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Continuum theory for dense gas-solid flow: A state-of-the-art review
J Wang - Chemical Engineering Science, 2020 - Elsevier
Gas-solid fluidization technology has been commercialized in many industrial applications
since its implementation in the fluid catalytic cracking process in the early 1940s, however …
since its implementation in the fluid catalytic cracking process in the early 1940s, however …
Lagrangian–Eulerian methods for multiphase flows
S Subramaniam - Progress in Energy and Combustion Science, 2013 - Elsevier
This review article aims to provide a comprehensive and understandable account of the
theoretical foundation, modeling issues, and numerical implementation of the Lagrangian …
theoretical foundation, modeling issues, and numerical implementation of the Lagrangian …
Particle-resolved direct numerical simulation for gas-solid flow model development
Gas-solid flows in nature and industrial applications are characterized by multiscale and
nonlinear interactions that manifest as rich flow physics and pose unique modeling …
nonlinear interactions that manifest as rich flow physics and pose unique modeling …
Machine learning to assist filtered two‐fluid model development for dense gas–particle flows
Abstract Machine learning (ML) is experiencing an immensely fascinating resurgence in a
wide variety of fields. However, applying such powerful ML to construct subgrid interphase …
wide variety of fields. However, applying such powerful ML to construct subgrid interphase …
[HTML][HTML] Toward constitutive models for momentum, species, and energy transport in gas–particle flows
As multiscale structures are inherent in multiphase flows, constitutive models employed in
conjunction with transport equations for momentum, species, and energy are scale …
conjunction with transport equations for momentum, species, and energy are scale …
[KNIHA][B] Multiphase flow handbook
E Michaelides, CT Crowe, JD Schwarzkopf - 2016 - books.google.com
The Multiphase Flow Handbook, Second Edition is a thoroughly updated and reorganized
revision of the late Clayton Crowe's work, and provides a detailed look at the basic concepts …
revision of the late Clayton Crowe's work, and provides a detailed look at the basic concepts …
On multiphase turbulence models for collisional fluid–particle flows
RO Fox - Journal of Fluid Mechanics, 2014 - cambridge.org
Starting from a kinetic theory (KT) model for monodisperse granular flow, the exact Reynolds-
averaged (RA) equations are derived for the particle phase in a collisional fluid–particle …
averaged (RA) equations are derived for the particle phase in a collisional fluid–particle …
The clustering instability in rapid granular and gas-solid flows
Flows of solid particles are known to exhibit a clustering instability—dynamic microstructures
characterized by a dense region of highly concentrated particles surrounded by a dilute …
characterized by a dense region of highly concentrated particles surrounded by a dilute …
[KNIHA][B] Granular gaseous flows
V Garzó, V Garzó, PACKER. - 2019 - Springer
Granular materials are ubiquitous in nature and are also employed in many industrial
settings such as those involving chemical processes, pharmaceutical products, mining, and …
settings such as those involving chemical processes, pharmaceutical products, mining, and …
Pseudo-turbulent gas-phase velocity fluctuations in homogeneous gas–solid flow: fixed particle assemblies and freely evolving suspensions
Gas-phase velocity fluctuations due to mean slip velocity between the gas and solid phases
are quantified using particle-resolved direct numerical simulation. These fluctuations are …
are quantified using particle-resolved direct numerical simulation. These fluctuations are …