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Computational transport phenomena of...
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Lu, Huilin.
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Computational transport phenomena of multiphase systems and fluidization = formulation and application of kinetic theory of granular flow /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Computational transport phenomena of multiphase systems and fluidization/ by Huilin Lu ... [et al.].
其他題名:
formulation and application of kinetic theory of granular flow /
其他作者:
Lu, Huilin.
出版者:
Singapore :Springer Nature Singapore : : 2025.,
面頁冊數:
xiv, 293 p. :ill. (chiefly color), digital ;24 cm.
內容註:
Introduction to Basic Equations and Kinetic Theory of Granular Flow -- CFD-DEM Approach for Fluid-Particles Flow -- Fluid-Solid Two-Phase CFD-KTGF-DEM Approach -- Low-Stokes-Number Kinetic Theory of Granular Flow -- Minimum Rate of Energy Dissipation and Interfacial Momentum Closure of Heterogeneous Flow Structures -- Applications of Computational Fluid Dynamics to Multiphase Flows.
Contained By:
Springer Nature eBook
標題:
Granular flow. -
電子資源:
https://doi.org/10.1007/978-981-96-0698-6
ISBN:
9789819606986
Computational transport phenomena of multiphase systems and fluidization = formulation and application of kinetic theory of granular flow /
Computational transport phenomena of multiphase systems and fluidization
formulation and application of kinetic theory of granular flow /[electronic resource] :by Huilin Lu ... [et al.]. - Singapore :Springer Nature Singapore :2025. - xiv, 293 p. :ill. (chiefly color), digital ;24 cm. - Fluid mechanics and its applications,v. 1272215-0056 ;. - Fluid mechanics and its applications ;v. 127..
Introduction to Basic Equations and Kinetic Theory of Granular Flow -- CFD-DEM Approach for Fluid-Particles Flow -- Fluid-Solid Two-Phase CFD-KTGF-DEM Approach -- Low-Stokes-Number Kinetic Theory of Granular Flow -- Minimum Rate of Energy Dissipation and Interfacial Momentum Closure of Heterogeneous Flow Structures -- Applications of Computational Fluid Dynamics to Multiphase Flows.
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.
ISBN: 9789819606986
Standard No.: 10.1007/978-981-96-0698-6doiSubjects--Topical Terms:
2133166
Granular flow.
LC Class. No.: TA357.5.G47
Dewey Class. No.: 532.051
Computational transport phenomena of multiphase systems and fluidization = formulation and application of kinetic theory of granular flow /
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Introduction to Basic Equations and Kinetic Theory of Granular Flow -- CFD-DEM Approach for Fluid-Particles Flow -- Fluid-Solid Two-Phase CFD-KTGF-DEM Approach -- Low-Stokes-Number Kinetic Theory of Granular Flow -- Minimum Rate of Energy Dissipation and Interfacial Momentum Closure of Heterogeneous Flow Structures -- Applications of Computational Fluid Dynamics to Multiphase Flows.
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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.
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