Revolution of coarse-grained CFD-DEM technology and its application in fluidized beds: A comprehensive review
Reviewartikel, 2025

Due to their superior mixing and heat transfer capabilities, fluidized beds are extensively utilized in chemical engineering, power generation, etc. Numerical simulations have long been essential for elucidating the nonlinear multiphase transfer processes within reactors. However, as the research perspective expands from lab-to pilot- and industrial-scale, the exponential increase in particle numbers constrains the applicability of multiphase flow models such as discrete element method (DEM), direct numerical simulation, etc. As an extension of traditional DEM methods, the coarse-grained (CG) DEM strategy effectively balances computational efficiency and accuracy. In order to promote the advancement of CG DEM in the field of fluidized beds, its development and applications are comprehensively reviewed in this work. First, the foundational principles of the CG method—similarity and energy conservation—are outlined. The scaling paradigms of the collision parameters, force formulations, and gas-solid properties are systematically listed in chronological order. Subsequently, the applications of the CG method across lab-, pilot-, and industrial-scale fluidized beds under both cold and heated conditions are summarized. Finally, future challenges and opportunities are highlighted. This review aims to accelerate the adoption of CG techniques in industrial-scale reactors while providing theoretical insights for optimizing existing models and developing novel scaling laws.

Författare

Guanlong Ren

South China University of Technology

Xu Ji

Chinese Academy of Sciences

Jiayu Xu

Chinese Academy of Sciences

Yi Ouyang

Universiteit Gent

Henrik Ström

Chalmers, Mekanik och maritima vetenskaper, Strömningslära

Wei Ge

Chinese Academy of Sciences

Haijun Sun

Nanchang Hangkong University

Qingang Xiong

South China University of Technology

Particuology

1674-2001 (ISSN) 22104291 (eISSN)

Vol. 106 45-69

Ämneskategorier (SSIF 2025)

Energiteknik

DOI

10.1016/j.partic.2025.08.017

Mer information

Senast uppdaterat

2025-09-26