Modeling and computational methods for kinetic equations

著者

    • Degond, Pierre
    • Pareschi, Lorenzo
    • Russo, Giovanni

書誌事項

Modeling and computational methods for kinetic equations

Pierre Degond, Lorenzo Pareschi, Giovanni Russo, editors

(Modeling and simulation in science, engineering & technology)

Birkhäuser, c2004

  • [us]

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注記

Includes bibliographical references and index

内容説明・目次

内容説明

In recent years kinetic theory has developed in many areas of the physical sciences and engineering, and has extended the borders of its traditional fields of application. This monograph is a self-contained presentation of such recently developed aspects of kinetic theory, as well as a comprehensive account of the fundamentals of the theory. Emphasizing modeling techniques and numerical methods, the book provides a unified treatment of kinetic equations not found in more focused works. Specific applications presented include plasma kinetic models, traffic flow models, granular media models, and coagulation-fragmentation problems. The work may be used for self-study, as a reference text, or in graduate-level courses in kinetic theory and its applications.

目次

Preface Part I: Rarefied Gases Macroscopic Limits of the Boltzmann Equation: A Review Moment Equations for Charged Particles: Global Existence Results Monte-Carlo Methods for the Boltzmann Equation Accurate Numerical Methods for the Boltzmann Equation Finite-Difference Methods for the Boltzmann Equation for Binary Gas Mixtures Part II: Applications Plasma Kinetic Models: The Fokker-Planck-Landau Equation On Multipole Approximations of the Fokker-Planck-Landau Operator Traffic Flow: Models and Numerics Modelling and Numerical Methods for Granular Gases Quantum Kinetic Theory: Modelling and Numerics for Bose--Einstein Condensation On Coalescence Equations and Related Models

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