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Solving Direct and Inverse Heat Conduction Problems (2006)

Solving Direct and Inverse Heat Conduction Problems

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"Solving Direct and Inverse Heat Conduction Problems" by Jan Taler, Piotr Duda is a physics book focused on Thermal Effects. Best for students, educators, and scientifically curious readers.

This book is devoted to the concept of simple and inverse heat conduction problems. The process of solving direct problems is based on the tempera ture determination when initial and boundary conditions are known, while the solving of inverse problems is based on the search for boundary condi tions when temperature properties are known, provided that temperature is the function of time, at the selected inner points of a body. In the first part of the book (Chaps. 1-5), we have discussed theoretical basis for thermal conduction in solids, motionless liquids and liquids that move in time. In the second part of the book, (Chapters 6-26), we have discussed at great length different engineering problems, which we have presented together with the proposed solutions in the form of theoretical and mathematical examples. It was our intention to acquaint the reader in a step-by-step fashion with all the mathematical derivations and solutions to some of the more significant transient and steady-state heat conduction problems with respect to both, the movable and immovable heat sources and the phenomena of melting and freezing. Lots of attention was paid to non-linear problems. The methods for solving heat conduction problems, i. e. the exact and approximate analytical methods and numerical methods, such as the finite difference method, the finite volume method, the finite element method and the boundary element method are discussed in great detail. Aside from algorithms, applicable computational programs, written in a FORTRAN language, were given.

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Best For: Students and professionals in mechanical engineering and thermodynamics focusing on heat transfer analysis.
Focus: Methods for solving both direct and inverse heat conduction problems, emphasizing temperature determination and boundary condition identification.
Covers: Techniques for determining temperature distributions when initial and boundary conditions are known, and approaches to find boundary conditions from temperature data at internal points over time.
Why It Matters: Understanding and solving heat conduction problems is essential for accurate thermal analysis in engineering applications, impacting design and safety assessments.

"Solving Direct and Inverse Heat Conduction Problems" by Jan Taler, Piotr Duda is a physics book focused on Thermal Effects. Best for students, educators, and scientifically curious readers.

Topic: Thermal Effects

Author: Jan Taler, Piotr Duda

Who this is for:

  • Physics students
  • Science-minded readers
  • Readers building technical understanding

Why this book matters: It provides structured coverage of physics concepts in a way that supports deeper understanding and continued study.

This book is devoted to the concept of simple and inverse heat conduction problems. The process of solving direct problems is based on the tempera ture determination when initial and boundary conditions are known, while the solving of inverse problems is based on the search for boundary condi tions when temperature properties are known, provided that temperature is the function of time, at the selected inner points of a body. In the first part of the book (Chaps. 1-5), we have discussed theoretical basis for thermal conduction in solids, motionless liquids and liquids that move in time. In the second part of the book, (Chapters 6-26), we have discussed at great length different engineering problems, which we have presented together with the proposed solutions in the form of theoretical and mathematical examples. It was our intention to acquaint the reader in a step-by-step fashion with all the mathematical derivations and solutions to some of the more significant transient and steady-state heat conduction problems with respect to both, the movable and immovable heat sources and the phenomena of melting and freezing. Lots of attention was paid to non-linear problems. The methods for solving heat conduction problems, i. e. the exact and approximate analytical methods and numerical methods, such as the finite difference method, the finite volume method, the finite element method and the boundary element method are discussed in great detail. Aside from algorithms, applicable computational programs, written in a FORTRAN language, were given.

AuthorJan Taler, Piotr Duda
PublisherSpringer
Published2006-10-18
ISBN-139783540334705
BindingHardcover
LanguageEnglish
SubjectsScience
TopicThermal Effects

Format: Hardcover

Language: English

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