Alexeev | Unified Non-Local Theory of Transport Processes | Buch | 978-0-444-63478-8 | sack.de

Buch, Englisch, 644 Seiten, Format (B × H): 216 mm x 276 mm, Gewicht: 1370 g

Alexeev

Unified Non-Local Theory of Transport Processes

Generalized Boltzmann Physical Kinetics
2. Auflage 2015
ISBN: 978-0-444-63478-8
Verlag: Elsevier Science & Technology

Generalized Boltzmann Physical Kinetics

Buch, Englisch, 644 Seiten, Format (B × H): 216 mm x 276 mm, Gewicht: 1370 g

ISBN: 978-0-444-63478-8
Verlag: Elsevier Science & Technology


Unified Non-Local Theory of Transport Processess, 2nd Edition provides a new theory of transport processes in gases, plasmas and liquids. It is shown that the well-known Boltzmann equation, which is the basis of the classical kinetic theory, is incorrect in the definite sense. Additional terms need to be added leading to a dramatic change in transport theory. The result is a strict theory of turbulence and the possibility to calculate turbulent flows from the first principles of physics.
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Zielgruppe


<p>Theoretical and applied physicists, astrophysicists, astronomers, cosmologists, engineers </p>


Autoren/Hrsg.


Weitere Infos & Material


PrefaceHistorical Introduction and the Problem FormulationChapter 1: Generalized Boltzmann EquationChapter 2: Theory of Generalized Hydrodynamic EquationsChapter 3: Quantum Non-Local HydrodynamicsChapter 4: Application of Unified Non-Local Theory to the Calculation of the Electronc and Proton Inner StructuresChapter 5: Non-Local Quantum Hydrodynamics in the Theory of Plasmoids and the Atom StructureChapter 6: Quantum Solitons in Solid MatterChapter 7: Generalized Boltzmann Physical Kinetics in Physics of PlasmaChapter 8: Physics of a Weakly Ionized GasChapter 9: Generalized Boltzmann Equation in the Theory of the Rarefied Gases and LiquidsChapter 10: Strict Theory of Turbulence and Some Applications of the Generalized Hydrodynamic TheoryChapter 11: Astrophysical ApplicationsChapter 12: The Generalized Relativistic Kinetic and Hydrodynamic TheoryAppendix 1: Perturbation Method of the Equation SolutionAppendix 2: Using of Curvilinear Coordinates in the Generalized Hydrodynamic TheoryAppendix 3: Characteristic Scales in Plasma PhysicsAppendix 4: Dispersion Relations in the Generalized Boltzmann Kinetic Thoery Neglecting the Integral Collision TermAppendix 5: Three-Diagonal Method of Gauss Elimination Techniques for the Differential Third and Second Order EquationsAppendix 6: Some Integral Calculations in the Generalized Navier - Stokes ApproximationAppendix 7: Derivation of Energy Equation ReferencesIndex


Alexeev, Boris V.
Professor Boris V. Alexeev is Head of the Centre of the Theoretical Foundations of Nanotechnology and Head of the Physics Department at the Moscow Lomonosov University of Fine Chemical Technologies, Moscow, Russia. In the 1990s he was Visiting Professor at the University of Alabama, Huntsville, AL, USA, and Visiting Professor at the University of Provence, Marseille, France. Professor Alexeev has published over 290 articles in international scientific journals and 22 books. He has received several honors and awards, and is member of six societies.


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