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Erschienen in: Experiments in Fluids 5/2008

01.05.2008 | Research Article

A method for estimating wall friction in turbulent wall-bounded flows

verfasst von: Anthony Kendall, Manoochehr Koochesfahani

Erschienen in: Experiments in Fluids | Ausgabe 5/2008

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Abstract

We describe a simple method for estimating turbulent boundary layer wall friction using the fit of measured velocity data to a boundary layer model profile that extends the logarithmic profile all the way to the wall. Two models for the boundary layer profile are examined, the power-series interpolation scheme of Spalding and the Musker profile which is based on the eddy viscosity concept. The performance of the method is quantified using recent experimental data in zero pressure gradient flat-plate turbulent boundary layers, and favorable pressure gradient turbulent boundary layers in a pipe, for which independent measurements of wall shear are also available. Between the two model profiles tested, the Musker profile performs much better than the Spalding profile. Results show that the new procedure can provide highly accurate estimates of wall shear with a mean error of about 0.5% in friction velocity, or 1% in shear stress, an accuracy that is comparable to that from independent direct measurements of wall shear stress. An important advantage of the method is its ability to provide accurate estimates of wall shear not only based on many data points in a velocity profile but also very sparse data points in the velocity profile, including only a single data point such as that originating from a near-wall probe.

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Literatur
Zurück zum Zitat Blackwelder R, Haritonidis J (1983) Scaling of the bursting frequency in turbulent boundary layers. J Fluid Mech 132:87–103CrossRef Blackwelder R, Haritonidis J (1983) Scaling of the bursting frequency in turbulent boundary layers. J Fluid Mech 132:87–103CrossRef
Zurück zum Zitat Chauhan KA, Nagib HM, Monkewitz PA, On the composite logarithmic profile in zero pressure gradient turbulent boundary layers, AIAA Paper No. AIAA 2007–532 Chauhan KA, Nagib HM, Monkewitz PA, On the composite logarithmic profile in zero pressure gradient turbulent boundary layers, AIAA Paper No. AIAA 2007–532
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 DE (1968) The Young person’s guide to the data. Computation of turbulent boundary layers, 1968 AFOSR-IFP Stanford Conference, vol. 2, Stanford University Coles DE (1968) The Young person’s guide to the data. Computation of turbulent boundary layers, 1968 AFOSR-IFP Stanford Conference, vol. 2, Stanford University
Zurück zum Zitat Fernholz HH, Finley PJ (1996) The incompressible zero-pressure-gradient turbulent boundary layer: an assessment of the data. Prog Aerosp Sci 32:245–311CrossRef Fernholz HH, Finley PJ (1996) The incompressible zero-pressure-gradient turbulent boundary layer: an assessment of the data. Prog Aerosp Sci 32:245–311CrossRef
Zurück zum Zitat Fourguette D, Modarress D, Taugwalder F, Wilson D, Koochesfahani M, Gharib M, Miniature and MOEMS flow sensors, AIAA Paper No. AIAA-2001–2982 Fourguette D, Modarress D, Taugwalder F, Wilson D, Koochesfahani M, Gharib M, Miniature and MOEMS flow sensors, AIAA Paper No. AIAA-2001–2982
Zurück zum Zitat Fourguette D, Modarress D, Wilson D, Koochesfahani M, Gharib M, An optical MEMS-based shear stress sensor for high reynolds number applications, AIAA Paper No. AIAA-2003–0742 Fourguette D, Modarress D, Wilson D, Koochesfahani M, Gharib M, An optical MEMS-based shear stress sensor for high reynolds number applications, AIAA Paper No. AIAA-2003–0742
Zurück zum Zitat Kline SJ, Reynolds WC, Schraub FA, Runstadler PW (1967) The structure of turbulent boundary layers. J Fluid Mech 30:741–773CrossRef Kline SJ, Reynolds WC, Schraub FA, Runstadler PW (1967) The structure of turbulent boundary layers. J Fluid Mech 30:741–773CrossRef
Zurück zum Zitat McKeon BJ, Li J, Jiang W, Morrison JF, Smits AJ (2004) Further observations on the mean velocity distribution in fully developed pipe flow. J Fluid Mech 501:135–147CrossRefMATH McKeon BJ, Li J, Jiang W, Morrison JF, Smits AJ (2004) Further observations on the mean velocity distribution in fully developed pipe flow. J Fluid Mech 501:135–147CrossRefMATH
Zurück zum Zitat Musker AJ (1979) Explicit expression for the smooth wall velocity distribution in a turbulent boundary layer. AIAA J 17:655–657MATHCrossRef Musker AJ (1979) Explicit expression for the smooth wall velocity distribution in a turbulent boundary layer. AIAA J 17:655–657MATHCrossRef
Zurück zum Zitat Ong L, Wallace JM (1998) Join probability density analysis of the structure and dynamics of the vorticity field of a turbulent boundary layer. J Fluid Mech 367:291–328CrossRefMATH Ong L, Wallace JM (1998) Join probability density analysis of the structure and dynamics of the vorticity field of a turbulent boundary layer. J Fluid Mech 367:291–328CrossRefMATH
Zurück zum Zitat Österlund JM (1999), Experimental studies of zero pressure-gradient turbulent boundary-layer flow. Ph.D. thesis, Department of Mechanics, Royal Institute of Technology, Stockholm Österlund JM (1999), Experimental studies of zero pressure-gradient turbulent boundary-layer flow. Ph.D. thesis, Department of Mechanics, Royal Institute of Technology, Stockholm
Zurück zum Zitat Österlund JM, Johansson AV, Nagib HM, Hites MH (2000) A note on the overlap region in turbulent boundary layers. Phys Fluids 12:1–4CrossRefMATH Österlund JM, Johansson AV, Nagib HM, Hites MH (2000) A note on the overlap region in turbulent boundary layers. Phys Fluids 12:1–4CrossRefMATH
Zurück zum Zitat Spalart P (1988) Direct simulation of a turbulent boundary layer up to Re θ = 1410. J Fluid Mech 187:61–98CrossRefMATH Spalart P (1988) Direct simulation of a turbulent boundary layer up to Re θ  = 1410. J Fluid Mech 187:61–98CrossRefMATH
Zurück zum Zitat Spalding DB (1961) A single formula for the Law of the Wall. J Appl Mech Trans ASME Ser E. 83:455 Spalding DB (1961) A single formula for the Law of the Wall. J Appl Mech Trans ASME Ser E. 83:455
Zurück zum Zitat Wei T, Schmidt R, McMurtry P (2005) Comment on the Clauser chart method for determining the friction velocity. Exp Fluids 38:695–699CrossRef Wei T, Schmidt R, McMurtry P (2005) Comment on the Clauser chart method for determining the friction velocity. Exp Fluids 38:695–699CrossRef
Zurück zum Zitat Zanoun E, Durst F, Nagib H (2003) Evaluating the Law of the Wall in two-dimensional fully developed channel flows. Phys Fluids 15:3079–3089CrossRef Zanoun E, Durst F, Nagib H (2003) Evaluating the Law of the Wall in two-dimensional fully developed channel flows. Phys Fluids 15:3079–3089CrossRef
Metadaten
Titel
A method for estimating wall friction in turbulent wall-bounded flows
verfasst von
Anthony Kendall
Manoochehr Koochesfahani
Publikationsdatum
01.05.2008
Verlag
Springer-Verlag
Erschienen in
Experiments in Fluids / Ausgabe 5/2008
Print ISSN: 0723-4864
Elektronische ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-007-0433-9

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