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Radiative Heat Transfer, Fourth Edition is a fully updated, revised
and practical reference on the basic physics and computational
tools scientists and researchers use to solve problems in the broad
field of radiative heat transfer. This book is acknowledged as the
core reference in the field, providing models, methodologies and
calculations essential to solving research problems. It is
applicable to a variety of industries, including nuclear, solar and
combustion energy, aerospace, chemical and materials processing, as
well as environmental, biomedical and nanotechnology fields.
Contemporary examples and problems surrounding sustainable energy,
materials and process engineering are an essential addition to this
edition.
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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