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PARTICLE CONCENTRATION AND SIZE MEASUREMENTS IN TWO-PHASE TURBULENT COAXIAL JETS
Authors:Jianren Fan   Hua Zhao  Kefa Cen
Affiliation: a Department of Energy Engineering, Zhejiang University, Hangzhou, P.R., China
Abstract:
Particle concentration and particle size distributions have been measured for two-phase (solid/air) turbulent coaxial jets using the Laser Diffraction Method (LDM) and a tomography data transform technique. Effects of velocity ratio, particle loading ratio, and particle size on the dispersions of gas and particles were determined. Experimental results show that the gas disperses much more rapidly than the particles and particle dispersion decreases with increasing in particle size. Increasing velocity ratio significantly increases gas dispersion, while effects of other variables are less significant. The mean particle size at the jet edge is about 15-20% smaller than that at the jet centerline. The turbulent Schmidt number Scp for two-phase turbulent coaxial jets ranges from 1.4 to 1.5.
Keywords:Two-phase turbulent coaxial jet  particle concentration and particle size distributions  particle and gas dispersions  Laser Diffraction Method (LDM)
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