Numerical Simulation of Reactive Flow / Edition 2

Numerical Simulation of Reactive Flow / Edition 2

ISBN-10:
0521022363
ISBN-13:
9780521022361
Pub. Date:
11/10/2005
Publisher:
Cambridge University Press
ISBN-10:
0521022363
ISBN-13:
9780521022361
Pub. Date:
11/10/2005
Publisher:
Cambridge University Press
Numerical Simulation of Reactive Flow / Edition 2

Numerical Simulation of Reactive Flow / Edition 2

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Overview

Reactive flows encompass a broad range of physical phenomena, interacting over many different time and space scales. Such flows occur in combustion, chemical lasers, the earth's oceans and atmosphere, and in stars. Because of a similarity in their descriptive equations, procedures for constructing numerical models of these systems are also similar, and these similarities can be exploited. Moreover, using the latest technology, what were once difficult and expensive computations can now be done on desktop computers. This new edition of a highly successful book presents algorithms useful for reactive flow simulations, describes trade-offs involved in their use, and gives guidance for building and using models of complex reactive flows. It takes account of the explosive growth in computer technology and the greatly increased capacity for solving complex reactive-flow problems that has occurred since the previous edition was published more than fifteen years ago. An indispensable guide on how to construct, use, and interpret numerical simulations of reactive flows, this book will be welcomed by advanced undergraduate and graduate students, and a wide range of researchers and practitioners in engineering, physics, and chemistry.

Product Details

ISBN-13: 9780521022361
Publisher: Cambridge University Press
Publication date: 11/10/2005
Edition description: REV
Pages: 552
Product dimensions: 6.69(w) x 9.61(h) x 1.14(d)

Table of Contents

1. An overview of numerical simulation; 2. The reactive flow modeling program; 3. Models and simulation; 4. Some general numerical considerations; 5. Ordinary differential equations: reaction mechanisms and other local phenomena; 6. Representations, resolution, and grids; 7. Diffusive transport processes; 8. Computational fluid dynamics: continuity equations; 9. Computational fluid dynamics: using more flow physics; 10. Boundaries, interfaces, and implicit algorithms; 11. Coupling models of reactive flow processes; 12. Turbulence and reactive flows; 13. Radiation transport and reactive flows.
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