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  • 1
    Online Resource
    Online Resource
    Berlin ;Boston :De Gruyter,
    UID:
    edocfu_9958353928602883
    Format: 1 online resource (439p.)
    ISBN: 9783110270419
    Series Statement: De Gruyter Studies in Mathematical Physics ; 7
    Content: Gas discharges are of interest for many processes in mechanics, manufacturing, materials science and aerophysics. To understand the physics behind the phenomena is of key importance for the effective use and development of gas discharge devices. This work treats methods of computational modeling of electrodischarge processes and dynamics of partially ionized gases. These methods are necessary to tackle problems of physical mechanics, physics of gas discharges and aerophysics. Particular attention is given to a solution of two-dimensional problems of physical mechanics of glow discharges. The use of glow discharges in aerospace technology is discussed as well.
    Note: Frontmatter -- , Preface -- , Contents -- , Part I. Elements of the theory of numerical modeling of gas-discharge phenomena -- , Chapter 1. Models of gas-discharge physical mechanics -- , Chapter 2. Application of numerical simulation models for the investigation of laser supported waves -- , Chapter 3. Computational models of magnetohydrodynamic processes -- , Part II. Numerical simulation models of glow discharge -- , Chapter 4. The physical mechanics of direct current glow discharge -- , Chapter 5. Drift-diffusion model of glow discharge in an external magnetic field -- , Part III. Ambipolar models of direct current discharges -- , Chapter 6. Quasi-neutral model of gas discharge in an external magnetic field and in gas flow -- , Chapter 7. Viscous interaction on a flat plate with surface discharge in a magnetic field -- , Chapter 8. Hypersonic flow of rarefied gas in a channel with glow discharge in an external magnetic field -- , Chapter 9. Hypersonic flow of rarefied gas in a curvilinear channel with glow discharge -- , Appendix -- , Bibliography -- , Index , In English.
    Additional Edition: ISBN 978-3-11-027033-4
    Language: English
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