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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Byggnadsteknik

    Arbitrary Lagrangian Eulerian and Fluid-Structure Interaction

    Numerical Simulation

    AvM'hamed Souli,David J. Benson

    Inbunden, Engelska, 2010

    1 925 kr

    Beställningsvara. Skickas inom 11-20 vardagar. Fri frakt över 249 kr.

    Beskrivning

    This book provides the fundamental basics for solving fluid structure interaction problems, and describes different algorithms and numerical methods used to solve problems where fluid and structure can be weakly or strongly coupled.These approaches are illustrated with examples arising from industrial or academic applications. Each of these approaches has its own performance and limitations. The added mass technique is described first. Following this, for general coupling problems involving large deformation of the structure, the Navier-Stokes equations need to be solved in a moving mesh using an ALE formulation. The main aspects of the fluid structure coupling are then developed. The first and by far simplest coupling method is explicit partitioned coupling. In order to preserve the flexibility and modularity that are inherent in the partitioned coupling, we also describe the implicit partitioned coupling using an iterative process. In order to reduce computational time for large-scale problems, an introduction to the Proper Orthogonal Decomposition (POD) technique applied to FSI problems is also presented. To extend the application of coupling problems, mathematical descriptions and numerical simulations of multiphase problems using level set techniques for interface tracking are presented and illustrated using specific coupling problems.Given the book's comprehensive coverage, engineers, graduate students and researchers involved in the simulation of practical fluid structure interaction problems will find this book extremely useful.

    Produktinformation

    • Utgivningsdatum:2010-01-15
    • Mått:161 x 241 x 21 mm
    • Vikt:594 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:320
    • Förlag:ISTE Ltd and John Wiley & Sons Inc
    • ISBN:9781848211315

    Utforska kategorier

    • Byggnadsteknik inom Naturvetenskap och teknik

    Mer om författaren

    Mhamed Souli is Professor of computational mechanics at Lille University in France. His research and development interests include fluid structure interaction, CFD with emphasis on multiphase flow and coupling with structures, and their applications to industrial problems. David J. Benson is Professor of Computational Mechanics in the Department of Structural Engineering at the University of California, San Diego. He is a Fellow of the American Physical Society, American Society of Mechanical Engineers, and the US Association of Computational Mechanics. He serves on the editorial board of the International Journal of Solids and Structures.

    Innehållsförteckning

    • Introduction xiMhamed SOULIChapter 1. Introduction to Arbitrary Lagrangian–Eulerian in Finite Element Methods 1David J. BENSON1.1. Introduction 11.2. Governing equations 31.3. Operator splitting 41.4. The Lagrangian step 71.5. Mesh relaxation 251.6. The Eulerian step 271.7. Future research directions 441.8. Bibliography 45Application to Dynamic Problems 51Mhamed SOULI2.1. Introduction 512.2. General ALE description of Navier–Stokes equations 542.3. Fluid–structure interaction 572.4. Numerical applications 72Chapter 2. Fluid–Structure Interaction: Application to Dynamic Problems 51Mhamed SOULI2.5. Conclusion 1042.6. Acknowledgments 1042.7. Bibliography 105Chapter 3. Implicit Partitioned Coupling in Fluid–Structure Interaction 109Michael SCHÄFER3.1. Introduction 1093.2. Computational fluid mechanics 1103.3. Computational structural mechanics 1213.4. Fluid–structure interaction algorithms 1363.5. Results and applications 1503.6. Bibliography 161Chapter 4. Avoiding Instabilities Caused by Added Mass Effects in Fluid–Structure Interaction Problems 165Sergio IDELSOHN, Facundo DEL PIN and Riccardo ROSSI4.1. Introduction 1654.2. The discretized equations to be solved in a FSI problem 1694.3. Monolithic solution of the FSI equations by pressure segregation 1744.4. Static condensation of the pressure 1764.5. Evaluation of the Laplace matrix for FSI problems 1874.6. The partitioned (or staggered) scheme 1894.7. Numerical examples 1954.8. Conclusions 2154.9. Acknowledgments 2164.10. Bibliography 216Chapter 5. Multidomain Finite Element Computations: Application to Multiphasic Problems 221Thierry COUPEZ, Hugues DIGONNET, Elie HACHEM, Patrice LAURE, Luisa SILVA, Rudy VALETTE5.1. Introduction 2215.2. Characterization of different phases 2285.3. Stabilized finite element formulations 2405.4. Multiphasic problems with fluid–air and fluid–fluid interface 2565.5. Immersion of solid bodies in fluid 2645.6. Conclusion 2815.7. Acknowledgements 2825.8. Bibliography 282List of Authors 291Index 293