PARTICLE RESPONSE AND TURBULENCE MODIFICATION IN FULLY-DEVELOPED CHANNEL FLOW

被引:492
作者
KULICK, JD
FESSLER, JR
EATON, JK
机构
[1] Department of Mechanical Engineering, Stanford University, Stanford, CA
关键词
D O I
10.1017/S0022112094002703
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The interactions between small dense particles and fluid turbulence have been investigated in a downflow fully developed channel in air. Particle velocities of, and fluid velocities in the presence of, 50 mu m glass, 90 mu m glass and 70 mu m copper spherical beads were measured by laser Doppler anemometry, at particle mass loadings up to 80%. These particles were smaller than the Kolmogorov lengthscale of the flow and could respond to some but not all of the scales of turbulent motion. Streamwise mean particle velocity profiles were flatter than the mean fluid velocity profile, which was unmodified by particle loading. Particle velocity fluctuation intensities were larger than the unladen-fluid turbulence intensity in the streamwise direction but were smaller in the transverse direction. Fluid turbulence was attenuated by the addition of particles; the degree of attenuation increased with particle Stokes number, particle mass loading and distance from the wall. Turbulence was more strongly attenuated in the transverse than in the streamwise direction, because the turbulence energy is at higher frequencies in the transverse direction. Streamwise turbulence attenuation displayed a range of preferred frequencies where attenuation was strongest.
引用
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页码:109 / 134
页数:26
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