Numerical simulation of four phase flows in inertial separators type
I. Kh. Enikeev
Abstract
I. Kh. Enikeev
Abstract
The work is dedicated to the diffusion of large particles method for calculating flow four phase flows in the channels of complex shapes, simulating the shape of a two-step confusional air cleaner. Hydrodynamic flow structure has been investigated in a wide range of change guiding parameters for undisturbed flow. Particular attention is paid to the regimes movement gas-dispersed flows in curved channels with a large mass of disperse phase content in the input section of the channel.
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The work is dedicated to the diffusion of large particles method for calculating flow four phase flows in the channels of complex shapes, simulating the shape of a two-step confusional air cleaner. Hydrodynamic flow structure has been investigated in a wide range of change guiding parameters for undisturbed flow. Particular attention is paid to the regimes movement gas-dispersed flows in curved channels with a large mass of disperse phase content in the input section of the channel.
Key concepts: Mechanics, Two-phase flow, Flow (mathematics), Work (physics), Inertial frame of reference, Channel (broadcasting), Range (aeronautics), Phase (matter)