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    Fluid Mechanics and the SPH Method: Theory and Applications

    Fluid Mechanics and the SPH Method by Violeau, Damien;

    Theory and Applications

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      • Publisher's listprice GBP 82.00
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    Product details:

    • Publisher OUP Oxford
    • Date of Publication 16 July 2015

    • ISBN 9780198744238
    • Binding Paperback
    • No. of pages612 pages
    • Size 246x189x32 mm
    • Weight 1170 g
    • Language English
    • Illustrations 111 b/w illustrations
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    Short description:

    This book presents the SPH method for fluid modelling from a theoretical and applied viewpoint. It explains the foundations of the method, from physical principles, and will help researchers, students, and engineers to understand how the method should be used and why it works well.

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    Long description:

    This book presents the SPH method (Smoothed-Particle Hydrodynamics) for fluid modelling from a theoretical and applied viewpoint. It comprises two parts that refer to each other. The first one, dealing with the fundamentals of Hydraulics, is based on the elementary principles of Lagrangian and Hamiltonian Mechanics. The specific laws governing a system of macroscopic particles are built, before large systems involving dissipative processes are explained. The continua are discussed,

    "This is an unconventional, deep and broad-ranging treatment of mathematical fluid mechanics, leading to the development of SPH for complex engineering applications involving turbulent free-surface flow. The book is built on careful development of theory from Lagrangian, statistical and variational principles, underpinned by strong physical reasoning. For graduate students in engineering and physics, particularly those with an interest in SPH, this will be a valuable reference, and there are fresh insights for the most expert reader."

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    Table of Contents:

    Part I: Physics of weakly compressible fluids
    Lagrangian and Hamiltonian mechanics
    Statistical Mechanics
    Continuous media and viscous fluids
    Turbulent flows
    Part II: The SPH method in hydraulics
    Principles of the SPH method
    Advanced hydraulics with SPH
    SPH method validation
    SPH applied to hydraulic works
    Appendix A: Tensorial formalism
    Appendix B: Fourier transform

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