetrically arranged downstream of a cylinder. Reports Res Inst Appl Mech Kyushu Univ 44:11611–11617 Ozono S, Watanabe K (1998) Flow control by a short splitter plate asymmetrically arranged downstream of a cylinder. Reports Res Inst Appl Mech Kyushu Univ 44:11611–11617
Zurück zum Zitat Rockwell D, Naudascher E (1978) Review of self-sustaining oscillations of flow past cavities. J Fluids Eng 100:152–165CrossRef Rockwell D, Naudascher E (1978) Review of self-sustaining oscillations of flow past cavities. J Fluids Eng 100:152–165CrossRef
Zurück zum Zitat Sharman B, Lien FS, Davidson L, Norberg C (2005) Numerical prediction of low Reynolds number flow over two tandem circular cylinders. Int J Numer Methods Fluids 47:423–447MATHCrossRef Sharman B, Lien FS, Davidson L, Norberg C (2005) Numerical prediction of low Reynolds number flow over two tandem circular cylinders. Int J Numer Methods Fluids 47:423–447MATHCrossRef
Zurück zum Zitat Sumner D, Price SJ, Paidoussis MP (2000) Flow pattern identification for two staggered circular cylinders in cross-flow. J Fluid Mech 411:263–303MATHCrossRef Sumner D, Price SJ, Paidoussis MP (2000) Flow pattern identification for two staggered circular cylinders in cross-flow. J Fluid Mech 411:263–303MATHCrossRef
Zurück zum Zitat Wei T, Smith CR (1986) Secondary vortices in the wake of cylinder. J Fluid Mech 169:513–533CrossRef Wei T, Smith CR (1986) Secondary vortices in the wake of cylinder. J Fluid Mech 169:513–533CrossRef
Zurück zum Zitat Wu J, Welch LW, Welsh MC, Sheridan J, Walker GJ (1994) Spanwise wake structures of a circular cylinder and two circular cylinders in tandem. Exp Thermal Fluid Sci 9:299–308CrossRef Wu J, Welch LW, Welsh MC, Sheridan J, Walker GJ (1994) Spanwise wake structures of a circular cylinder and two circular cylinders in tandem. Exp Thermal Fluid Sci 9:299–308CrossRef
Zurück zum Zitat Wu SJ, Miau JJ, Hu CC, Chou JH (2005) On low-frequency modulations and three-dimensionality in vortex shedding behind a normal plate. J Fluid Mech 526:117–146MATHCrossRef Wu SJ, Miau JJ, Hu CC, Chou JH (2005) On low-frequency modulations and three-dimensionality in vortex shedding behind a normal plate. J Fluid Mech 526:117–146MATHCrossRef
Zurück zum Zitat Zdravkovich MM (1977) Review of flow interference between two circular cylinders in various arrangements. J Fluids Eng 99:618–633 Zdravkovich MM (1977) Review of flow interference between two circular cylinders in various arrangements. J Fluids Eng 99:618–633
Zurück zum Zitat Zdravkovich MM (2003) Flow around circular cylinders: a comprehensive guide through flow phenomena, experiments, applications, mathematical models, and computer simulations, vol 2: Applications, Chap 26. Oxford University Press Inc, New York, pp 994–1016 Zdravkovich MM (2003) Flow around circular cylinders: a comprehensive guide through flow phenomena, experiments, applications, mathematical models, and computer simulations, vol 2: Applications, Chap 26. Oxford University Press Inc, New York, pp 994–1016
Metadaten
Titel
Self-sustained oscillations between two tandem cylinders at Reynolds number 1,000
verfasst von
C. H. Kuo
S. M. Chein
H. J. Hsieh
Publikationsdatum
01.04.2008
Verlag
Springer-Verlag
Erschienen in
Experiments in Fluids / Ausgabe 4/2008
Print ISSN: 0723-4864
Elektronische ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-007-0409-9

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