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Theory and Simulation of Incipient Instability in Gas-solid Fluidization

Theory and Simulation of Incipient Instability in Gas-solid Fluidization
Author: Kar Yang Look
Publisher:
Total Pages: 166
Release: 2006
Genre: Fluidization
ISBN:

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The mechanism of incipient in gas-solid fluidized bed was investigated by using Computational Fluid Dynamics (CFD) simulation - FLUENT version 6.1.18. The Finite Volume Method (FVM) is employed to simulate the complex flow behaviours and heterogenous structure of the gas-solid fluidized bed. Fluidization of Geldart group A B and C particles were simulated. The formation and development of the plumes during incipient fluidization were studied. Different fluidization behaviours of Geldart group A, B and C particles were observed from the contours of gas volume fraction and velocity vector. The observation agreed well with characteristics and behaviours of particles in gas-solid fluidized bed as reported by Geldart (1973). A theory of transient instability adopted with the principles advanced by Tan and Thorpe (1992 and 1996) was proposed to calculate the theoretical transient Rayleigh number (Rac) for the onset of incipient instability. The mobilization of the particles occured once a critical value of transient Rayleigh number was exceeded. Different type of particles exhibit different Rac values. However, the Rac is almost independent of the superficial velocity. The incipient instability of gas-solid fluidized bed was first indentified when the initial stable air diffusion became distorted and particles began to move chaotically. The fluidization parameters such as gas volume fraction, bubble rise velocity and bed pressure drop were used to determine the critical time for onset of incipient instability. The simulated critical onset time (tc) and transient Rayleigh Number (Rac) for the incipient instability of gas-solid fluidized bed were then investigated. A correlation between Rac and permeability was derived, which provides a convenient and simple way to estimate the Rac. The predicted values of Rac were found to agree fairly with the literature data.


Gas-Liquid-Solid Fluidization Engineering

Gas-Liquid-Solid Fluidization Engineering
Author: Liang-Shih Fan
Publisher: Butterworth-Heinemann
Total Pages: 784
Release: 2013-10-22
Genre: Technology & Engineering
ISBN: 1483289516

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This book provides a comprehensive mechanistic interpretation of the transport phenomena involved in various basic modes of gas-liquid-solid fluidization. These modes include, for example, those for three-phase fluidized beds, slurry columns, turbulent contact absorbers, and three-phase fluidized beds, slurry columns, turbulent contact absorbers, and three-phase transport. It summarizes the empirical correlations useful for predicting transport properties for each mode of of operation.Gas-Liquid-Solid Fluidization Engineering provides a comprehensive account of the state-of-the-art applications of the three-phase fluidization systems that are important in both small-and large-scale operations. These applications include fermentation,biological wastewater treatment, flue gas desulfurization and particulates removal, and resid hydrotreating. This book highlights the industrial implications of these applications. In addition, it discusses information gaps and future directions forresearch in this field.


Hydrodynamics of Gas-solids Fluidization

Hydrodynamics of Gas-solids Fluidization
Author: Nicholas P. Cheremisinoff
Publisher: Butterworth-Heinemann
Total Pages: 888
Release: 1984
Genre: Science
ISBN:

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Numerical Simulation of the Hydrodynamic Behavior of a Gas-solid Fluidized Bed with and Without an Electric Field

Numerical Simulation of the Hydrodynamic Behavior of a Gas-solid Fluidized Bed with and Without an Electric Field
Author: Forhad Md Hossain
Publisher:
Total Pages: 286
Release: 1998
Genre:
ISBN:

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The objective of this investigation is to numerically predict the effect of an electric field on a two-dimensional gas-solid fluidized bed. The particles in the bed are taken to be of a uniform size and density forming the particulate phase with a gas (air) taken as the continuum phase. A hydrodynamic model of fluidization utilizes the principles of conservation of mass and momentum describing the multiphase flow equations along with the constitutive equations of gas-solid drag and solids stress. A two-dimensional unsteady-state computer code (K-Fix) was used to observe the effect of an electric field on the gas and solid velocities and the void fraction and pressure in the bed. Special case studies included that of a jet, a bubble, and two bubbles, with and without an electric field.


Multiphase Flow and Fluidization

Multiphase Flow and Fluidization
Author: Dimitri Gidaspow
Publisher: Elsevier
Total Pages: 489
Release: 2012-12-02
Genre: Science
ISBN: 0080512267

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Useful as a reference for engineers in industry and as an advanced level text for graduate engineering students, Multiphase Flow and Fluidization takes the reader beyond the theoretical to demonstrate how multiphase flow equations can be used to provide applied, practical, predictive solutions to industrial fluidization problems. Written to help advance progress in the emerging science of multiphase flow, this book begins with the development of the conservation laws and moves on through kinetic theory, clarifying many physical concepts (such as particulate viscosity and solids pressure) and introducing the new dependent variable--the volume fraction of the dispersed phase. Exercises at the end of each chapterare provided for further study and lead into applications not covered in the text itself. Treats fluidization as a branch of transport phenomena Demonstrates how to do transient, multidimensional simulation of multiphase processes The first book to apply kinetic theory to flow of particulates Is the only book to discuss numerical stability of multiphase equations and whether or not such equations are well-posed Explains the origin of bubbles and the concept of critical granular flow Presents clearly written exercises at the end of each chapter to facilitate understanding and further study


Handbook of Fluidization and Fluid-Particle Systems

Handbook of Fluidization and Fluid-Particle Systems
Author: Wen-Ching Yang
Publisher: CRC Press
Total Pages: 873
Release: 2003-03-19
Genre: Science
ISBN: 0824748360

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This reference details particle characterization, dynamics, manufacturing, handling, and processing for the employment of multiphase reactors, as well as procedures in reactor scale-up and design for applications in the chemical, mineral, petroleum, power, cement and pharmaceuticals industries. The authors discuss flow through fixed beds, elutriation and entrainment, gas distributor and plenum design in fluidized beds, effect of internal tubes and baffles, general approaches to reactor design, applications for gasifiers and combustors, dilute phase pneumatic conveying, and applications for chemical production and processing. This is a valuable guide for chemists and engineers to use in their day-to-day work.


Determination of Cohesive and Normal Stresses and Simulation of Fluidization Using Kinetic Theory

Determination of Cohesive and Normal Stresses and Simulation of Fluidization Using Kinetic Theory
Author:
Publisher:
Total Pages: 101
Release: 1991
Genre:
ISBN:

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The general objective of this study is focused on the solid stresses involved in gas-solid flow. These stresses are generally included in the momentum conservation equations, essentially for stability and to prevent particles from collapsing to unreasonably low values of gas volume fraction. The first half of this work undertakes the measurement of the stresses in various powders by direct means, while the second part uses a newly developed kinetic theory constitutive equation for stress to predict the flow and also the solids viscosity in a CFB. The cohesive or tensile stress found to exist in some classes of powders is measured using a Cohetester, based on which a cohesive force model is derived, which is sensitive to the characteristic properties of the powder material. The normal stress is measured using a Consolidometer, and the powder solids modulus is obtained as a function of the volume fraction. The solids modulus is seen to vary with particle size and particle type, with the smaller size particles being more compressible. The simulation of flow in the CFB using Gidaspow's (1991) extension of Ding's (1990) kinetic theory model to dilute phase flow, predicts realistic values of solids viscosity that are comparable to viscosities obtained experimentally by Miller (1991). However, to obtain a match between the two the value of the restitution coefficient has to be close to unity. The flow behavior showed periodic oscillations of flow (turbulence) as seen in a real system. 26 refs., 51 figs., 1 tab.


Modelling on Gas-solid Fluidization in Bubbling Fluidized Beds and Circulating Fluidized Beds

Modelling on Gas-solid Fluidization in Bubbling Fluidized Beds and Circulating Fluidized Beds
Author: Md. Mizanur Rahman
Publisher:
Total Pages: 8
Release: 1997
Genre:
ISBN:

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A fluidization model was developed by adopting the transport equations of the gas and solid phases and the constitutive relations for the solid phase derived by Ding [1]. Finite difference method was used for the numerical solution of the set of partial differential equations governing the gas solid two-phase flow. The develop model has the capability of treating a variety of boundary and initial conditions. The model was applied for the simulation of bubbling fluidization with a rectangular obstacle over a central jet and uniform gas distribution system a in a two-dimensional bed. The model was also applied for the computation of circulating fluidized (CFB) and to observe the effect of particle inelasticity on the hydrodynamics of CFB.