Study of Active Jet Control by Acoustically Driven Secondary Film Flow Influence of Velocity Ratio and Acoustic Strouhal Number(<Special Issue>Jets, Wakes and Separated Flows)

    • MIYAGI Norimasa
    • Department of Mechanical Engineering, College of Science and Technology, Nihon University
    • FUJITA Hajime
    • Department of Mechanical Engineering, College of Science and Technology, Nihon University
    • SHOJI Hideo
    • Department of Mechanical Engineering, College of Science and Technology, Nihon University

    • KIMURA Motoaki
    • Department of Mechanical Engineering, College of Science and Technology, Nihon University

Abstract

Active control of the diffusion of a circular jet was attempted by application of a secondary film flow around the jet. Sinusoidal acoustic excitation of the film flow was carried out for VR values of 0.5 and 1.0, where VR is the ratio of the film flow velocity to the main jet velocity. For VR=0.5, the diffusion of the jet was suppressed compared to that of a single jet but it was somewhat enhanced by the acoustic excitation. The acoustic excitation shortened the potential core of the jet; however, the entrainment of the ambient flow was far less than in the case of a single jet, regardless of degree of excitation. For VR=1.0, diffusion was enhanced by acoustic excitation. Both turbulence intensity and ambient flow entrainment increased downstream of the jet. We conclude that film flow can control diffusion and that acoustic excitation can enhance the diffusion of jet flows. It is worth investigating this mechanism in detail in future studies.

Journal

JSME international journal. Ser. B, Fluids and thermal engineering   [List of Volumes]

JSME international journal. Ser. B, Fluids and thermal engineering 49(4), 974-979, 2006-11-15  [Table of Contents]

The Japan Society of Mechanical Engineers

References:  5

You must have a user ID to see the references.If you already have a user ID, please click "Login" to access the info.New users can click "Sign Up" to register for an user ID.

Preview

Preview

Codes

  • NII Article ID (NAID) :
    110004850790
  • NII NACSIS-CAT ID (NCID) :
    AA10888815
  • Text Lang :
    ENG
  • Article Type :
    ART
  • ISSN :
    13408054
  • NDL Article ID :
    8535570
  • NDL Source Classification :
    ZN11(科学技術--機械工学・工業)
  • NDL Call No. :
    Z53-Y271
  • Databases :
    CJP  NDL  NII-ELS  J-STAGE