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Nonequilibrium gas dynamics and mole...
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Schwartzentruber, Thomas E., (1977-)
Nonequilibrium gas dynamics and molecular simulation /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Nonequilibrium gas dynamics and molecular simulation // Iain D. Boyd, Thomas E. Schwartzentruber.
Author:
Boyd, Iain D.,
other author:
Schwartzentruber, Thomas E.,
Published:
Cambridge, United Kingdom ;Cambridge University Press, : 2017.,
Description:
xxi, 360 p. :ill. ; : 27 cm.;
Subject:
Gas dynamics - Mathematical models. -
Online resource:
https://www.loc.gov/catdir/enhancements/fy1702/2016045940-t.html
Online resource:
https://www.loc.gov/catdir/enhancements/fy1702/2016045940-b.html
Online resource:
https://www.loc.gov/catdir/enhancements/fy1702/2016045940-d.html
ISBN:
9781107073449 (cloth) :
Nonequilibrium gas dynamics and molecular simulation /
Boyd, Iain D.,1964-
Nonequilibrium gas dynamics and molecular simulation /
Iain D. Boyd, Thomas E. Schwartzentruber. - Cambridge, United Kingdom ;Cambridge University Press,2017. - xxi, 360 p. :ill. ;27 cm. - Cambridge aerospace series. - Cambridge aerospace series..
Includes bibliographical references (p. 349-356) and index.
Kinetic theory -- Statistical mechanics -- Finite-rate processes -- Relations between molecular and continuum gas dynamics er-atomic potentials -- Direct simulation Monte Carlo (DSMC) -- DSMC models for nonequilibrium thermochemistry.
"The book is divided into two parts based on the overall goals, with the first part focusing on fundamental considerations, and the second part dedicated to describing computer simulation methods. The first section covers three different areas: (1) kinetic theory, (2) quantum mechanics, and (3) statistical mechanics. Important results from these three areas are then brought together to allow analysis of nonequilibrium processes in a gas based on molecular level considerations. Chapter 1 covers kinetic theory, in which the basic idea is to develop techniques to relate the properties and behavior of particles, representing atoms and molecules, to the fluid mechanical aspects of a gas at the macroscopic level. This requires us to provide a basic definition by what is meant by a particle, and how these particles interact with one another through the mechanism of inter-molecular collisions. This leads us into a discussion of modeling of macroscopic molecular transport processes, such as viscosity and thermal conductivity, that represents one of the first key successes of kinetic theory. We will find that kinetic theory relies on the use of statistical analysis techniques, such as probability density functions, due to the very large volumes of information involved in tracking the behavior of every single particle in a real gas flow"--
ISBN: 9781107073449 (cloth) :NT4797
LCCN: 2016045940Subjects--Topical Terms:
905044
Gas dynamics
--Mathematical models.
LC Class. No.: QC168 / .B63 2017
Dewey Class. No.: 533/.2
Nonequilibrium gas dynamics and molecular simulation /
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Nonequilibrium gas dynamics and molecular simulation /
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Cambridge aerospace series
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Includes bibliographical references (p. 349-356) and index.
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Kinetic theory -- Statistical mechanics -- Finite-rate processes -- Relations between molecular and continuum gas dynamics er-atomic potentials -- Direct simulation Monte Carlo (DSMC) -- DSMC models for nonequilibrium thermochemistry.
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"The book is divided into two parts based on the overall goals, with the first part focusing on fundamental considerations, and the second part dedicated to describing computer simulation methods. The first section covers three different areas: (1) kinetic theory, (2) quantum mechanics, and (3) statistical mechanics. Important results from these three areas are then brought together to allow analysis of nonequilibrium processes in a gas based on molecular level considerations. Chapter 1 covers kinetic theory, in which the basic idea is to develop techniques to relate the properties and behavior of particles, representing atoms and molecules, to the fluid mechanical aspects of a gas at the macroscopic level. This requires us to provide a basic definition by what is meant by a particle, and how these particles interact with one another through the mechanism of inter-molecular collisions. This leads us into a discussion of modeling of macroscopic molecular transport processes, such as viscosity and thermal conductivity, that represents one of the first key successes of kinetic theory. We will find that kinetic theory relies on the use of statistical analysis techniques, such as probability density functions, due to the very large volumes of information involved in tracking the behavior of every single particle in a real gas flow"--
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Schwartzentruber, Thomas E.,
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https://www.loc.gov/catdir/enhancements/fy1702/2016045940-t.html
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Contributor biographical information
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533.2 B789 2017
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