Skip to main content
Top
Published in: Experiments in Fluids 5/2012

01-11-2012 | Research Article

Accurate measurement of streamwise vortices using dual-plane PIV

Authors: Rye M. Waldman, Kenneth S. Breuer

Published in: Experiments in Fluids | Issue 5/2012

Log in

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Low Reynolds number aerodynamic experiments with flapping animals (such as bats and small birds) are of particular interest due to their application to micro air vehicles which operate in a similar parameter space. Previous PIV wake measurements described the structures left by bats and birds and provided insight into the time history of their aerodynamic force generation; however, these studies have faced difficulty drawing quantitative conclusions based on said measurements. The highly three-dimensional and unsteady nature of the flows associated with flapping flight are major challenges for accurate measurements. The challenge of animal flight measurements is finding small flow features in a large field of view at high speed with limited laser energy and camera resolution. Cross-stream measurement is further complicated by the predominately out-of-plane flow that requires thick laser sheets and short inter-frame times, which increase noise and measurement uncertainty. Choosing appropriate experimental parameters requires compromise between the spatial and temporal resolution and the dynamic range of the measurement. To explore these challenges, we do a case study on the wake of a fixed wing. The fixed model simplifies the experiment and allows direct measurements of the aerodynamic forces via load cell. We present a detailed analysis of the wake measurements, discuss the criteria for making accurate measurements, and present a solution for making quantitative aerodynamic load measurements behind free-flyers.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
go back to reference Adrian RJ (1997) Dynamic ranges of velocity and spatial resolution of particle image velocimetry. Meas Sci Technol 8:1393–1398CrossRef Adrian RJ (1997) Dynamic ranges of velocity and spatial resolution of particle image velocimetry. Meas Sci Technol 8:1393–1398CrossRef
go back to reference Betz A (1933) Behavior of vortex systems. NACA-TM-713 Betz A (1933) Behavior of vortex systems. NACA-TM-713
go back to reference Birch D, Lee T, Mokhtarian F, Kafyeke F (2004) Structure and induced drag of a tip vortex. J Aircr 41:1138–1145CrossRef Birch D, Lee T, Mokhtarian F, Kafyeke F (2004) Structure and induced drag of a tip vortex. J Aircr 41:1138–1145CrossRef
go back to reference Donaldson CD, Snedeker RS, Sullivan RD (1974) Calculation of aircraft wake velocity profiles and comparison with experimental measurements. J Aircr 11:547–555CrossRef Donaldson CD, Snedeker RS, Sullivan RD (1974) Calculation of aircraft wake velocity profiles and comparison with experimental measurements. J Aircr 11:547–555CrossRef
go back to reference Doorne CWH, Westerweel J (2006) Measurement of laminar, transitional and turbulent pipe flow using stereoscopic-PIV. Exp Fluids 42:259–279CrossRef Doorne CWH, Westerweel J (2006) Measurement of laminar, transitional and turbulent pipe flow using stereoscopic-PIV. Exp Fluids 42:259–279CrossRef
go back to reference Gerontakos P, Lee T (2005) Near-field tip vortex behind a swept wing model. Exp Fluids 40:141–155CrossRef Gerontakos P, Lee T (2005) Near-field tip vortex behind a swept wing model. Exp Fluids 40:141–155CrossRef
go back to reference Gerz T, Holzapfel F, Darracq D (2002) Commercial aircraft wake vortices. Prog Aerosp Sci 38:181–208CrossRef Gerz T, Holzapfel F, Darracq D (2002) Commercial aircraft wake vortices. Prog Aerosp Sci 38:181–208CrossRef
go back to reference Gharib M, Raffel M, Ronneberger O, Kompenhans J (1995) Feasibility study of three-dimensional PIV by correlating images of particles within parallel light sheet planes. Exp Fluids 19:69–77CrossRef Gharib M, Raffel M, Ronneberger O, Kompenhans J (1995) Feasibility study of three-dimensional PIV by correlating images of particles within parallel light sheet planes. Exp Fluids 19:69–77CrossRef
go back to reference Grant I (1997) Particle image velocimetry: a review. Proc Inst Mech Eng C J Mech Eng Sci 211:55–76CrossRef Grant I (1997) Particle image velocimetry: a review. Proc Inst Mech Eng C J Mech Eng Sci 211:55–76CrossRef
go back to reference Hedenström A, Johansson LC, Wolf M, von Busse R, Winter Y, Spedding GR (2007) Bat flight generates complex aerodynamic tracks. Science 316:894–897CrossRef Hedenström A, Johansson LC, Wolf M, von Busse R, Winter Y, Spedding GR (2007) Bat flight generates complex aerodynamic tracks. Science 316:894–897CrossRef
go back to reference Hedenström A, Muijres FT, von Busse R, Johansson LC, Winter Y, Spedding GR (2009) High-speed stereo DPIV measurement of wakes of two bat species flying freely in a wind tunnel. Exp Fluids 46:923–932CrossRef Hedenström A, Muijres FT, von Busse R, Johansson LC, Winter Y, Spedding GR (2009) High-speed stereo DPIV measurement of wakes of two bat species flying freely in a wind tunnel. Exp Fluids 46:923–932CrossRef
go back to reference Henningsson P, Hedenström A (2011) Aerodynamics of gliding flight in common swifts. J Exp Biol 214:382–393CrossRef Henningsson P, Hedenström A (2011) Aerodynamics of gliding flight in common swifts. J Exp Biol 214:382–393CrossRef
go back to reference Henningsson P, Muijres FT, Hedenström A (2010) Time-resolved vortex wake of a common swift flying over a range of flight speeds. J R Soc Interface 8:807–816CrossRef Henningsson P, Muijres FT, Hedenström A (2010) Time-resolved vortex wake of a common swift flying over a range of flight speeds. J R Soc Interface 8:807–816CrossRef
go back to reference Hubel TY, Hristov NI, Swartz SM, Breuer KS (2009) Time-resolved wake structure and kinematics of bat flight. Exp Fluids 46:933–943CrossRef Hubel TY, Hristov NI, Swartz SM, Breuer KS (2009) Time-resolved wake structure and kinematics of bat flight. Exp Fluids 46:933–943CrossRef
go back to reference Hubel TY, Riskin DK, Swartz SM, Breuer KS (2010) Wake structure and wing kinematics: the flight of the lesser dog-faced fruit bat, Cynopterus brachyotis. J Exp Biol 213:3427–3440CrossRef Hubel TY, Riskin DK, Swartz SM, Breuer KS (2010) Wake structure and wing kinematics: the flight of the lesser dog-faced fruit bat, Cynopterus brachyotis. J Exp Biol 213:3427–3440CrossRef
go back to reference Hubel TY, Hristov NI, Swartz SM, Breuer KS (2012) Changes in kinematics and aerodynamics over a range of speeds in Tadarida brasiliensis, the Brazilian free-tailed bat. J R Soc Interface 9:1120–1130CrossRef Hubel TY, Hristov NI, Swartz SM, Breuer KS (2012) Changes in kinematics and aerodynamics over a range of speeds in Tadarida brasiliensis, the Brazilian free-tailed bat. J R Soc Interface 9:1120–1130CrossRef
go back to reference Johansson LC, Hedenström A (2009) The vortex wake of blackcaps (Sylvia atricapilla L.) measured using high-speed digital particle image velocimetry (DPIV). J Exp Biol 212:3365–3376CrossRef Johansson LC, Hedenström A (2009) The vortex wake of blackcaps (Sylvia atricapilla L.) measured using high-speed digital particle image velocimetry (DPIV). J Exp Biol 212:3365–3376CrossRef
go back to reference Kaplan SM, Altman A, Ol M (2007) Wake vorticity measurements for low aspect ratio wings at low reynolds number. J Aircr 44:241–251CrossRef Kaplan SM, Altman A, Ol M (2007) Wake vorticity measurements for low aspect ratio wings at low reynolds number. J Aircr 44:241–251CrossRef
go back to reference Karakus C, Akilli H, Sahin B (2008) Formation, structure, and development of near-field wing tip vortices. Proc Inst Mech Eng G J Aerosp Eng 222:13–22 Karakus C, Akilli H, Sahin B (2008) Formation, structure, and development of near-field wing tip vortices. Proc Inst Mech Eng G J Aerosp Eng 222:13–22
go back to reference Küchemann D (1952) A simple method for calculating the span and chordwise loading on straight and swept wings of any given aspect ratio at subsonic speeds. Aeronautical Research Council Reports and Memoranda No. 2935 Küchemann D (1952) A simple method for calculating the span and chordwise loading on straight and swept wings of any given aspect ratio at subsonic speeds. Aeronautical Research Council Reports and Memoranda No. 2935
go back to reference Kundu PK, Cohen IM (2004) Fluid mechanics, 3rd edn. Elsevier, New York Kundu PK, Cohen IM (2004) Fluid mechanics, 3rd edn. Elsevier, New York
go back to reference Laitone EV (1997) Wind tunnel tests of wings at Reynolds numbers below 70,000. Exp Fluids 23:405–409CrossRef Laitone EV (1997) Wind tunnel tests of wings at Reynolds numbers below 70,000. Exp Fluids 23:405–409CrossRef
go back to reference Landreth CC, Adrian RJ (1988) Electrooptical image shifting for particle image velocimetry. Appl Opt 27:4216–4220CrossRef Landreth CC, Adrian RJ (1988) Electrooptical image shifting for particle image velocimetry. Appl Opt 27:4216–4220CrossRef
go back to reference Lawson N, Wu J (1997) Three-dimensional particle image velocimetry: error analysis of stereoscopic techniques. Meas Sci Technol 8:894–900CrossRef Lawson N, Wu J (1997) Three-dimensional particle image velocimetry: error analysis of stereoscopic techniques. Meas Sci Technol 8:894–900CrossRef
go back to reference Moore DW, Saffman PG (1973) Axial flow in laminar trailing vortices. Proc R Soc A Math Phys Eng Sci 333:491–508MATHCrossRef Moore DW, Saffman PG (1973) Axial flow in laminar trailing vortices. Proc R Soc A Math Phys Eng Sci 333:491–508MATHCrossRef
go back to reference Mueller TJ, DeLaurier JD (2003) Aerodynamics of small vehicles. Annu Rev Fluid Mech 35:89–111CrossRef Mueller TJ, DeLaurier JD (2003) Aerodynamics of small vehicles. Annu Rev Fluid Mech 35:89–111CrossRef
go back to reference Muijres FT, Bowlin MS, Johansson LC, Hedenström A (2011) Vortex wake, downwash distribution, aerodynamic performance and wingbeat kinematics in slow-flying pied flycatchers. J R Soc Interface 9:292–303CrossRef Muijres FT, Bowlin MS, Johansson LC, Hedenström A (2011) Vortex wake, downwash distribution, aerodynamic performance and wingbeat kinematics in slow-flying pied flycatchers. J R Soc Interface 9:292–303CrossRef
go back to reference Norberg UM (1990) Vertebrate flight: mechanics, physiology, morphology, ecology and evolution. Springer, Berlin Norberg UM (1990) Vertebrate flight: mechanics, physiology, morphology, ecology and evolution. Springer, Berlin
go back to reference Raffel M, Willert CE, Wereley ST, Kompenhans J (2001) Particle image velocimetry. Springer, Berlin Raffel M, Willert CE, Wereley ST, Kompenhans J (2001) Particle image velocimetry. Springer, Berlin
go back to reference Saffman PG (1992) Vortex dynamics. Cambridge University Press, CambridgeMATH Saffman PG (1992) Vortex dynamics. Cambridge University Press, CambridgeMATH
go back to reference Sane SP (2003) The aerodynamics of insect flight. J Exp Biol 206:4191–4208CrossRef Sane SP (2003) The aerodynamics of insect flight. J Exp Biol 206:4191–4208CrossRef
go back to reference Shyy W, Lian Y, Tang J, Viieru D, Liu H (2008) Aerodynamics of low Reynolds number flyers. Cambridge University Press, Cambridge Shyy W, Lian Y, Tang J, Viieru D, Liu H (2008) Aerodynamics of low Reynolds number flyers. Cambridge University Press, Cambridge
go back to reference Song A, Tian X, Israeli E, Galvao R, Bishop K, Swartz S, Breuer K (2008) Aeromechanics of membrane wings with implications for animal flight. AIAA J 46:2096–2106CrossRef Song A, Tian X, Israeli E, Galvao R, Bishop K, Swartz S, Breuer K (2008) Aeromechanics of membrane wings with implications for animal flight. AIAA J 46:2096–2106CrossRef
go back to reference Spedding GR, Hedenström A, Rosén M (2003a) Quantitative studies of the wakes of freely flying birds in a low-turbulence wind tunnel. Exp Fluids 34:291–303CrossRef Spedding GR, Hedenström A, Rosén M (2003a) Quantitative studies of the wakes of freely flying birds in a low-turbulence wind tunnel. Exp Fluids 34:291–303CrossRef
go back to reference Spedding GR, Rosén M, Hedenström A (2003b) A family of vortex wakes generated by a thrush nightingale in free flight in a wind tunnel over its entire natural range of flight speeds. J Exp Biol 206:2313–2344CrossRef Spedding GR, Rosén M, Hedenström A (2003b) A family of vortex wakes generated by a thrush nightingale in free flight in a wind tunnel over its entire natural range of flight speeds. J Exp Biol 206:2313–2344CrossRef
go back to reference Tian X, Iriarte-Diaz J, Middleton K, Galvao R, Israeli E, Roemer A, Sullivan A, Song A, Swartz SM, Breuer KS (2006) Direct measurements of the kinematics and dynamics of bat flight. Bioinspir Biomimetics 1:S10–S18CrossRef Tian X, Iriarte-Diaz J, Middleton K, Galvao R, Israeli E, Roemer A, Sullivan A, Song A, Swartz SM, Breuer KS (2006) Direct measurements of the kinematics and dynamics of bat flight. Bioinspir Biomimetics 1:S10–S18CrossRef
go back to reference Westerweel J (1993) Digital particle image velocimetry: theory and application. PhD thesis, TU Delft Westerweel J (1993) Digital particle image velocimetry: theory and application. PhD thesis, TU Delft
go back to reference Westerweel J (1997) Fundamentals of digital particle image velocimetry. Meas Sci Technol 8:1379–1392CrossRef Westerweel J (1997) Fundamentals of digital particle image velocimetry. Meas Sci Technol 8:1379–1392CrossRef
go back to reference Willert CE, Raffel M, Kompenhans J, Stasicki B, Kahler C (1996) Recent applications of particle image velocimetry in aerodynamic research. Flow Meas Instrum 7:247–256CrossRef Willert CE, Raffel M, Kompenhans J, Stasicki B, Kahler C (1996) Recent applications of particle image velocimetry in aerodynamic research. Flow Meas Instrum 7:247–256CrossRef
Metadata
Title
Accurate measurement of streamwise vortices using dual-plane PIV
Authors
Rye M. Waldman
Kenneth S. Breuer
Publication date
01-11-2012
Publisher
Springer-Verlag
Published in
Experiments in Fluids / Issue 5/2012
Print ISSN: 0723-4864
Electronic ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-012-1368-3

Other articles of this Issue 5/2012

Experiments in Fluids 5/2012 Go to the issue

Premium Partners