It is pointed out that mass transport in an artery, such as LDL transport,
influences the progression of stenosis severely. Mass transport in blood fl
ow through a stenosed tube is analyzed numerically. Flow is assumed to be p
eriodic, incompressible and axisymmetric. Non-Newtonian viscosity of blood
and movement of arterial wall are considered, The effect of pulsation, non-
Newtonian property of blood and wall movement on mass transport is investig
ated. Flow pattern, concentration pattern and distribution of concentration
gradient on the wall are obtained. It is found that the.. effect of the vo
rtex on mass transport on the wall changes drastically with Schmidt number.
In low Schmidt number flow the strength of vortex and its center position
are important. Therefore, time-mean mass transport on the wall has maximum
value at certain frequency because of the vortex enhancement. On the other
hand, whether the vortex downstream of the stenosis flows away or not becom
es important in high Schmidt number flow.