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E-book
Author Modest, M. F. (Michael F.), author.

Title Radiative heat transfer in turbulent combustion systems : theory and applications / Michael F Modest, Daniel C. Haworth
Published Cham : Springer, 2016

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Description 1 online resource (xvi, 151 pages) : illustrations (some color)
Series SpringerBriefs in applied sciences and technology, 2191-530X
SpringerBriefs in applied sciences and technology.
Contents Introduction -- Chemically Reacting Turbulent Flows -- Radiation Properties, RTE Solvers, and TRI Models -- Radiation Effects in Laminar Flames -- Turbulence/Chemistry/Radiation Interactions in Atmospheric Pressure Turbulent Flames -- High-Pressure Combustion Systems -- Summary, Conclusions and Future Prospects
Summary This introduction reviews why combustion and radiation are important, as well as the technical challenges posed by radiation. Emphasis is on interactions among turbulence, chemistry and radiation (turbulence-chemistry-radiation interactions - TCRI) in Reynolds-averaged and large-eddy simulations. Subsequent chapters cover: chemically reacting turbulent flows; radiation properties, Reynolds transport equation (RTE) solution methods, and TCRI; radiation effects in laminar flames; TCRI in turbulent flames; and high-pressure combustion systems. This Brief presents integrated approach that includes radiation at the outset, rather than as an afterthought. It stands as the most recent developments in physical modeling, numerical algorithms, and applications collected in one monograph
Bibliography Includes bibliographical references
Notes English
Online resource; title from PDF title page (SpringerLink, viewed January 14, 2016)
Subject Heat -- Radiation and absorption.
Mechanics of fluids.
Energy technology & engineering.
Engineering thermodynamics.
SCIENCE -- Mechanics -- Thermodynamics.
Heat -- Radiation and absorption
Form Electronic book
Author Haworth, Daniel Connell, 1957- author.
ISBN 9783319272917
3319272918