Structure of a particle-laden round jet

Author:

Longmire Ellen K.,Eaton John K.

Abstract

The interaction of solid particles with the temporal features of a turbulent flow has direct relevance to problems in particle and spray combustion and the processing of particulate solids. The object of the present study was to examine the behaviour of particles in a jet dominated by vortex ring structures. An axisymmetric air jet laden with 55 μm glass particles was forced axially with an acoustic speaker to organize the vortex ring structures rolling up in the free shear layer downstream of the nozzle exit. Visualization studies of forced and unforced flow with Reynolds number of the order of 20000 were completed using a pulsed copper vapour laser. Instantaneous photographs and videotapes of strobed forced flow show that particles become clustered in the saddle regions downstream of the vortex rings and are propelled away from the jet axis by the outwardly moving flow in these regions. Phase-averaged spatial distribution of particle number density computed from digitized photographs and phase-averaged particle velocity measurements yield further evidence that local particle dispersion and concentration are governed by convection due to large-scale turbulence structures. The large-scale structures and convection mechanisms were shown to persist for particle-to-air mass loading ratios up to 0.65.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference18 articles.

1. Fleckhaus, D. , Hishida, K. & Maeda, M. 1987 Effect of laden solid particles on the turbulent flow structure of a round free jet.Exps Fluids 5,323–333.

2. Kamalu, N. , Wen, F. , Troutt, T. R. , Crowe, C. T. & Chung, J. N. 1988 Particle dispersion by ordered motion in turbulent mixing layers. ASME Forum on Cavitation and Multiphase Flow ,pp.150–154.

3. Longmire, E. K. & Eaton, J. K. 1990 Structure and control of a particle-laden jet. Rep. MD-58, Thermosciences Division, Dept. of Mech. Engng, Stanford University.

4. Bouchard, E. E. & Reynolds, W. C. 1982 The structure and growth of the mixing layer region of a round jet. Rep. TF-17, Thermosciences Division, Dept. of Mech. Engng, Stanford University.

5. Dahm, W. J. A. & Dimotakis, P. E. 1987 Measurements of entrainment and mixing in turbulent jets.A/AA J. 25,1216–1223.

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