THE EFFECT OF VORTEX PAIRING ON PARTICLE DISPERSION AND KINETIC-ENERGY TRANSFER IN A 2-PHASE TURBULENT SHEAR-LAYER

被引:37
作者
KIGER, KT
LASHERAS, JC
机构
[1] Department of Applied Mechanics and Engineering Sciences, University of California at San Diego, La Jolla, CA
关键词
D O I
10.1017/S0022112095004058
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The transport of heavy, polydispersed particles and the inter-phase transfer of kinetic energy due to the viscous drag forces is measured experimentally in a turbulent shear layer. To study the effect of the large-scale vortex pairing event, the shear layer is forced simultaneously with a fundamental and subharmonic perturbation. It is shown that vortex pairing plays a homogenizing role on the particulate field, but the amount of homogenization is strongly dependent upon the particle's viscous relaxation time, the eddy turnover time, as well as the time the particles interact with each scale prior to a pairing event. Thus, even though the smaller size particles become well-mixed across the large eddies, the larger sizes are still dispersed in an inhomogeneous fashion. It is also found that the kinetic energy transfer between the phases occurs inhomogeneously with energy being exchanged predominantly in a sublayer just outside the region of maximum turbulence intensity. The kinetic energy transfer is shown to exhibit notable positive and negative peaks located beneath the cores and stagnation points of the large-scale eddy held, and these peaks are shown to result from the irrotational velocity perturbations created by the vortices. This energy exchange mechanism remains a prominent process as long as the Stokes number of the particles relative to the vortices is of order unity.
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页码:149 / 178
页数:30
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