9783319272894-3319272896-Radiative Heat Transfer in Turbulent Combustion Systems: Theory and Applications (SpringerBriefs in Thermal Engineering and Applied Science)

Radiative Heat Transfer in Turbulent Combustion Systems: Theory and Applications (SpringerBriefs in Thermal Engineering and Applied Science)

ISBN-13: 9783319272894
ISBN-10: 3319272896
Edition: 1st ed. 2016
Author: Daniel C. Haworth, Michael F. F. Modest
Publication date: 2016
Publisher: Springer
Format: Paperback 167 pages
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ISBN-13: 9783319272894
ISBN-10: 3319272896
Edition: 1st ed. 2016
Author: Daniel C. Haworth, Michael F. F. Modest
Publication date: 2016
Publisher: Springer
Format: Paperback 167 pages

Summary

Radiative Heat Transfer in Turbulent Combustion Systems: Theory and Applications (SpringerBriefs in Thermal Engineering and Applied Science) (ISBN-13: 9783319272894 and ISBN-10: 3319272896), written by authors Daniel C. Haworth, Michael F. F. Modest, was published by Springer in 2016. With an overall rating of 4.1 stars, it's a notable title among other books. You can easily purchase or rent Radiative Heat Transfer in Turbulent Combustion Systems: Theory and Applications (SpringerBriefs in Thermal Engineering and Applied Science) (Paperback) from BooksRun, along with many other new and used books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

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.

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