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Erschienen in: Experiments in Fluids 4/2006

01.10.2006 | Research Article

A study of a turbulent boundary layer in stalled-airfoil-type flow conditions

verfasst von: Yvan Maciel, Karl-Stéphane Rossignol, Jean Lemay

Erschienen in: Experiments in Fluids | Ausgabe 4/2006

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Abstract

The experimental study of the turbulent boundary layer under external flow conditions similar to those found on the suction side of airfoils in trailing-edge post-stall conditions has been performed. Detailed boundary layer measurements were carried out with a PIV system and a two-sensor wall probe. They cover the region downstream of the suction peak where the boundary layer is subjected to a very strong adverse pressure gradient and has suffered from an abrupt transition from strong favorable to strong adverse pressure gradients. The experiments show that in spite of these severe conditions, the boundary layer is surprisingly able to recover a state of near-equilibrium before separating. In this near-equilibrium zone, the mean velocity defect and all the measured Reynolds stresses are self-similar (in the outer region) with respect to the outer scales δ and U e δ*/δ. The mean momentum balance indicates that for the upper half of the outer region, the advection terms dominate all the stress-gradient terms in the zone prior to separation. A large portion of the outer region has therefore become essentially an inertial flow zone where an approach toward equilibrium is expected.

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Literatur
Zurück zum Zitat Alving AE, Fernholz HH (1996) Turbulence measurements around a mild separation bubble and downstream of reattachment. J Fluid Mech 322:297–328CrossRef Alving AE, Fernholz HH (1996) Turbulence measurements around a mild separation bubble and downstream of reattachment. J Fluid Mech 322:297–328CrossRef
Zurück zum Zitat Angele K (2003) Experimental studies of turbulent boundary layers separation and control. Ph.D dissertation, Department of Mechanics, KTH, Stockholm, Sweden, 81–105 Angele K (2003) Experimental studies of turbulent boundary layers separation and control. Ph.D dissertation, Department of Mechanics, KTH, Stockholm, Sweden, 81–105
Zurück zum Zitat Buschmann MH, Gad-el-Hak M (2003) Debate concerning the mean velocity profile of a turbulent boundary layer. AIAA J 41:1–8CrossRef Buschmann MH, Gad-el-Hak M (2003) Debate concerning the mean velocity profile of a turbulent boundary layer. AIAA J 41:1–8CrossRef
Zurück zum Zitat Castillo L, George WK (2001) Similarity analysis for turbulent boundary layer with pressure gradient: outer flow. AIAA J 39:41–47CrossRef Castillo L, George WK (2001) Similarity analysis for turbulent boundary layer with pressure gradient: outer flow. AIAA J 39:41–47CrossRef
Zurück zum Zitat Castillo L, Wang X (2004) Similarity analysis for nonequilibrium turbulent boundary layers. ASME J Fluids Eng 126:827–834CrossRef Castillo L, Wang X (2004) Similarity analysis for nonequilibrium turbulent boundary layers. ASME J Fluids Eng 126:827–834CrossRef
Zurück zum Zitat Castillo L, Wang X, George WK (2004) Separation criterion for turbulent boundary layers via similarity analysis. ASME J Fluids Eng 126:297–304CrossRef Castillo L, Wang X, George WK (2004) Separation criterion for turbulent boundary layers via similarity analysis. ASME J Fluids Eng 126:297–304CrossRef
Zurück zum Zitat Clauser FH (1954) The turbulent boundary layer in adverse pressure gradient. J Aeronaut Sci 21:91–108 Clauser FH (1954) The turbulent boundary layer in adverse pressure gradient. J Aeronaut Sci 21:91–108
Zurück zum Zitat Clauser FH (1956) The turbulent boundary layer. Adv Appl Mech 4:1–51 Clauser FH (1956) The turbulent boundary layer. Adv Appl Mech 4:1–51
Zurück zum Zitat Coles D, Wadcock AJ (1979) Flying-hot-wire study of the flow past a NACA 4412 airfoil at maximum lift. AIAA J 17:321–329CrossRef Coles D, Wadcock AJ (1979) Flying-hot-wire study of the flow past a NACA 4412 airfoil at maximum lift. AIAA J 17:321–329CrossRef
Zurück zum Zitat Dengel P, Fernholz HH (1990) An experimental investigation of an incompressible turbulent boundary layer in the vicinity of separation. J Fluid Mech 212:615–636CrossRef Dengel P, Fernholz HH (1990) An experimental investigation of an incompressible turbulent boundary layer in the vicinity of separation. J Fluid Mech 212:615–636CrossRef
Zurück zum Zitat Dianat M, Castro IP (1991) Turbulence in a Separated Boundary Layer. J Fluid Mech 226:91–123CrossRef Dianat M, Castro IP (1991) Turbulence in a Separated Boundary Layer. J Fluid Mech 226:91–123CrossRef
Zurück zum Zitat Drela M (1996) XFOIL v6.8, User Primer. Department of Aeronautics and Astronautics, Massachusetts Institute of Technology Drela M (1996) XFOIL v6.8, User Primer. Department of Aeronautics and Astronautics, Massachusetts Institute of Technology
Zurück zum Zitat Driver DM (1991) Reynolds shear stress measurements in a separated boundary layer flow. AIAA paper 91–1787 Driver DM (1991) Reynolds shear stress measurements in a separated boundary layer flow. AIAA paper 91–1787
Zurück zum Zitat Elsberry K, Loeffler J, Zhou MD, Wygnanski I (2000) An experimental study of a boundary layer that is maintained on the verge of separation. J Fluid Mech 423:227–261CrossRefMATH Elsberry K, Loeffler J, Zhou MD, Wygnanski I (2000) An experimental study of a boundary layer that is maintained on the verge of separation. J Fluid Mech 423:227–261CrossRefMATH
Zurück zum Zitat George WK (2005) Recent advancements toward the understanding of turbulent boundary layers. AIAA paper 2005–4669 George WK (2005) Recent advancements toward the understanding of turbulent boundary layers. AIAA paper 2005–4669
Zurück zum Zitat Gleyzes C, Capbern P (2003) Experimental study of two AIRBUS/ONERA airfoils in near stall conditions. Part I: Boundary layers. Aerosol Sci Technol 7:439–449CrossRef Gleyzes C, Capbern P (2003) Experimental study of two AIRBUS/ONERA airfoils in near stall conditions. Part I: Boundary layers. Aerosol Sci Technol 7:439–449CrossRef
Zurück zum Zitat Hastings RC, Williams BR (1987) Studies of the flow field near a NACA 4412 aerofoil at nearly maximum lift. Aeronaut J 91:29–44 Hastings RC, Williams BR (1987) Studies of the flow field near a NACA 4412 aerofoil at nearly maximum lift. Aeronaut J 91:29–44
Zurück zum Zitat Maciel Y, Rossignol KS and Lemay J (2006) Self-similarity in the outer region of adverse-pressure-gradient turbulent boundary layers. AIAA J (in press) Maciel Y, Rossignol KS and Lemay J (2006) Self-similarity in the outer region of adverse-pressure-gradient turbulent boundary layers. AIAA J (in press)
Zurück zum Zitat Maciel, Y, Rossignol KS and Lemay J (2005) Experimental study of an airfoil-type separated turbulent boundary layer. 35th AIAA Fluid Dyn Conf. Paper AIAA-2005–5291, Toronto, 6–9 June 2005 Maciel, Y, Rossignol KS and Lemay J (2005) Experimental study of an airfoil-type separated turbulent boundary layer. 35th AIAA Fluid Dyn Conf. Paper AIAA-2005–5291, Toronto, 6–9 June 2005
Zurück zum Zitat Marusic I, Perry AE (1995) A wall-wake model for the turbulence structure of boundary layers. Part 2. Further experimental support. J Fluid Mech 298:389–407CrossRef Marusic I, Perry AE (1995) A wall-wake model for the turbulence structure of boundary layers. Part 2. Further experimental support. J Fluid Mech 298:389–407CrossRef
Zurück zum Zitat Mellor GL, Gibson DM (1966) Equilibrium turbulence boundary layers. J Fluid Mech 24:225–253CrossRef Mellor GL, Gibson DM (1966) Equilibrium turbulence boundary layers. J Fluid Mech 24:225–253CrossRef
Zurück zum Zitat Morel T (1975) Comprehensive design of axisymmetric wind tunnel contractions. ASME J Fluids Eng 97:225–233 Morel T (1975) Comprehensive design of axisymmetric wind tunnel contractions. ASME J Fluids Eng 97:225–233
Zurück zum Zitat Neumann J, Wengle H (2004) Coherent structures in controlled separated flow over sharp-edged and rounded steps. J Turbulence 5:022 Neumann J, Wengle H (2004) Coherent structures in controlled separated flow over sharp-edged and rounded steps. J Turbulence 5:022
Zurück zum Zitat Pageau A (2004) Mesures du frottement pariétal avec une sonde à deux fils. Tech Report, Department of Mech Eng, Laval University, Quebec City, Canada Pageau A (2004) Mesures du frottement pariétal avec une sonde à deux fils. Tech Report, Department of Mech Eng, Laval University, Quebec City, Canada
Zurück zum Zitat Panton RL (2005) Review of wall turbulence as described by composite expansions. Appl Mech Rev 58:1–36CrossRef Panton RL (2005) Review of wall turbulence as described by composite expansions. Appl Mech Rev 58:1–36CrossRef
Zurück zum Zitat Patrick WP (1987) Flowfield measurements in a separated and reattached flat plate turbulent boundary layer. NASA CR-4052 Patrick WP (1987) Flowfield measurements in a separated and reattached flat plate turbulent boundary layer. NASA CR-4052
Zurück zum Zitat Perry AE, Schofield WH (1973) Mean velocity and shear stress distributions in turbulent boundary layers. Phys Fluids 16:2068–2074CrossRef Perry AE, Schofield WH (1973) Mean velocity and shear stress distributions in turbulent boundary layers. Phys Fluids 16:2068–2074CrossRef
Zurück zum Zitat Rotta J (1950) Über die Theorie der turbulenten Grenzschichten. Mitt. Max Planck Inst Strömungsforsch. Göttingen No.1; translated as: Rotta J (1953) On the theory of turbulent boundary layers. NACA TM-1344 Rotta J (1950) Über die Theorie der turbulenten Grenzschichten. Mitt. Max Planck Inst Strömungsforsch. Göttingen No.1; translated as: Rotta J (1953) On the theory of turbulent boundary layers. NACA TM-1344
Zurück zum Zitat Rotta JC (1962) Turbulent boundary layers in incompressible flow. Prog Aero Sci 2:1–219CrossRef Rotta JC (1962) Turbulent boundary layers in incompressible flow. Prog Aero Sci 2:1–219CrossRef
Zurück zum Zitat Skåre PE, Krogstad PÅ (1994) A turbulent equilibrium boundary layer near separation. J Fluid Mech 272:319–348CrossRef Skåre PE, Krogstad PÅ (1994) A turbulent equilibrium boundary layer near separation. J Fluid Mech 272:319–348CrossRef
Zurück zum Zitat Skote M, Henningson DS (2002) Direct numerical simulation of a separated turbulent boundary layer. J Fluid Mech 471:107–136CrossRefMATH Skote M, Henningson DS (2002) Direct numerical simulation of a separated turbulent boundary layer. J Fluid Mech 471:107–136CrossRefMATH
Zurück zum Zitat Skote M, Henningson DS, Henkes RAWM (1998) Direct numerical simulation of self-similar turbulent boundary layers in adverse pressure gradients. Flow Turb Combust 60:47–85CrossRefMATH Skote M, Henningson DS, Henkes RAWM (1998) Direct numerical simulation of self-similar turbulent boundary layers in adverse pressure gradients. Flow Turb Combust 60:47–85CrossRefMATH
Zurück zum Zitat Simpson RL (1985) Two-dimensional turbulent separated flow. AGARDograph 287 vol 1 Simpson RL (1985) Two-dimensional turbulent separated flow. AGARDograph 287 vol 1
Zurück zum Zitat Simpson RL (1989) Turbulent boundary-layer separation. Ann Rev Fluid Mech 21:205–234CrossRef Simpson RL (1989) Turbulent boundary-layer separation. Ann Rev Fluid Mech 21:205–234CrossRef
Zurück zum Zitat Simpson RL, Chew Y-T, Shivaprasad BG (1981) The structure of a separating turbulent boundary layer. Part 1. Mean flow and Reynolds stresses. J Fluid Mech 113:23–51CrossRef Simpson RL, Chew Y-T, Shivaprasad BG (1981) The structure of a separating turbulent boundary layer. Part 1. Mean flow and Reynolds stresses. J Fluid Mech 113:23–51CrossRef
Zurück zum Zitat Song S, Eaton JK (2004a) Reynolds number effects on a turbulent layer with separation, reattachment, and recovery. Exp Fluids 36:246–258CrossRef Song S, Eaton JK (2004a) Reynolds number effects on a turbulent layer with separation, reattachment, and recovery. Exp Fluids 36:246–258CrossRef
Zurück zum Zitat Song S, Eaton JK (2004b) Flow structure of a separating, reattaching, and recovering boundary layer for a large range of Reynolds number. Exp Fluids 36:642–653CrossRef Song S, Eaton JK (2004b) Flow structure of a separating, reattaching, and recovering boundary layer for a large range of Reynolds number. Exp Fluids 36:642–653CrossRef
Zurück zum Zitat Spalart PR, Coleman GN (1997) Numerical study of a separation bubble with heat transfer. Eur J Mech B/Fluids 16:169–189MATH Spalart PR, Coleman GN (1997) Numerical study of a separation bubble with heat transfer. Eur J Mech B/Fluids 16:169–189MATH
Zurück zum Zitat Spalart PR, Watmuff JH (1993) Experimental and numerical study of a turbulent boundary layer with pressure gradients. J Fluid Mech 249:337–371CrossRef Spalart PR, Watmuff JH (1993) Experimental and numerical study of a turbulent boundary layer with pressure gradients. J Fluid Mech 249:337–371CrossRef
Zurück zum Zitat Spazzini PG, Iuso G, Onorato M, Zurlo N (1999) Design, test and validation of a probe for time-resolved measurement of skin friction Meas Sci Tech 10:631–639 Spazzini PG, Iuso G, Onorato M, Zurlo N (1999) Design, test and validation of a probe for time-resolved measurement of skin friction Meas Sci Tech 10:631–639
Zurück zum Zitat Townsend AA (1956a) Structure of turbulent shear flow. 1st edn, Cambridge University Press, Cambridge Townsend AA (1956a) Structure of turbulent shear flow. 1st edn, Cambridge University Press, Cambridge
Zurück zum Zitat Wadcock AJ (1987) Investigation of low-speed turbulent separated flow around airfoils. NASA CR-177450 Wadcock AJ (1987) Investigation of low-speed turbulent separated flow around airfoils. NASA CR-177450
Zurück zum Zitat Zagarola MV, Smits AJ (1998) Mean-flow scaling of turbulent pipe flow. J Fluid Mech 373:33–79CrossRefMATH Zagarola MV, Smits AJ (1998) Mean-flow scaling of turbulent pipe flow. J Fluid Mech 373:33–79CrossRefMATH
Metadaten
Titel
A study of a turbulent boundary layer in stalled-airfoil-type flow conditions
verfasst von
Yvan Maciel
Karl-Stéphane Rossignol
Jean Lemay
Publikationsdatum
01.10.2006
Verlag
Springer-Verlag
Erschienen in
Experiments in Fluids / Ausgabe 4/2006
Print ISSN: 0723-4864
Elektronische ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-006-0182-1

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