Produktbeschreibung A new edition of the bestseller on convection heattransfer A revised edition of the industry classic, Convection HeatTransfer, Fourth Edition, chronicles how the field of heattransfer has grown and prospered over the last two decades. Thisnew edition is more accessible, while not sacrificing its thoroughtreatment of the most up-to-date information on current researchand applications in the field.

One of the foremost leaders in the field, Adrian Bejan haspioneered and taught many of the methods and practices commonlyused in the industry today. He continues this book's long-standingrole as an inspiring, optimal study tool by providing: * Coverage of how convection affects performance, and howconvective flows can be configured so that performance isenhanced * How convective configurations have been evolving, from the flatplates, smooth pipes, and single-dimension fins of the earliereditions to new populations of configurations: tapered ducts,plates with multiscale features, dendritic fins, duct and plateassemblies (packages) for heat transfer density and compactness,etc. * New, updated, and enhanced examples and problems that reflectthe author's research and advances in the field since the lastedition * A solutions manual Complete with hundreds of informative and originalillustrations, Convection Heat Transfer, Fourth Edition isthe most comprehensive and approachable text for students inschools of mechanical engineering.
A new edition of the bestseller on convection heat transfer. One of the foremost leaders in the field, Adrian Bejan has pioneered and taught many of the methods and practices commonly used in the industry today. He continues this book's long-standing role as an inspiring, optimal study tool by providing: Coverage of how convection affects. In this so-called natural convection regime, since the nanopillars are much smaller than the thermal boundary layer thickness, their presence causes negligible effect to the heat flux, which is dictated by the convective fluid flow outside of the thermal boundary layer.
ADRIAN BEJAN, PhD, is the J. Jones Professor ofMechanical Engineering at Duke University. An internationallyrecognized authority on heat transfer and thermodynamics, Bejan haspioneered the methods of entropy generation minimization, scaleanalysis, heatlines and masslines, intersection of asymptotes,dendritic architectures, and the constructal law of design innature.
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He is the recipient of numerous awards, including the MaxJakob Memorial Award (ASME & AICHE), the Worcester Reed WarnerMedal (ASME), and the Ralph Coats Roe Award (ASEE). He is theauthor of twenty-five books and 550 journal articles, and is listedamong the 100 most-cited engineering researchers (all disciplines,all countries). He has been awarded sixteen honorary doctorates byuniversities in eleven foreign countries.