Three-dimensional numerical simulation and experimental studies have b
een conducted on the fluid flow and particle movement in a cyclone cla
ssifier with blowdown. By use of the blow-down method, the downward ve
locity component near the conical wall becomes larger than the case wi
thout blow down. In the case of the blow-down method, the particles co
llected on the conical wall move to the dust box smoothly and 50% cut
size decreases. It was also confirmed by the simulation that particles
of small diameter enter the dust box first, but they eventualy exit t
he box in the case without blow-down. In the case of blow-down, partic
les of small diameter are aspirated into the blow-down tube and re-ent
rainment of particles from the dust box can be suppressed. From the ex
perimental and theoretical studies, it was also found that the partial
separation efficiency with small inertia tends to become constant in
the case of the brow-down method.