Generalized Boltzmann Physical Kinetics

Author: Alexeev   Boris V.  

Publisher: Elsevier Science‎

Publication year: 2004

E-ISBN: 9780080478012

P-ISBN(Paperback): 9780444515827

P-ISBN(Hardback):  9780444515827

Subject: O35 hydrodynamics

Language: ENG

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Description

The most important result obtained by Prof. B. Alexeev and reflected in the book is connected with new theory of transport processes in gases, plasma and liquids. It was shown by Prof. B. Alexeev that well-known Boltzmann equation, which is the basement of the classical kinetic theory, is wrong in the definite sense. Namely in the Boltzmann equation should be introduced the additional terms which generally speaking are of the same order of value as classical ones. It leads to dramatic changing in transport theory. The coincidence of experimental and theoretical data became much better. Particularly it leads to the strict theory of turbulence and possibility to calculate the turbulent flows from the first principles of physics.

· Boltzmann equation (BE) is valid only for particles, which can be considered as material points, generalized Boltzmann equation (GBE) removes this restriction.
· GBE contains additional terms in comparison with BE, which cannot be omitted
· GBE leads to strict theory of turbulence
· GBE gives all micro-scale turbulent fluctuations in tabulated closed analytical form for all flows
· GBE leads to generalization of electro-dynamic Maxwell equations
· GBE gives new generalized hydrodynamic equations (GHE) more effective than classic Navier-Stokes equations
· GBE can be applied for description of flows for intermediate diapason of Knudsen numbers
· Asymptotical solutions of GBE remove contradictions in the theory of Landau dam

Chapter

Front Cover

pp.:  1 – 4

Copyright Page

pp.:  5 – 6

Contents

pp.:  6 – 8

Preface

pp.:  8 – 10

Chapter 1. Generalized Boltzmann Equation

pp.:  30 – 100

Chapter 2. Theory of Generalized Hydrodynamic Equations

pp.:  100 – 142

Chapter 3. Strict Theory of Turbulence and Some Applications of the Generalized Hydrodynamic Theory

pp.:  142 – 170

Chapter 4. Physics of a Weakly Ionized Gas

pp.:  170 – 196

Chapter 5. Kinetic Coefficients in the Theory of the Generalized Kinetic Equations

pp.:  196 – 224

Chapter 6. Some Applications of the Generalized Boltzmann Physical Kinetics

pp.:  224 – 250

Chapter 7. Numerical Simulation of Vortex Gas Flow Using the Generalized Euler Equations

pp.:  250 – 296

Chapter 8. Generalized Boltzmann Physical Kinetics in Physics of Plasma and Liquids

pp.:  296 – 348

Appendices

pp.:  348 – 370

References

pp.:  370 – 376

Subject Index

pp.:  376 – 378

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