ISSN 2409-0379
Язык: en

Статья: NUMERICAL MODEL OF AEROSOL FLOW DUE TO PARTICLE-GAS INTERACTION (2021)

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In the paper, flows of an inhomogeneous medium consisting of gas and dispersed inclusions are simulated. The research objective is aerosols, i.e. solid particles or liquid droplets suspended in gas. The mathematical model of the complex medium flow consists of the dynamics equations for the carrier component, i.e. gas, and the dynamics equations for the dispersed component. The system of equations describing the motion of each mixture component includes continuity equations of mass, momentum and energy. The continuity of momentum for the carrier phase is described by the one-dimensional Navier-Stokes equation. The interphase interaction was defined by relations known from the literature. The mixture dynamics was simulated in one-dimensional approximation. The mathematical model equations were integrated using an explicit finite-difference method. To suppress numerical oscillations, a nonlinear grid function correction scheme was applied to the obtained solution.

Ключевые фразы: numerical simulation, multiphase media dynamics, explicit finite-difference scheme, interphase interaction.
Автор (ы): Тукмаков Дмитрий Алексеевич
Журнал: The complex systems

Идентификаторы и классификаторы

УДК
532.5. Движение жидкостей. Гидродинамика
533.2. Упругость, сжимаемость. Сжижение. Газовые смеси
Для цитирования:
ТУКМАКОВ Д. А. NUMERICAL MODEL OF AEROSOL FLOW DUE TO PARTICLE-GAS INTERACTION // THE COMPLEX SYSTEMS. 2021. № 1 (11)
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