THE ROLE OF COHERENT STRUCTURES IN BUBBLE TRANSPORT BY TURBULENT SHEAR FLOWS

被引:76
|
作者
SENE, KJ
HUNT, JCR
THOMAS, NH
机构
[1] UNIV BIRMINGHAM,FRED LTD,BIRMINGHAM B15 2TT,W MIDLANDS,ENGLAND
[2] UNIV CAMBRIDGE,DEPT APPL MATH & THEORET PHYS,CAMBRIDGE CB3 9EW,ENGLAND
[3] METEOROL OFF,BRACKNELL RB12 2SZ,BERKS,ENGLAND
[4] UNIV BIRMINGHAM,FAST TEAM,BIRMINGHAM B15 2TT,W MIDLANDS,ENGLAND
关键词
D O I
10.1017/S0022112094000108
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Using Auton's force law for the unsteady motion of a spherical bubble in inhomogeneous unsteady flow, two key dimensionless groups are deduced which determine whether isolated vortices or shear-layer vortices can trap bubbles. These groups represent the ratio of inertial to buoyancy forces as a relaxation parameter PI = DELTAU2/2gx and a trapping parameter GAMMA = DELTAU/V(T) where DELTAU is the velocity difference across the vortex or the shear layer, x is streamwise distance measured from the effective origin of the mixing layer and V(T) is the terminal slip speed of the bubble or particle. It is shown here that whilst buoyancy and drag forces can lead to bubbles moving in closed orbits in the vortex flows (either free or forced), only inertial forces result in convergent trajectories. Bubbles converge on the downflow side of the vortex at a location that depends on the inertial and lift forces. It is important to note that the latter have been omitted from many earlier studies. A discrete-vortex model is used to simulate the large-scale unsteady flows within horizontal and vertical mixing layers between streams with velocity difference DELTAU. Trajectories of non-interacting small bubbles are computed using the general force law. In the horizontal mixing layer it is found that GAMMA needs to have a value of about 3 to trap about 50% of the bubbles if PI is about 0. 5 and greater if PI is less. The pairing of vortices actually enhances their trapping of bubbles. In the vertical mixing layer bubbles are trapped mainly within the growing vortices but bubbles are concentrated on the downflow side of the vortices as GAMMA and PI increase. In a companion paper we show that lateral dispersion of bubbles can be approximately described by an advective diffusion equation with the diffusivity about equal to the eddy viscosity, i.e. rather less than the diffusivity of heat or other passive scalars.
引用
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页码:219 / 240
页数:22
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