Description

Book Synopsis
This book treats the numerical analysis of finite element computational fluid dynamics. Assuming minimal background, the text covers finite element methods; the derivation, behaviour, analysis, and numerical analysis of NavierâStokes equations; and turbulence models used in simulations. Each chapter on theory is followed by a numerical analysis chapter that expands on the theory. Introduction to the Numerical Analysis of Incompressible Viscous Flows provides the foundation for understanding the interconnection of the physics, mathematics, and numerics of the incompressible case, which is essential for progressing to more complex ïows. With mathematical rigour and physical clarity, the book progresses from the mathematical preliminaries of energy and stress to ïnite element computational ïuid dynamics in a manageable format.

Introduction to the Numerical Analysis of

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    A Paperback by William Layton

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      View other formats and editions of Introduction to the Numerical Analysis of by William Layton

      Publisher: Society for Industrial and Applied Mathematics
      Publication Date: 12/4/2008
      ISBN13: 9780898716573, 978-0898716573
      ISBN10: 0898716578

      Description

      Book Synopsis
      This book treats the numerical analysis of finite element computational fluid dynamics. Assuming minimal background, the text covers finite element methods; the derivation, behaviour, analysis, and numerical analysis of NavierâStokes equations; and turbulence models used in simulations. Each chapter on theory is followed by a numerical analysis chapter that expands on the theory. Introduction to the Numerical Analysis of Incompressible Viscous Flows provides the foundation for understanding the interconnection of the physics, mathematics, and numerics of the incompressible case, which is essential for progressing to more complex ïows. With mathematical rigour and physical clarity, the book progresses from the mathematical preliminaries of energy and stress to ïnite element computational ïuid dynamics in a manageable format.

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