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    Handbook of Numerical Heat Transfer

    AvW. J. Minkowycz,E. M. Sparrow

    Inbunden, Engelska, 2006

    3 048 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

    Beskrivning

    A completely updated edition of the acclaimed single-volume reference for heat transfer and the thermal sciences This Second Edition of Handbook of Numerical Heat Transfer covers the basic equations for numerical method calculations regarding heat transfer problems and applies these to problems encountered in aerospace, nuclear power, chemical processes, electronic packaging, and other related areas of mechanical engineering. As with the first edition, this complete revision presents comprehensive but accessible coverage of the necessary formulations, numerical schemes, and innovative solution techniques for solving problems of heat and mass transfer and related fluid flows. Featuring contributions from some of the most prominent authorities in the field, articles are grouped by major sets of methods and functions, with the text describing new and improved, as well as standard, procedures. Handbook of Numerical Heat Transfer, Second Edition includes:* Updated coverage of parabolic systems, hyperbolic systems, integral-and integro-differential systems, Monte Carlo and perturbation methods, and inverse problems* Usable computer programs that allow quick applications to aerospace, chemical, nuclear, and electronic packaging industries* User-friendly nomenclature listings include all the symbols used in each chapter so that chapter-specific symbols are readily available

    Produktinformation

    • Utgivningsdatum:2006-04-21
    • Mått:197 x 239 x 53 mm
    • Vikt:1 826 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:992
    • Upplaga:2
    • Förlag:John Wiley & Sons Inc
    • ISBN:9780471348788

    Utforska kategorier

    • Teknik: allmänt inom Naturvetenskap och teknik
    • Beräkning och matematisk analys inom Naturvetenskap och teknik
    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    W. J. MINKOWYCZ is Professor of Mechanical Engineering at the University of Illinois at Chicago. He is Editor of Numerical Heat Transfer, International Journal of Heat and Mass Transfer, International Communication in Heat and Mass Transfer, and the Series in Computational and Physical Processes in Mechanics and Thermal Sciences. Professor Minkowycz has won numerous awards for excellence in teaching including the 1988 ASEE Ralph Coats Roe Award, and in 1993, he was recipient of the ASME Heat Transfer Memorial Award. E. M. SPARROW is in the Mechanical Engineering Department of the University of Minnesota, where he has taught and researched since 1959. Professor Sparrow is a Max Jakob awardee, a member of the National Academy of Engineering, and holds the ranks of Morse Alumni Distinguished Teaching Professor and Institute Professor.J. Y. MURTHY is currently Professor of Mechanical Engineering at Purdue University and has worked in both academia and industry in the area of computational fluid dynamics and heat transfer. Her particular interests lie in the development of general purpose, unstructured solution-adaptive mesh methods for problems of industrial relevance, and more recently, in the numerical simulation of sub-micron thermal transport. Professor Murthy serves on the editorial advisory board of Numerical Heat Transfer, and is an active member of the ASME.

    Innehållsförteckning

    • Preface ixList of Contributors xiPart One: Fundamentals 11 Survey of Numerical Methods 3J. Y. Murthy,W. J. Minkowycz, E. M. Sparrow, and S. R. Mathur2 Finite-Difference Method 53Richard H. Pletcher3 Finite-Element Method 91Juan C. Heinrich4 Boundary-Element Method 125A. J. Kassab, L. C. Wrobel, R. A. Bialecki, and E. A. Divo5 Large Eddy Simulation of Heat and Mass Transport In Turbulent Flows 167Cyrus K. Madnia, Farhad A. Jaberi, and Peyman Givi6 Control-Volume-Based Finite-Difference and Finite-Element Methods 191B. R. Baliga and N. Atabaki7 Meshless Methods 225D. W. Pepper8 Monte Carlo Methods 249A. Haji-Sheikh and J. R. Howell9 Discrete-Ordinates and Finite-Volume Methods For Radiative Heat Transfer 297J. C. Chai and S. V. Patankar10 Pressure-Based Algorithms For Single-Fluid and Multifluid Flows 325F. Moukalled and M. Darwish11 Numerical Modeling of Heat Transfer In Wall-Adjacent Turbulent Flows 369T. J. Craft, S. E. Gant, A. V. Gerasimov, H. Iacovides, and B. E. Launder12 A Critical Synthesis of Pertinent Models For Turbulent Transport Through Porous Media 389K. Vafai, A. Bejan, W. J. Minkowycz, and K. Khanafer13 Verification and Validation of Computational Heat Transfer 417Dominique Pelletier and Patrick J. Roache14 Sensitivity Analysis and Uncertainty Propagation of Computational Models 443B. F. Blackwell and K. J. Dowding15 Computational Geometry, Grid Generation, and Adaptive Grids 471Graham F. Carey16 Hybrid Methods and Symbolic Computations 493Renato M. Cotta and Mikhail D. MikhailovPart Two: Applications 52317 Inverse Problems In Heat Transfer 525Nicholas Zabaras18 Moving-Boundary Problems 559Wei Shyy19 Numerical Methods For Phase-Change Problems 593V. R. Voller20 Computational Techniques For Microscale Heat Transfer 623Da Yu ‘‘Robert’’ Tzou21 Molecular Dynamics Method For Micro/Nano Systems 659Shigeo Maruyama22 Eulerian-Lagrangian Simulations of Particle/Droplet-Laden Turbulent Flows 697F. Mashayek and W. J. Minkowycz23 Numerical Modeling of Manufacturing Processes 729Yogesh Jaluria24 Computational Methods In Materials Processing 785R. Pitchumani25 Thermal Modeling of Technology Infrastructure Facilities: A Case Study of Data Centers 821J. Rambo and Y. Joshi26 Numerical Bioheat Transfer 851B. Rubinsky27 High-Performance Computing For Fluid Flow and Heat Transfer 895D. W. Pepper and J. M. Lombardo28 Overview of Numerical Methods and Recommendations 921S. R. Mathur,W. J. Minkowycz, E. M. Sparrow, and J. Y. MurthyIndex 946