The effects of excitation on the coherent and random motion in a plane wall jet

Author:

Zhou M. D.,Heine C.,Wygnanski I.

Abstract

Three components of velocity fluctuations were measured in a plane turbulent wall jet which was modulated periodically by a sinusoidal pressure fluctuation in its settling chamber. The experiment was carried out in a closed-loop wind tunnel in the absence of an external stream at Reynolds numberRej=Ujb/v= 6900 and Strouhal numberStj=fb/Uj= 9.5 × 10−3, wherebis the width of the slot from which the jet emerges at an efflux velocityUj. A detailed comparison is provided with similar measurements made in a natural, unexcited turbulent wall jet. One of the purposes of this experiment was to establish the kinetic energy transfers which take place in the wall jet under controlled perturbations. More specifically, we were interested in determining the interactions occurring between the steady mean flow, the coherent eddies and the ‘random’ turbulent fluctuations. We used the triple decomposition of the equations of motion as suggested by Hussain (1983) and quickly observed that the usefulness of this decomposition depends on the definition of coherent motion, which is ambiguous in the presence of phase jitter. Two such definitions were considered and the results are discussed in the experimental case-study provided. An attempt is made to define quantitatively the intensities of the coherent motion in externally excited, wallbounded flows. It is a case-study and not a parametric investigation aimed at maximizing the effects of period oscillations on the wall jet.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference24 articles.

1. Irwin, H. P. A. H. 1973 Measurements in a self preserving plane wall jet in a positive pressure gradient.J. Fluid Mech. 61,33.

2. Alcaraz, E. 1977 Contribution a l'etude d'un jet plan turbulent evolaunt le long d'une parios convexe a faible courbure . These d'Etat. Université Claude Bernard, Lyon, France.

3. Heine, C. 1994 The energy budget in the forced turbulent wall jet . Dipl. Ing. Thesis, Technical University, Berlin.

4. Guitton, D. E. & Newman, B. G. 1977 Self preserving turbulent wall jets over convex surfaces.J. Fluid Mech. 81,155.

5. Narasimha, R. , Narayan, K. Y. & Parthasarathy, S. P. 1973 Parametric analysis of turbulent wall jets in still air.Aero. J. 77,355.

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