Direct numerical simulations (DNS) are carried out to investigate the kinem
atics of vortical structures in a homogeneous shear flow, and their associa
tion with the momentum transfer is studied in detail. Longitudinal streamwi
se vortices are generated and conditionally averaged over all the computati
onal region. The effects of the nonlinear term on their kinematics are inve
stigated by comparing the DNS and Rapid Distortion Theory (i.e., RDT). As a
result, some important similarities are found in the vortical structure be
tween the homogeneous shear flow and near-wall turbulence. It is also found
that the strain rate in the vortical structure, which is markedly affected
by the nonlinear term, determines the transfer functions associated with t
he energy cascade of the turbulence. (C) 2000 American Institute of Physics
. [S1070-6631(00)51111-8].