Kinetic Theory of Granular Gases
Seiten
2004
Oxford University Press (Verlag)
978-0-19-853038-1 (ISBN)
Oxford University Press (Verlag)
978-0-19-853038-1 (ISBN)
Provides an introduction to the theory of dissipative gas dynamics. This book lays emphasis on a microscopically consistent description of pairwise particle collisions, that leads to an impact-velocity-dependent coefficient of restitution. It is aimed at readers from the advanced undergraduate level upwards.
"Kinetic Theory of Granular Gases" provides an introduction to the rapidly developing theory of dissipative gas dynamics - a theory which has mainly evolved over the last decade. The book is aimed at readers from the advanced undergraduate level upwards and leads on to the present state of research. Throughout, special emphasis is put on a microscopically consistent description of pairwise particle collisions which leads to an impact-velocity-dependent coefficient of restitution. The description of the many-particle system, based on the Boltzmann equation, starts with the derivation of the velocity distribution function, followed by the investigation of self-diffusion and Brownian motion. Using hydrodynamical methods, transport processes and self-organized structure formation are studied. An appendix gives a brief introduction to event-driven molecular dynamics. A second appendix describes a novel mathematical technique for derivation of kinetic properties, which allows for the application of computer algebra. The text is self-contained, requiring no mathematical or physical knowledge beyond that of standard physics undergraduate level. The material is adequate for a one-semester course and contains chapter summaries as well as exercises with detailed solutions. The molecular dynamics and computer-algebra programs can be downloaded from a companion web page.
"Kinetic Theory of Granular Gases" provides an introduction to the rapidly developing theory of dissipative gas dynamics - a theory which has mainly evolved over the last decade. The book is aimed at readers from the advanced undergraduate level upwards and leads on to the present state of research. Throughout, special emphasis is put on a microscopically consistent description of pairwise particle collisions which leads to an impact-velocity-dependent coefficient of restitution. The description of the many-particle system, based on the Boltzmann equation, starts with the derivation of the velocity distribution function, followed by the investigation of self-diffusion and Brownian motion. Using hydrodynamical methods, transport processes and self-organized structure formation are studied. An appendix gives a brief introduction to event-driven molecular dynamics. A second appendix describes a novel mathematical technique for derivation of kinetic properties, which allows for the application of computer algebra. The text is self-contained, requiring no mathematical or physical knowledge beyond that of standard physics undergraduate level. The material is adequate for a one-semester course and contains chapter summaries as well as exercises with detailed solutions. The molecular dynamics and computer-algebra programs can be downloaded from a companion web page.
Dr Nikolai V. Brilliantov, Department of Physics, Moscow State University, nbrillia@yahoo.com, nbrillia@polly.phys.msu.su Professor Thorsten Poeschel, Institute for Biochemistry, Humboldt University, Berlin, thorsten.poeschel@charite.de
I MECHANICS OF PARTICLE COLLISIONS; II GRANULAR GASES - VELOCITY DISTRIBUTION FUNCTION; III SINGLE-PARTICLE TRANSPORT, SELF-DIFFUSION AND BROWNIAN MOTION; IV TRANSPORT PROCESSES AND KINETIC COEFFICIENTS; V STRUCTURE FORMATION
Erscheint lt. Verlag | 1.8.2004 |
---|---|
Reihe/Serie | Oxford Graduate Texts |
Zusatzinfo | 6 halftones, numerous line drawings |
Verlagsort | Oxford |
Sprache | englisch |
Maße | 162 x 242 mm |
Gewicht | 718 g |
Themenwelt | Naturwissenschaften ► Chemie ► Physikalische Chemie |
Naturwissenschaften ► Physik / Astronomie ► Angewandte Physik | |
Naturwissenschaften ► Physik / Astronomie ► Thermodynamik | |
Technik ► Umwelttechnik / Biotechnologie | |
ISBN-10 | 0-19-853038-2 / 0198530382 |
ISBN-13 | 978-0-19-853038-1 / 9780198530381 |
Zustand | Neuware |
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