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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Maskinteknik och material

    Heat Transfer 4

    Convection, Two-Phase Flows and Special Problems

    AvMichel Ledoux,Abdelkhalak El Hami

    Inbunden, Engelska, 2022

    1 720 kr

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

    Beskrivning

    Heat is a branch of thermodynamics that occupies a unique position due to its involvement in the field of practice. Being linked to the management, transport and exchange of energy in thermal form, it impacts all aspects of human life and activity.Heat transfers are, by nature, classified as conduction, convection (which inserts conduction into fluid mechanics) and radiation. The importance of these three transfer methods has resulted – justifiably – in a separate volume being afforded to each of them, with the subject of convection split into two volumes. This fourth volume is dedicated to convection, more specifically, the problem of particular convective transfers. Twophase convection is considered and a more recent and much lesser-known field is presented, that of phase change transfer. Particular significance is given to numerical applications, allowing the reader to handle orders of magnitude, an important point in all physics.Heat Transfer 4 combines a basic approach with a deeper understanding of the discipline and will therefore appeal to a wide audience, from technician to engineer, from doctoral student to teacher-researcher.

    Produktinformation

    • Utgivningsdatum:2022-12-20
    • Mått:161 x 240 x 15 mm
    • Vikt:857 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:192
    • Förlag:ISTE Ltd and John Wiley & Sons Inc
    • ISBN:9781786308795

    Utforska kategorier

    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Michel Ledoux was Professor and Vice-President at the University of Rouen, France. He was also Director of the UMR CNRS CORIA, then Regional Delegate for Research and Technology in Upper Normandy, France. Specializing in fluid mechanics and transfers, he has worked in the fields of reactive boundary layers and spraying. Currently retired, he is an adviser to the Conservatoire National des Arts et Métiers in Normandy, collaborating with the Institute of Industrial Engineering Techniques (ITII) in Vernon, France.Abdelkhalak El Hami is Full Professor of Universities at INSA-RouenNormandie, France. He is the author/co-author of several books and is responsible for several European pedagogical projects. He is a specialist in fluid structure interaction and problems of optimization and reliability in multi physical systems.

    Innehållsförteckning

    • Preface ixIntroduction xiList of Notations xixChapter 1 Concepts of Gas–Liquid Flows 11.1 Introduction and basic concepts 11.2 Gas–liquid flows 21.2.1 The physics of two-phase flows 31.2.2 Classification of flows 161.2.3 Topologies of a heated vertical flow 231.2.4 Calculation of fluxes 271.3 Dispersed phase flows: mists and sprays 351.3.1 Mist 351.3.2 Spray generation 371.3.3 Spray characterization: particle sizing 381.3.4 Spray vaporization: the case of the isolated drop 421.4 Several examples 43Chapter 2 Convection of Species 632.1 Introduction 632.2 Characterization of a mixture: definitions 632.3 Law of diffusive transfer: Fick’s law 642.4 Similarity of transport equations 662.5 Solving the equations of diffusive transport 692.5.1 Analogies 692.5.2 Non-reactive boundary layer: concentration fixed at the wall 712.5.3 Non-reactive boundary layer: wall catalysis 732.5.4 Reactive boundary layer 79Chapter 3 Phase Change Materials 813.1 Introduction 813.2 PCM for cooling mechatronics devices 843.2.1 Description of heat transfer and PCM behavior 853.2.2 PCM behavior 873.3 Numerical model 883.3.1 Description of the 3D model 883.3.2 Heat sink without PCMs 903.3.3 Heat sink with PCMs 913.4 Conclusion 95Chapter 4 Electro-Thermo-Mechanical Modeling of Systems 974.1 Introduction 974.2 Theory of electro-thermo-mechanical coupling 984.2.1 Electro-thermal phenomena 984.2.2 Numerical formulation of the electro-thermo-mechanical coupling 1004.3 Finite element simulation of the electro-thermo-mechanical behavior 1034.3.1 Strong coupling of the electro-thermo-mechanical modeling 1044.3.2 Weak coupling of the electro-thermo-mechanical modeling 1054.4 Example of electro-thermo-mechanical simulation of an HBT transistor 1054.4.1 Global model of HPA 1064.4.2 Local model of an HBT transistor 1104.5 Modal analysis of mechatronic components 1134.5.1 Writing the equation of the vibration problem 1134.5.2 Variational formulation 1154.5.3 Finite element approximation 1154.5.4 Resolution in the frequency domain 1174.6 Stochastic modal analysis of mechatronics components 1184.7. Numerical identification of the elastic parameters of electronic components 1194.8 Example of modeling and simulation of the vibratory behavior of mechatronic components 1204.9 Conclusion 127Appendices 129Appendix 1 Physical Properties of Common Fluids 131Appendix 2 Physical Properties of Common Solids 133Appendix 3 Thermodynamic Properties of Water Vapor 137Appendix 4 Table of Functions: erf (x) erfc(x) and ierfc(x) 141References 143Index 151