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Scaling analysis for aeroelastic phenomena using the navier-stokes fluid model

Publication ,  Journal Article
Jaworski, JW; Dowell, EH
Published in: AIAA Journal
November 1, 2012

The scaling analysis of the Navier Stokes equation is examined and is extended to compressible aerodynamic flows where the characteristic Reynolds number is large and the Prandtl number is of order unity. A compressible flow of a Newtonian fluid is considered in the absence of body forces which obeys the perfect-gas law. Fluid properties such as the specific heat at constant pressure, gas constant, heat conduction coefficient, and the dynamic viscosity, are assumed constant. The energy equation for compressible flows leads to a second pressure perturbation estimate different from the streamwise momentum equation result. For fluid structure systems where the principal nonlinearity is in the fluid, order-of-magnitude estimates for nonlinear aeroelastic phenomena such as limit-cycle oscillations and frequency lock-in can be achieved by application of the kinematic boundary condition to the compressible flow scaling results. Copyright © 2012 by Justin W. Jaworski and Earl H. Dowell.

Duke Scholars

Published In

AIAA Journal

DOI

ISSN

0001-1452

Publication Date

November 1, 2012

Volume

50

Issue

11

Start / End Page

2622 / 2626

Related Subject Headings

  • Aerospace & Aeronautics
  • 4012 Fluid mechanics and thermal engineering
  • 4001 Aerospace engineering
  • 0913 Mechanical Engineering
  • 0905 Civil Engineering
  • 0901 Aerospace Engineering
 

Citation

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Jaworski, J. W., & Dowell, E. H. (2012). Scaling analysis for aeroelastic phenomena using the navier-stokes fluid model. AIAA Journal, 50(11), 2622–2626. https://doi.org/10.2514/1.J051727
Jaworski, J. W., and E. H. Dowell. “Scaling analysis for aeroelastic phenomena using the navier-stokes fluid model.” AIAA Journal 50, no. 11 (November 1, 2012): 2622–26. https://doi.org/10.2514/1.J051727.
Jaworski JW, Dowell EH. Scaling analysis for aeroelastic phenomena using the navier-stokes fluid model. AIAA Journal. 2012 Nov 1;50(11):2622–6.
Jaworski, J. W., and E. H. Dowell. “Scaling analysis for aeroelastic phenomena using the navier-stokes fluid model.” AIAA Journal, vol. 50, no. 11, Nov. 2012, pp. 2622–26. Scopus, doi:10.2514/1.J051727.
Jaworski JW, Dowell EH. Scaling analysis for aeroelastic phenomena using the navier-stokes fluid model. AIAA Journal. 2012 Nov 1;50(11):2622–2626.
Journal cover image

Published In

AIAA Journal

DOI

ISSN

0001-1452

Publication Date

November 1, 2012

Volume

50

Issue

11

Start / End Page

2622 / 2626

Related Subject Headings

  • Aerospace & Aeronautics
  • 4012 Fluid mechanics and thermal engineering
  • 4001 Aerospace engineering
  • 0913 Mechanical Engineering
  • 0905 Civil Engineering
  • 0901 Aerospace Engineering