FIELD: technological processes.
SUBSTANCE: vibration method of fluid mixture division into carrier flow and additional component is carried out with the help of division device, which consists of supply system of fluid mixture (2), dividing chamber (1), which includes the first compartment (6), the second compartment (4) and dividing facility (3), devices for carrier agent bleeding (8) and devices for additional components bleeding (9). Fluid mixture flow is sent to device of fluid mixture supply (2) so that it arrives into the first compartment (6), fluid mixture is divided with the help of dividing facility into carrier agent, which is accumulated in the second compartment (4) and into additional components that are accumulated in the first compartment (6), carrier agent is bled with carrier agent bleeding device (8) and additional components - with device of additional components bleeding (9). In device of fluid mixture supply (2) flow of fluid mixture is subjected to exposure of at least one first periodic effect, and, in the first compartment (6), flow of fluid mixture is subjected to exposure of at least one second periodic effect, at that ratio of frequencies of the first and second periodic effects is more than 10. In the process of fluid mixture supply in the first compartment fluid mixture is finely dispersed and/or fluid mixture is micronised, with formation of particles with size below one micron, after that fluid micronised mixture is separated into carrier agent and additional component. Specified particles are condensed, by creation of periodic effects in the form of carrier agent flow waves with the help of condensation device, which is represented by static system of alternating partitions of different height, which form stationary waves of medium, or with dynamic system that forms pulsing mobile medium waves, or with their combination.
EFFECT: control of fluid mixture supply flow rate; carrier agent bleeding flow and additional components bleeding flow rate.
8 cl, 3 dwg
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Authors
Dates
2008-10-20—Published
2003-02-07—Filed