Near-field Development of a Turbulent Mixing Layer Periodically Forced by a Bimorph PVDF Film Actuator
スポンサーリンク
概要
- 論文の詳細を見る
We have performed experiments in a turbulent mixing layer with periodic forcing introduced by a Piezo Film Actuator (PFA). Three different lengths of PFAs have been used, and the effects of various combinations of forcing amplitudes and frequencies are investigated. The forcing at the first and second sub-harmonic frequencies against the natural frequency enhances the development of the thickness of the mixing layer: the mixing layer spreads due to the forcing. On the other hand, the forcing near the natural frequency suppresses the development: the mean velocity gradient becomes steeper than the no control case. The vector pattern of the periodic velocity components indicated the formation of the vortical structure. By forcing at the natural and its first sub-harmonic frequencies, two counter-rotating vortices are clearly observed in one period of forcing. By forcing at second sub-harmonic frequency, the vortical structure is found only in the downstream region. The distribution of the periodic Reynolds shear stress significantly varies with the forcing frequency and it takes a positive value when forcing occurs near the natural frequency. However, the total value of the Reynolds shear stress remains negative due to the contribution of the turbulent components.
著者
-
FUKAGATA Koji
Department of Mechanical Engineering, Keio University
-
Obi Shinnosuke
Department Of Mechanical Engineering Keio University
-
TSUBOI Ken-ichiro
Department of Mechanical Engineering, Keio University
-
NAKA Yoshitsugu
Department of Mechanical Engineering, Keio University
-
KAMETANI Yukinori
Department of Mechanical Engineering, Keio University
関連論文
- Drag Reduction by Wavy Surfaces
- Vortex Methods for the Simulation of Turbulent Flows: Review
- Near-field Development of a Turbulent Mixing Layer Periodically Forced by a Bimorph PVDF Film Actuator
- F301 VORTICAL STRUCTURES AND TURBULENCE STATISTICS OF THE PERIODICALLY PERTURBED SEPARATED FLOW OVER THE BACKWARD-FACING STEP(Control of turbulent mixing process)
- MC-28 FLOW INDUCED VIBRATION OF SHROUDED COROTATING DISK SYSTEMS IN SUBCRITICAL SPEED RANGE
- OSCILLATORY TURBULENT FLOW AROUND A PAIR OF SQUARE CYLINDERS IN TANDEM(Flow around Cylinder 2)
- F211 Effect of Near-Wall Treatments on the Prediction of Turbulent Separating Flows(Turbulence modeling)
- Performance Assessment and Improvement of a Spilt-and-Recombine Micromixer for Immunomagnetic Cell Sorting