Mathematical Modeling of Gas-Solid Two-Phase Flows: Problems, Achievements and Perspectives (A Review)

Математическое моделирование газо-твердофазных двухфазных течений: проблемы, достижения и перспективы (обзор)
A. Yu. Varaksin, Sergei V. Ryzhkov
2023-07-26

Euler approachLagrangian approachgas-solid two-phase flowsinterphase coupling (OWC, TWC, FWC)turbulence modeling (RANS, LES, DNS)
Mathematical modeling is the most important tool for constructing theories of different kinds of two-phase flows. This review is devoted to the analysis of the introduction of mathematical modeling to two-phase flows, where solid particles mainly serve as the dispersed phase. The main problems and features of the study of gas-solid two-phase flows are included. The main characteristics of gas flows with solid particles are discussed, and the classification of two-phase flows is developed based on these characteristics. The Lagrangian and Euler approaches to modeling the motion of a dispersed phase (particles) are described. A great deal of attention is paid to the consideration of numerical simulation methods that provide descriptions of turbulent gas flow at different hierarchical levels (RANS, LES, and DNS), different levels of description of interphase interactions (one-way coupling (OWC), two-way coupling (TWC), and four-way coupling (FWC)), and different levels of interface resolution (partial-point (PP) and particle-resolved (PR)). Examples of studies carried out on the basis of the identified approaches are excluded, and they are also excluded for the mathematical modeling of various classes of gas-solid two-phase flows.
1
Both Lagrangian and Eulerian approaches for modeling dispersed particle motion are described as fundamental modeling frameworks.
2
Mathematical modeling is the primary tool for developing theories of gas-solid two-phase flows where solids are the dispersed phase.
3
Numerical simulation methods are surveyed across turbulence modeling hierarchies (RANS, LES, DNS), interphase coupling levels (OWC, TWC, FWC), and interface resolution levels (PP, PR).
4
The review identifies main problems and distinctive features specific to studying gas-solid two-phase flows and develops a classification based on flow characteristics.
5
The review intentionally excludes detailed examples and specific mathematical models for particular classes of gas-solid flows, focusing instead on methodological taxonomy and perspectives.

Gas-solid two-phase flows with dispersed solid particles

Mathematical modeling approaches and characteristics of gas-solid two-phase flows, including Lagrangian/Eulerian representations, turbulence modeling levels (RANS, LES, DNS), interphase coupling regimes (OWC, TWC, FWC), and interface resolution strategies (PP, PR)

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2023-07-26
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Authors
A. Yu. Varaksin
Sergei V. Ryzhkov
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