2018•AIP conference proceedingsRequires access

Numerical simulation of four phase flows in inertial separators type

I. Kh. Enikeev

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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.

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Available 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.

Key concepts: Mechanics, Two-phase flow, Flow (mathematics), Work (physics), Inertial frame of reference, Channel (broadcasting), Range (aeronautics), Phase (matter)

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