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Genre | : Science |
Author | : C. Cercignani |
Publisher | : Springer |
Release | : 2006-11-14 |
File | : 250 Pages |
ISBN-13 | : 9783540387770 |
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Genre | : Science |
Author | : C. Cercignani |
Publisher | : Springer |
Release | : 2006-11-14 |
File | : 250 Pages |
ISBN-13 | : 9783540387770 |
This is a collection of four lectures on some mathematical aspects related to the nonlinear Boltzmann equation. The following topics are dealt with: derivation of kinetic equations, qualitative analysis of the initial value problem, singular perturbation analysis towards the hydrodynamic limit and computational methods towards the solution of problems in fluid dynamics.
Genre | : Science |
Author | : N. Bellomo |
Publisher | : World Scientific |
Release | : 1995 |
File | : 276 Pages |
ISBN-13 | : 9810221665 |
Genre | : Nuclear energy |
Author | : |
Publisher | : |
Release | : 1973 |
File | : 1132 Pages |
ISBN-13 | : UOM:39015026176118 |
This unique professional volume is about the recent advances in the lattice Boltzmann method (LBM). It introduces a new methodology, namely the simplified and highly stable lattice Boltzmann method (SHSLBM), for constructing numerical schemes within the lattice Boltzmann framework. Through rigorous mathematical derivations and abundant numerical validations, the SHSLBM is found to outperform the conventional LBM in terms of memory cost, boundary treatment and numerical stability.This must-have title provides every necessary detail of the SHSLBM and sample codes for implementation. It is a useful handbook for scholars, researchers, professionals and students who are keen to learn, employ and further develop this novel numerical method.
Genre | : Science |
Author | : Zhen Chen |
Publisher | : World Scientific |
Release | : 2020-09-15 |
File | : 275 Pages |
ISBN-13 | : 9789811228513 |
Flowing matter is all around us, from daily-life vital processes (breathing, blood circulation), to industrial, environmental, biological, and medical sciences. Complex states of flowing matter are equally present in fundamental physical processes, far remote from our direct senses, such as quantum-relativistic matter under ultra-high temperature conditions (quark-gluon plasmas). Capturing the complexities of such states of matter stands as one of the most prominent challenges of modern science, with multiple ramifications to physics, biology, mathematics, and computer science. As a result, mathematical and computational techniques capable of providing a quantitative account of the way that such complex states of flowing matter behave in space and time are becoming increasingly important. This book provides a unique description of a major technique, the Lattice Boltzmann method to accomplish this task. The Lattice Boltzmann method has gained a prominent role as an efficient computational tool for the numerical simulation of a wide variety of complex states of flowing matter across a broad range of scales; from fully-developed turbulence, to multiphase micro-flows, all the way down to nano-biofluidics and lately, even quantum-relativistic sub-nuclear fluids. After providing a self-contained introduction to the kinetic theory of fluids and a thorough account of its transcription to the lattice framework, this text provides a survey of the major developments which have led to the impressive growth of the Lattice Boltzmann across most walks of fluid dynamics and its interfaces with allied disciplines. Included are recent developments of Lattice Boltzmann methods for non-ideal fluids, micro- and nanofluidic flows with suspended bodies of assorted nature and extensions to strong non-equilibrium flows beyond the realm of continuum fluid mechanics. In the final part, it presents the extension of the Lattice Boltzmann method to quantum and relativistic matter, in an attempt to match the major surge of interest spurred by recent developments in the area of strongly interacting holographic fluids, such as electron flows in graphene.
Genre | : Technology & Engineering |
Author | : Sauro Succi |
Publisher | : Oxford University Press |
Release | : 2018-04-13 |
File | : 784 Pages |
ISBN-13 | : 9780192538857 |
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 damping in plasma
Genre | : Mathematics |
Author | : Boris V. Alexeev |
Publisher | : Elsevier |
Release | : 2004-05-25 |
File | : 377 Pages |
ISBN-13 | : 9780080478012 |
Certain forms of the Boltzmann equation, have emerged, which relinquish most mathematical complexities of the true Boltzmann equation. This text provides a detailed survey of Lattice Boltzmann equation theory and its major applications.
Genre | : Mathematics |
Author | : S. Succi |
Publisher | : Oxford University Press |
Release | : 2001-06-28 |
File | : 308 Pages |
ISBN-13 | : 0198503989 |
The aim of this book is to present the theory and applications of the relativistic Boltzmann equation in a self-contained manner, even for those readers who have no familiarity with special and general relativity. Though an attempt is made to present the basic concepts in a complete fashion, the style of presentation is chosen to be appealing to readers who want to understand how kinetic theory is used for explicit calculations. The book will be helpful not only as a textbook for an advanced course on relativistic kinetic theory but also as a reference for physicists, astrophysicists and applied mathematicians who are interested in the theory and applications of the relativistic Boltzmann equation.
Genre | : Science |
Author | : Carlo Cercignani |
Publisher | : Birkhäuser |
Release | : 2012-12-06 |
File | : 391 Pages |
ISBN-13 | : 9783034881654 |
This introductory graduate-level text emphasizes physical aspects of the theory of Boltzmann's equation in a detailed presentation that doubles as a practical resource for professionals. 1971 edition.
Genre | : Science |
Author | : Stewart Harris |
Publisher | : Courier Corporation |
Release | : 2012-12-27 |
File | : 242 Pages |
ISBN-13 | : 9780486143828 |
This book covers classical kinetic theory of gases, presenting basic principles in a self-contained framework and from a more rigorous approach based on the Boltzmann equation. Uses methods in kinetic theory for determining the transport coefficients of gases.
Genre | : Technology & Engineering |
Author | : Gilberto M. Kremer |
Publisher | : Springer Science & Business Media |
Release | : 2010-08-18 |
File | : 313 Pages |
ISBN-13 | : 9783642116964 |