DNS and experiments of electromagnetic flow control on an inclined flat plate


DNS and experiments of electromagnetic flow control on an inclined flat plate

Albrecht, T.; Weier, T.; Gerbeth, G.; Metzkes, H.; Stiller, J.

We investigate the separated flow around an inclined flat plate at a Reynolds number of 104 by Direct Numerical Simulation (DNS) and time-resolved Particle Image Velocity (PIV). Flow separation is suppressed using sinusoidally and rectangularly oscillating Lorentz forces in streamwise direction. An rms momentum coefficient of 2.25% increases the time-averaged lift, deduced from PIV by a global momentum approach, by 20–45%. Whereas sinusoidal forcing increases both lift and drag, rectangular waves create no significant additional drag. Analysis of the DNS flow structures reveals different immediate vortex dynamics induced by the actuation.

Keywords: flow control; Lorentz force; flow separation

  • Poster
    8th International Pamir Conference on Fundamental and Applied MHD, 05.09.2011, Borgo, Frankreich
  • Contribution to proceedings
    8th International pamir Conference on Fundamental and Applied MHD, 05.-09.09.2011, Borgo, Frankreich
    Proceedings of the 8th International pamir Conference on Fundamental and Applied MHD, 375-379

Permalink: https://www.hzdr.de/publications/Publ-15992