Taira

Nonlinear Functional Analysis with Applications to Combustion Theory

Springer

ISBN 978-3-031-85756-0

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auch verfügbar als eBook (PDF) für 139,09 €

Bibliografische Daten

Fachbuch

Buch. Hardcover

2025

65 s/w-Abbildungen.

In englischer Sprache

Umfang: xv, 269 S.

Format (B x L): 15,5 x 23,5 cm

Verlag: Springer

ISBN: 978-3-031-85756-0

Produktbeschreibung

Explore the fascinating intersection of mathematics and combustion theory in this comprehensive monograph, inspired by the pioneering work of N. N. Semenov and D. A. Frank-Kamenetskii. Delving into the nonlinear functional analytic approach, this book examines semilinear elliptic boundary value problems governed by the Arrhenius equation and Newton's law of heat exchange. Key topics include: - Detailed analysis of boundary conditions, including isothermal (Dirichlet) and adiabatic (Neumann) cases. - Critical insights into ignition and extinction phenomena in stable steady temperature profiles, linked to the Frank-Kamenetskii parameter. - Sufficient conditions for multiple positive solutions, revealing the S-shaped bifurcation curves of these problems. Designed for researchers and advanced students, this monograph provides a deep understanding of nonlinear functional analysis and elliptic boundary value problems through their application to combustion and chemical reactor models. Featuring detailed illustrations, clearly labeled figures, and tables, this book ensures clarity and enhances comprehension of complex concepts. Whether you are exploring combustion theory, functional analysis, or applied mathematics, this text offers profound insights and a thorough mathematical foundation.

Autorinnen und Autoren

Kundeninformationen

Provides a mathematical theory of combustion, which is inspired by N. N. Semenov and D. A. Frank-Kamenetskii Focuses on a relationship between chemical reactions and semilinear elliptic problems via nonlinear functional analysis Includes not only interesting mathematical results, but also interpretations of them from combustion theory

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