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E-raamat: Computational Physics of Electric Discharges in Gas Flows

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Surzhikov (mechanics, Russian Academy of Sciences, Moscow) examines the numerical modeling of gas-discharge phenomena in gas flows. Referring readers elsewhere for the physical and chemical kinetics of the gas-discharge plasma, he limits the discussion to the physical mechanics processes and so is able to treat problems of electrodynamics and physical mechanics of discharges together. Interest in studying electro-discharge effects in subsonic, supersonic, and particularly hypersonic gas flows has arisen over the past decade, he says, because of attempts to develop hypersonic flying vehicles. He covers elements of the theory of numerical modeling of gas-discharge phenomena, numerical simulation models of glow discharge, and ambipolar models of direct current discharges. Annotation ©2013 Book News, Inc., Portland, OR (booknews.com)
Preface PART I INTRODUCTION IN THE THEORY OF GAS DISCHARGES NUMERICAL MODELING1 Models of gas discharges physical mechanics2 About singularities of a statement of the MHD-equations for construction of spatial computing models3 The physical mechanics of glow discharge PART II APPLICATION OF NUMERICAL MODELS TO RESEARCH OF PHYSICAL MECHANICS OF GLOW DISCHARGE4 Numerical modelling of two-dimensional structure of glow discharge5 Diffusion-drift model of glow discharge in a magnetic field6 Glow discharge in cross magnetic field in view neutral gas and In the magnetic field7 Glow discharge in the cross flow of neutral gas and in the magnetic field8 Computing model of glow discharge in electronegative gas9 Numerical modelling of glow discharge between electrodes arranged on the same surface10 Quasi-neutral model of gas discharge in a strong magnetic field and in a gas flow11 Viscous interaction on flat plate with surface discharge In a magnetic field12 Self-consistent computing model of electrical thermogas-dynamics processes in subsonic flows13 Supersonic flow round of naCa-0012 Aerodynamic profile whith surface glow discharge AppendixFundamental constantsRatios between units of electricity and magnetismReferencesSubject index
Sergey T. Surzhikov, Institute for Problems in Mechanics, Russian Academy of Sciences, Moscow, Russia.