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Computational Transport Phenomena of Multiphase Systems and Fluidization

  • Huilin Lu
  • , Qinghong Zhang
  • , Boxue Pang
  • , Guodong Liu
  • , Xiaoxue Jiang
  • , Wenjian Cai
  • School of Energy Science and Engineering, Harbin Institute of Technology
  • Shandong University of Technology
  • Northeastern University China
  • Changzhou University
  • China Aerospace Science and Technology Corporation

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

Abstract

This book focuses on the modeling of gas-solid, liquid-solid, non-Newtonian fluid-solid, and supercritical fluid-solid fluidized beds and multiphase flows. Simulation techniques are categorized into Euler–Euler with kinetic theory of granular flow (KTGF) and Euler–Lagrange with discrete element method (DEM) approaches. Both the governing equations and numerical implementations are presented. A new CFD-KTGF-DEM approach describes phase interactions, free from the empirical restitution coefficient used in KTGF, and accounts for turbulence effects on discrete particle motion, which DEM cannot achieve. Additionally, a low Stokes number KTGF model is introduced, incorporating the interstitial fluid's effect, unlike the classical KTGF, which assumes vacuum conditions. Special attention is given to momentum exchange between heterogeneous and homogeneous flows in fluidized beds and multiphase systems, and various multiscale drag models are presented. The book also discusses the application of these approaches in fluid-solid fluidized bed reactors and oil-gas drilling processes.

Original languageEnglish
Title of host publicationFluid Mechanics and its Applications
PublisherSpringer Science and Business Media B.V.
Pages1-304
Number of pages304
DOIs
StatePublished - 2025
Externally publishedYes

Publication series

NameFluid Mechanics and its Applications
Volume127
ISSN (Print)0926-5112
ISSN (Electronic)2215-0056

Keywords

  • Circulating Fluidized Bed
  • Coal and Biomass Gasification
  • Computational Fluid Dynamics
  • Discrete Element Method
  • Fluidization
  • Kinetic Theory of Granular Flow
  • Molten Salt Thermal Energy Application
  • Multiphase Flow

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