Skip to main content
Erschienen in: Experiments in Fluids 10/2016

01.10.2016 | Research Article

Topology of vortex–wing interaction

verfasst von: C. McKenna, D. Rockwell

Erschienen in: Experiments in Fluids | Ausgabe 10/2016

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

A trailing vortex incident upon a wing can generate different modes of vortex–wing interaction. These modes, which may involve either enhancement or suppression of the vortex generated at the tip of the wing, are classified on the basis of the present experiments together with computations at the Air Force Research Laboratory. Occurrence of a given mode of interaction is predominantly determined by the dimensionless location of the incident vortex relative to the tip of the wing and is relatively insensitive to the Reynolds number and dimensionless circulation of the incident vortex. The genesis of the basic interaction modes is clarified using streamline topology with associated critical points that show compatibility between complex streamline patterns in the vicinity of the tip of the wing. Whereas formation of an enhanced tip vortex involves a region of large upwash in conjunction with localized flow separation, complete suppression of the tip vortex is associated with a small-scale separation–reattachment bubble bounded by downwash at the wing tip.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

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!

Literatur
Zurück zum Zitat Adrian RJ, Westerweel J (2011) Particle image velocimetry. Cambridge University Press, CambridgeMATH Adrian RJ, Westerweel J (2011) Particle image velocimetry. Cambridge University Press, CambridgeMATH
Zurück zum Zitat Bangash ZA, Sanchez RP, Ahmed A, Khan MJ (2006) Aerodynamics of formation flight. J Aircr 43(4):907–912CrossRef Bangash ZA, Sanchez RP, Ahmed A, Khan MJ (2006) Aerodynamics of formation flight. J Aircr 43(4):907–912CrossRef
Zurück zum Zitat Barnes CJ, Visbal MR, Gordnier RE (2014) Numerical simulations of streamwise-oriented vortex/flexible wing interaction. AIAA Paper 2014-2313. AIAA Barnes CJ, Visbal MR, Gordnier RE (2014) Numerical simulations of streamwise-oriented vortex/flexible wing interaction. AIAA Paper 2014-2313. AIAA
Zurück zum Zitat Barnes CJ, Visbal MR, Gordnier RE (2015a) Analysis of streamwise-oriented vortex interactions for two wings in close proximity. Phys Fluids 27:015103CrossRef Barnes CJ, Visbal MR, Gordnier RE (2015a) Analysis of streamwise-oriented vortex interactions for two wings in close proximity. Phys Fluids 27:015103CrossRef
Zurück zum Zitat Barnes CJ, Visbal MR, Gordnier RE (2015b) Effect of bending oscillations on a streamwise-oriented vortex interaction. AIAA Paper 2015-3303. AIAA Barnes CJ, Visbal MR, Gordnier RE (2015b) Effect of bending oscillations on a streamwise-oriented vortex interaction. AIAA Paper 2015-3303. AIAA
Zurück zum Zitat Blake WB, Gingras DR (2004) Comparison of predicted and measured formation flight interference effect. J Aircr 41(2):201–207CrossRef Blake WB, Gingras DR (2004) Comparison of predicted and measured formation flight interference effect. J Aircr 41(2):201–207CrossRef
Zurück zum Zitat Garmann DJ, Visbal MR (2014) Unsteady interactions of a wandering streamwise-oriented vortex with a wing. AIAA Paper 2014-2105. AIAA Garmann DJ, Visbal MR (2014) Unsteady interactions of a wandering streamwise-oriented vortex with a wing. AIAA Paper 2014-2105. AIAA
Zurück zum Zitat Garmann DJ, Visbal MR (2015a) Interactions of a streamwise-oriented vortex with a finite wing. J Fluid Mech 767:782–810CrossRef Garmann DJ, Visbal MR (2015a) Interactions of a streamwise-oriented vortex with a finite wing. J Fluid Mech 767:782–810CrossRef
Zurück zum Zitat Garmann DJ, Visbal MR (2015b) Streamwise-oriented vortex interactions with a NACA0012 wing. AIAA Paper 2015-1066. AIAA Garmann DJ, Visbal MR (2015b) Streamwise-oriented vortex interactions with a NACA0012 wing. AIAA Paper 2015-1066. AIAA
Zurück zum Zitat Garmann DJ, Visbal MR (2015c) Transient encounters of a NACA0012 wing with a streamwise-oriented vortex. AIAA Paper 2015-3073. AIAA Garmann DJ, Visbal MR (2015c) Transient encounters of a NACA0012 wing with a streamwise-oriented vortex. AIAA Paper 2015-3073. AIAA
Zurück zum Zitat Hummel D (1983) Aerodynamic aspects of formation flight in birds. J Theor Biol 104(3):321–347CrossRef Hummel D (1983) Aerodynamic aspects of formation flight in birds. J Theor Biol 104(3):321–347CrossRef
Zurück zum Zitat Hummel D (1995) Formation flight as an energy-saving mechanism. Isr J Zool 41(3):261–278 Hummel D (1995) Formation flight as an energy-saving mechanism. Isr J Zool 41(3):261–278
Zurück zum Zitat Inasawa A, Mori F, Asai M (2012) Detailed observations of interactions of wingtip vortices in close-formation flight. J Aircr 49(1):206–213CrossRef Inasawa A, Mori F, Asai M (2012) Detailed observations of interactions of wingtip vortices in close-formation flight. J Aircr 49(1):206–213CrossRef
Zurück zum Zitat Kless J, Aftosmis MJ, Ning SA, Nemec M (2013) Inviscid analysis of extended-formation flight. AIAA J 51(7):1703–1715CrossRef Kless J, Aftosmis MJ, Ning SA, Nemec M (2013) Inviscid analysis of extended-formation flight. AIAA J 51(7):1703–1715CrossRef
Zurück zum Zitat McKenna C, Bross M, Rockwell D (2016) Structure of a trailing vortex incident upon a wing. (Submitted for publication) McKenna C, Bross M, Rockwell D (2016) Structure of a trailing vortex incident upon a wing. (Submitted for publication)
Zurück zum Zitat Ning SA, Flanzer TC, Kroo IM (2011) Aerodynamic performance of extended formation flight. J Aircr 48(3):855–865CrossRef Ning SA, Flanzer TC, Kroo IM (2011) Aerodynamic performance of extended formation flight. J Aircr 48(3):855–865CrossRef
Zurück zum Zitat Perry AE, Chong MS (1990) Interpretation of flow visualization. University of Melbourne, Parkville Perry AE, Chong MS (1990) Interpretation of flow visualization. University of Melbourne, Parkville
Zurück zum Zitat Slotnick JP, Clark RW, Friedman DM, Yadlin Y, Yeh DT, Carr JE, Czech MJ, Bieniawski SW (2014) Computational aerodynamic analysis for the formation flight for aerodynamic benefit program. AIAA Paper 2014-1458. AIAA Slotnick JP, Clark RW, Friedman DM, Yadlin Y, Yeh DT, Carr JE, Czech MJ, Bieniawski SW (2014) Computational aerodynamic analysis for the formation flight for aerodynamic benefit program. AIAA Paper 2014-1458. AIAA
Metadaten
Titel
Topology of vortex–wing interaction
verfasst von
C. McKenna
D. Rockwell
Publikationsdatum
01.10.2016
Verlag
Springer Berlin Heidelberg
Erschienen in
Experiments in Fluids / Ausgabe 10/2016
Print ISSN: 0723-4864
Elektronische ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-016-2244-3

Weitere Artikel der Ausgabe 10/2016

Experiments in Fluids 10/2016 Zur Ausgabe

    Marktübersichten

    Die im Laufe eines Jahres in der „adhäsion“ veröffentlichten Marktübersichten helfen Anwendern verschiedenster Branchen, sich einen gezielten Überblick über Lieferantenangebote zu verschaffen.