Lectures on Mathematical Combustion

Lectures on Mathematical Combustion
Author: John D. Buckmaster
Publisher: SIAM
Total Pages: 127
Release: 1983-12-01
Genre: Science
ISBN: 089871186X

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An introduction to far-reaching developments in theoretical combustion, with special emphasis on flame stability, a topic that has, to date, benefited most from the application of modern asymptotic methods. The authors provide a modern view of flame theory, and a complete description of the longstanding ignition and explosion problems, including the solutions that were made available independently by Kapila and Kassoy through activation-energy asymptotics, the main theme of this monograph.

Lectures on Mathematical Combustion. Lecture 1. Pre-Asymptotic Combustion Revisited

Lectures on Mathematical Combustion. Lecture 1. Pre-Asymptotic Combustion Revisited
Author:
Publisher:
Total Pages: 26
Release: 1983
Genre:
ISBN:

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The description of reacting systems can be simplified when the so- called activation energy is large; the notion is an old one, but its full power is only released by modern singular perturbation theory. More than forty years ago, Frank-Kamenetskii introduced approximations based on large activation energy to construct a thermal theory of spontaneous combustion, and we shall start there. His problem, which neglects the fluid-mechanical effects of main concern to us, focuses attention on the reaction and thereby acts as a precursor for the lectures that follow. The problem and its generalizations have been the happy hunting grounds of mathematical analysts for many years, but it was not until quite recently that a complete description of the ignition and explosion processes was made available of Kapila and Kassoy (working separately) through activation-energy asymptotics, the main theme of these lectures.

Mathematical Problems from Combustion Theory

Mathematical Problems from Combustion Theory
Author: Jerrold Bebernes
Publisher: Springer Science & Business Media
Total Pages: 187
Release: 2013-12-01
Genre: Science
ISBN: 146124546X

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This monograph evolved over the past five years. It had its origin as a set of lecture notes prepared for the Ninth Summer School of Mathematical Physics held at Ravello, Italy, in 1984 and was further refined in seminars and lectures given primarily at the University of Colorado. The material presented is the product of a single mathematical question raised by Dave Kassoy over ten years ago. This question and its partial resolution led to a successful, exciting, almost unique interdisciplinary col laborative scientific effort. The mathematical models described are often times deceptively simple in appearance. But they exhibit a mathematical richness and beauty that belies that simplicity and affirms their physical significance. The mathe matical tools required to resolve the various problems raised are diverse, and no systematic attempt is made to give the necessary mathematical background. The unifying theme of the monograph is the set of models themselves. This monograph would never have come to fruition without the enthu siasm and drive of Dave Eberly-a former student, now collaborator and coauthor-and without several significant breakthroughs in our understand ing of the phenomena of blowup or thermal runaway which certain models discussed possess. A collaborator and former student who has made significant contribu tions throughout is Alberto Bressan. There are many other collaborators William Troy, Watson Fulks, Andrew Lacey, Klaus Schmitt-and former students-Paul Talaga and Richard Ely-who must be acknowledged and thanked.

Lectures on Mathematical Combustion. Lecture 2. Governing Equations, Asymptotics, and Deflagrations

Lectures on Mathematical Combustion. Lecture 2. Governing Equations, Asymptotics, and Deflagrations
Author: J. D. Buckmaster
Publisher:
Total Pages: 24
Release: 1983
Genre:
ISBN:

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The problem of formulating the governing equations of combusion consists, as its simplest, in characterizing the flow of a viscous, heat-conducting mixture of diffusing, reacting gases. This is a formidable task that could fill a week of lectures by itself, most of which would not be of great interest to a mathematical audience. Mindful of this, we shall limit ourselves to a description, rather than a derivation, of the simplest equations that can be brought to bear on combustion problems. Only the most important assumptions normally used to justify the equations will be discussed; for a more extensive treatment the reader is referred to Buckmaster & Ludford (1982).

Lectures on Mathematical Combustion

Lectures on Mathematical Combustion
Author: J. D. Buckmaster
Publisher: Society for Industrial and Applied Mathematics
Total Pages: 134
Release: 1983-12-01
Genre: Science
ISBN: 9780898711868

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An introduction to far-reaching developments in theoretical combustion, with special emphasis on flame stability, a topic that has, to date, benefited most from the application of modern asymptotic methods. The authors provide a modern view of flame theory, and a complete description of the longstanding ignition and explosion problems, including the solutions that were made available independently by Kapila and Kassoy through activation-energy asymptotics, the main theme of this monograph.

Lectures on Combustion Theory

Lectures on Combustion Theory
Author: Samuel Z. Burstein
Publisher:
Total Pages: 334
Release: 1978
Genre: Combustion, Theory of
ISBN:

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Lectures on Mathematical Combustion. Lecture 7. Pulsating Flames

Lectures on Mathematical Combustion. Lecture 7. Pulsating Flames
Author: J. D. Buckmaster
Publisher:
Total Pages: 28
Release: 1983
Genre:
ISBN:

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In section 5. it was found that plane NEFs to sufficiently large Lewis number are unstable. Since Im(a) 0 on the stability boundary, the instability is likely to result in either a pulsating flame or a flame that supports traveling waves. Such flames are the subject of this lecture.

Lectures on Mathematical Combustion. Lecture 4. SVFs and NEFs

Lectures on Mathematical Combustion. Lecture 4. SVFs and NEFs
Author: J. D. Buckmaster
Publisher:
Total Pages: 25
Release: 1983
Genre:
ISBN:

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For want of a complete analysis of multidimensional flows in preasymptotic days, it was natural to try to identify special characteristics that play particularly important roles in the understanding of flame behavior. Flame speed and temperature are examples of such characteristics that have already been identified; a more subtle characteristic, introduced by Karlovitz, is flame stretch. The authors start by discussing this concept, so as to have it available when we come to discussing general slowly varying and near-equidiffusional flames. (Author).

Lectures on Mathematical Combustion. Lecture 3. General Deflagrations

Lectures on Mathematical Combustion. Lecture 3. General Deflagrations
Author: J. D. Buckmaster
Publisher:
Total Pages: 22
Release: 1983
Genre:
ISBN:

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In the last lecture we examined the plane, steady, adiabatic, premixed flame and deduced an explicit formula for its speed. By using judicious choice of parameters this formula can be made to agree roughly with experiment; precision is not a reasonal goal, given the crude nature of our model. Noteworthy is the extreme sensitivity of the speed to variations in the flame temperature: an 0(1) change generates an exponentially large change in flame speed. Such variations in speed (caused, for example, by changes in mixture strength) are not excessive numerically (at least for fuels burnt in air), because activation energies and fractional changes in temperature are modest; but in an asymptotic analysis they present a potential obstacle to discussion of multidimensional and/or unsteady flames. Then signigicant variations, spatial and/or temporal, in the flame temperature can be expected and, if the sensitivity mentioned above is any guide, there will be correspondingly large spatial and/or temporal variations in the flame speed. A mathematical framework in which to accommodate these is not obvious. (The first lecture dealt with special circumstances for which such variations were manageable).

Lectures on Mathematical Combustion. Lecture 6. Cellular Flames

Lectures on Mathematical Combustion. Lecture 6. Cellular Flames
Author: J. D. Buckmaster
Publisher:
Total Pages: 31
Release: 1983
Genre:
ISBN:

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We shall now examine the left stability boundary that was uncovered in lecture 5 in our discussion of NEFs (figure 5.3). The boundary is associated with instabilities leading to cellular flames, i.e. flames whose surfaces are broken up into distinct luminous regions (cells) separated by dark lines. Each line is a ridge of high curvature, convex towards the burnt gas. For a nominally flat flame these cells are very unsteady, growing and subdividing in a chaotic fashion; but curvature, for example, can make stationary.