Last edited by Tusho
Thursday, May 14, 2020 | History

3 edition of Gas-particle flows found in the catalog.

Gas-particle flows

presented at the 1995 ASME/JSME Fluids Engineering and Laser Anemometry Conference and Exhibition, August 13-18, 1995, Hilton Head, South Carolina

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  • 30 Currently reading

Published by American Society of Mechanical Engineers in New York, N.Y .
Written in English

    Subjects:
  • Two-phase flow -- Congresses.,
  • Gas dynamics -- Congresses.

  • Edition Notes

    Includes bibliographical references and index.

    Statementsponsored by the Fluids Engineering Division, ASME ; edited by David E. Stock ... [et al.].
    SeriesFED ;, vol. 228, FED (Series) ;, v. 228.
    ContributionsStock, David E., American Society of Mechanical Engineers. Fluids Engineering Division., ASME/JSME Fluids Engineering and Laser Anemometry Conference and Exhibition (1995 : Hilton Head, S.C.)
    Classifications
    LC ClassificationsTA357 .G298 1995
    The Physical Object
    Paginationviii, 442 p. :
    Number of Pages442
    ID Numbers
    Open LibraryOL823418M
    ISBN 100791814831
    LC Control Number95078758
    OCLC/WorldCa33377139

      This paper examines the turbulent flow of heavy particles in horizontal channels and pipes. Calculations for the fluid are performed within an Eulerian frame of reference, while the particulate phase is considered as several continuous polydisperse media, each constituting a separate by: 7. Dasgupta, R. Jackson, and S. Sundaresan, "Turbulent Gas-Particle Flow in CFB Risers", Proceedings of The Fourth International Conference on Circulating Fluid Beds, (). (pdf)

    Presents a theoretical treatment of basic combustion phenomena in laminar and gas-particle flows, the numerical modelling theory, methods of turbulent single-phase gas particle flows and combustion. Among the topics discussed are ignition and extinction, and laminar premixed combustion. Suitable for a first-year graduate (5th year) course as well as a reference for engineers and scientists, the book is clearly written and provides an essential presentation of key topics in the study of gas-particle and gas-droplet Range: $ - $

    @article{osti_, title = {Dense gas-particle flows with chemical reactions}, author = {Syamial, M}, abstractNote = {The computation of dense gas-particle flows, pioneered by Professor Dimitri Gidaspow, is fast becoming a tool for analyzing practical industrial problems. In such computations the gas-solids flow is described as the flow of two interpenetrating phases. T1 - Recent progress towards hydrodynamic modelling of dense gas-particle flows. AU - Goldschmidt, M.J.V. AU - Hoomans, B.P.B. AU - Kuipers, J.A.M. PY - Y1 - N2 - In this paper a state-of-the-art review will be presented on hydrodynamic modeling of dense gas-particle flows as encountered in the fluid bed family of gas-solid by: 1.


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Gas-particle flows Download PDF EPUB FB2

Theory and Numerical Modeling of Turbulent Gas-Particle Flows and Combustion is an excellent book for researchers, designers, instructors, and students interested in this field. Fundamentals of Gas-particle Flow (Handbook of powder technology) by G.

Rudinger (Author) ISBN ISBN Why is ISBN important. ISBN. This bar-code number lets you verify that you're getting exactly the right version or edition of a book Cited by: The book focuses on relaxation processes, including the viscous drag of single particles, drag in gas-particles flow, gas-particle heat transfer, equilibrium, and frozen flow.

It also discusses the dynamics of single particles, such as particles in an arbitrary flow, in a rotating gas, in a Prandtl-Meyer expansion, and in an oscillating by: As the modeling of gas-particle and granular flow systems is an emerging interdisciplinary field of study involving mathematics, numerical methods, computational science, and mechanical, chemical and nuclear engineering, this book provides an ideal resource for new researchers who are often intimidated by the complexities of fluid-particle, particle-particle, and particle-wall interactions in many.

Fundamentals of Gas Particle Flow V2 Paperback – Novem by G. Rudinger (Author) See all 5 formats and editions Hide other formats and editions. Price Author: G. Rudinger. The book focuses on relaxation processes, including the viscous drag of single particles, drag in gas-particles flow, gas-particle heat transfer, equilibrium, and frozen flow.

It also discusses the dynamics of single particles, such as particles in an arbitrary flow, in a rotating gas, in a Prandtl-Meyer expansion, and in an oscillating Edition: 1. The book focuses on relaxation processes, including the viscous drag of single particles, drag in gas-particles flow, gas-particle heat transfer, equilibrium, and frozen flow.

It also discusses the dynamics of single particles, such as particles in an arbitrary flow, in a rotating gas, in a Prandtl-Meyer expansion, and Gas-particle flows book an oscillating flow.

Book Description Multiphase flow technology, especially in the area of gas-droplet and gas-particle flows, is increasingly important in the energy and manufacturing industries. Pollution control, pneumatic transport, food processing, combustion, and development of new materials as well as many other engineering applications will benefit from.

Book • Authors: Guan Heng Yeoh and Jiyuan Tu. Browse book content. In comparison to gas-particle flows, the liq­uid and solid phases are mainly driven by and respond largely as one to pressure gradients since the density ratio between phases is normally low and the drag between phases is significantly high in such flows.

Fundamentals of Gas-Particle Flow is an edited, updated, and expanded version of a number of lectures presented on the "e;Gas-Solid Suspensions course organized by the von Karman Institute for Fluid Dynamics. Materials presented in this book are mostly analytical in nature, but some experimental techniques are included.

The book focuses on relaxation processes, including the viscous drag. Suitable for a first-year graduate (5 th year) course as well as a reference for engineers and scientists, the book is clearly written and provides an essential presentation of key topics in the study of gas-particle and gas-droplet flows.

COVID Resources. Reliable information about the coronavirus (COVID) is available from the World Health Organization (current situation, international travel).Numerous and frequently-updated resource results are available from this ’s WebJunction has pulled together information and resources to assist library staff as they consider how to handle coronavirus.

He is the author of following two books: “Theory and Numerical Modeling of Turbulent Gas-Particle Flows and Combustion (in English) inand “Dynamics of Multiphase Turbulent Reacting Fluid Flows (in Chinese) in Brand: Butterworth-Heinemann.

Guan Heng Yeoh, Jiyuan Tu, in Computational Techniques for Multiphase Flows, Classification of Gas–Particle Flows. Gas– particle flows can be sub-divided into two sub-classes of flows, namely gas–solid and gas–droplet flows. The main difference between these two flows is that mass transfer does not occur in the former but occurs in the latter.

A theory is presented for the fully‐developed flow of gas and particles in a vertical pipe. The relation between gas pressure gradient and the flow rates of the two phases is predicted, over the whole range of cocurrent and countercurrent flows, together with velocity profiles for both phases and the radial concentration profile for the by: Gas-Particle Flows in a Swirl Coal Burner Gas-Particle Flows and Coal Combustion in a Combustor with High-Velocity Jets 3-D Gas-Particle Flows and Coal Combustion in a Tangentially Fired Furnace Flows in a Cyclone Separator Coal Combustion in a Vortex Combustor Gas-Particle Flows in a Non-Slagging Cyclone Combustor.

Book Description. Since the publication of the first edition of Multiphase Flow with Droplets and Particles, there have been significant advances in science and engineering applications of multiphase fluid ining the pedagogical approach that made the first edition so popular, this second edition provides a background in this important area of fluid mechanics to those new to the.

Formulation of a range of mechanistic models for the aggregation and break up of solid aggregates in gas-particle and liquid-particle flows is discussed. Possible mechanisms for aggregation of solid particles are considered for perikinetic coagulation, shear-induced orthokinetic coagulation and differential sedimentation aggregation.

Numerical simulations of gas-particle flows with combustion Article (PDF Available) in Flow Turbulence and Combustion 76(4) January with Reads How we measure 'reads'.

Abstract. The parameters relating to the interaction of particles and gas in a dispersed-phase flow are presented in this chapter. These parameters are essential to the development of numerical and analytic submodels of pulverized-coal by:.

Genre/Form: Electronic books: Additional Physical Format: Print version: Rudinger, George. Fundamentals of gas-particle flow. Amsterdam ; New York: Elsevier.Suitable for a first-year graduate (5 th year) course as well as a reference for engineers and scientists, the book is clearly written and provides an essential presentation of key topics in the study of gas-particle and gas-droplet flows.

This item is Non-Returnable.To this end, we develop two data‐driven ML strategies (i.e., artificial neural networks and eXtreme gradient boosting) to accurately predict filtered subgrid drag corrections using big data from highly resolved simulations of gas‐particle : Li‐Tao Zhu, Jia‐Xun Tang, Zheng‐Hong Luo.