Delivery included to the United States

Molecular Gas Dynamics and the Direct Simulation of Gas Flows

Molecular Gas Dynamics and the Direct Simulation of Gas Flows - Oxford Engineering Science Series

Hardback (05 May 1994)

  • $381.42
Add to basket

Includes delivery to the United States

10+ copies available online - Usually dispatched within 2-3 weeks

Publisher's Synopsis

The direct simulation Monte Carlo (or DSMC) method has, in recent years, become widely used in engineering and scientific studies of gas flows that involve low densities or very small physical dimensions. This method is a direct physical simulation of the motion of representative molecules, rather than a numerical solution of the equations that provide a mathematical model of the flow. These computations are no longer expensive and the period since the 1976 publication of the original Molecular Gas Dynamics has seen enormous improvements in the molecular models, the procedures, and the implementation strategies for the DSMC method. The molecular theory of gas flows is developed from first principles and is extended to cover the new models and procedures. Note: The disk that originally came with this book is no longer available. However, the same information is available from the author's website (http://gab.com.au/)

About the Publisher

Oxford University Press

Oxford University Press is a department of the University of Oxford. It furthers the University's objective of excellence in research, scholarship, and education by publishing worldwide. Our products cover an extremely broad academic and educational spectrum, and we aim to make our content available to our users in whichever format suits them best.We publish for all audiences-from pre-school to secondary level schoolchildren; students to academics; general readers to researchers; individuals to institutions. Our range includes dictionaries, English language teaching materials, children's books, journals, scholarly monographs, printed music, higher education textbooks, and schoolbooks.

Book information

ISBN: 9780198561958
Publisher: OUP OXFORD
Imprint: Oxford University Press
Pub date:
DEWEY: 533.2
DEWEY edition: 20
Language: English
Number of pages: 458
Weight: 922g
Height: 242mm
Width: 155mm
Spine width: 32mm