From Kinetic Models To Hydrodynamics Some Novel Results - Info and Reading Options
By Matteo Colangeli

"From Kinetic Models To Hydrodynamics Some Novel Results" was published by Springer-Verlag New York Inc. in 2013 and it has 106 pages.
“From Kinetic Models To Hydrodynamics Some Novel Results” Metadata:
- Title: ➤ From Kinetic Models To Hydrodynamics Some Novel Results
- Author: Matteo Colangeli
- Number of Pages: 106
- Publisher: Springer-Verlag New York Inc.
- Publish Date: 2013
“From Kinetic Models To Hydrodynamics Some Novel Results” Subjects and Themes:
- Subjects: ➤ Hydrodynamics - Dynamics - Invariant manifolds - Molecular theory - Statistical mechanics - Mathematical physics - Mathematics - Mathematical Methods in Physics - Mathematical Applications in the Physical Sciences - Mathematical and Computational Physics Theoretical - Mathematical Modeling and Industrial Mathematics - Dynamical Systems and Complexity Statistical Physics
Edition Identifiers:
- The Open Library ID: OL26184673M - OL17581519W
- Library of Congress Control Number (LCCN): 2013931839
- ISBN-13: 9781461463054
- All ISBNs: 9781461463054
AI-generated Review of “From Kinetic Models To Hydrodynamics Some Novel Results”:
"From Kinetic Models To Hydrodynamics Some Novel Results" Description:
The Open Library:
From Kinetic Models to Hydrodynamics serves as an introduction to the asymptotic methods necessary to obtain hydrodynamic equations from a fundamental description using kinetic theory models and the Boltzmann equation. The work is a survey of an active research area, which aims to bridge time and length scales from the particle-like description inherent in Boltzmann equation theory to a fully established “continuum” approach typical of macroscopic laws of physics.The author sheds light on a new method—using invariant manifolds—which addresses a functional equation for the nonequilibrium single-particle distribution function. This method allows one to find exact and thermodynamically consistent expressions for: hydrodynamic modes; transport coefficient expressions for hydrodynamic modes; and transport coefficients of a fluid beyond the traditional hydrodynamic limit. The invariant manifold method paves the way to establish a needed bridge between Boltzmann equation theory and a particle-based theory of hydrodynamics. Finally, the author explores the ambitious and longstanding task of obtaining hydrodynamic constitutive equations from their kinetic counterparts. The work is intended for specialists in kinetic theory—or more generally statistical mechanics—and will provide a bridge between a physical and mathematical approach to solve real-world problems.
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