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Computation of Unsteady Internal Flows: Fundamental Methods with Case Studies (Softcover Reprint of the Original 1st 2001)

Computation of Unsteady Internal Flows

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"Computation of Unsteady Internal Flows" by Paul G. Tucker is a physics book focused on Dynamics. Best for students, educators, and scientifically curious readers.

Computation of Unsteady Internal Flows provides an in-depth understanding of unsteady flow modeling and algorithms. This understanding enables suitable algorithms and approaches for particular fields of application to be selected. In addition, the understanding of the behavior of algorithms gained allows practitioners to use them more safely in existing codes, enabling meaningful results to be produced more economically. Features of Computation of Unsteady Internal Flows: Specialized unsteady flow modeling algorithms, their traits, and practical tips relating to their use are presented. Case studies considering complex, practically significant problems are given. Source code and set-up files are included. Intended to be of a tutorial nature, these enable the reader to reproduce and extend case studies and to further explore algorithm performances. Mathematical derivations are used in a fashion that illuminates understanding of the physical implications of different numerical schemes. Physically intuitive mathematical concepts are used. New material on adaptive time stepping is included. £/LIST£ Audience: Researchers in both the academic and industrial areas who wish to gain in-depth knowledge of unsteady flow modeling will find Computation of Unsteady Internal Flows invaluable. It can also be used as a text in courses centered on computational fluid dynamics.

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Best For: Researchers and engineers working on fluid dynamics and unsteady flow modeling.
Focus: Fundamental computational methods and algorithms for unsteady internal flows.
Covers: Selection and application of algorithms for unsteady flow problems with case studies illustrating practical use.
Why It Matters: Provides a deeper understanding of algorithm behavior to improve safety and efficiency in computational fluid dynamics codes.

"Computation of Unsteady Internal Flows" by Paul G. Tucker is a physics book focused on Dynamics. Best for students, educators, and scientifically curious readers.

Topic: Dynamics

Author: Paul G. Tucker

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.

Computation of Unsteady Internal Flows provides an in-depth understanding of unsteady flow modeling and algorithms. This understanding enables suitable algorithms and approaches for particular fields of application to be selected. In addition, the understanding of the behavior of algorithms gained allows practitioners to use them more safely in existing codes, enabling meaningful results to be produced more economically. Features of Computation of Unsteady Internal Flows: Specialized unsteady flow modeling algorithms, their traits, and practical tips relating to their use are presented. Case studies considering complex, practically significant problems are given. Source code and set-up files are included. Intended to be of a tutorial nature, these enable the reader to reproduce and extend case studies and to further explore algorithm performances. Mathematical derivations are used in a fashion that illuminates understanding of the physical implications of different numerical schemes. Physically intuitive mathematical concepts are used. New material on adaptive time stepping is included. £/LIST£ Audience: Researchers in both the academic and industrial areas who wish to gain in-depth knowledge of unsteady flow modeling will find Computation of Unsteady Internal Flows invaluable. It can also be used as a text in courses centered on computational fluid dynamics.

AuthorPaul G. Tucker
PublisherSpringer
Published2013-10-03
ISBN-139781461355540
BindingPaperback
Pages355
LanguageEnglish
SubjectsScience
TopicDynamics

Format: Paperback

Length: 355 pages

Language: English

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