This informal introduction to computational fluid dynamics and practical guide to numerical simulation of transport phenomena covers the derivation of the governing equations, construction of finite element approximations, and qualitative properties of numerical solutions. A comprehensive review of stabilization techniques for convection-dominated transport problems introduces the reader to streamline diffusion methods, Petrov–Galerkin approximations and Taylor–Galerkin schemes among other topics. Subsequent material includes Petrov–Galerkin stabilization, classical projection schemes, Schur complement solvers and the k-epsilon turbulence model for incompressible flow problems. Although the text is primarily aimed at advanced undergraduate and graduate students in computational engineering, it may also be useful to physicists, computational scientists, and developers of numerical simulation software. The book begins at a basic level and advances to numerical tools for increasingly difficult flow problems, with an emphasis on practical implementation, in order to be accessible to readers with diverse backgrounds and interests.
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This informal introduction to computational fluid dynamics and practical guide to numerical simulation of transport phenomena covers the derivation of the governing equations, construction of finite element approximations, and qualitative properties of numerical solutions. A comprehensive review of stabilization techniques for convection-dominated transport problems introduces the reader to streamline diffusion methods, Petrov–Galerkin approximations and Taylor–Galerkin schemes among other topics. Subsequent material includes Petrov–Galerkin stabilization, classical projection schemes, Schur complement solvers and the k-epsilon turbulence model for incompressible flow problems. Although the text is primarily aimed at advanced undergraduate and graduate students in computational engineering, it may also be useful to physicists, computational scientists, and developers of numerical simulation software. The book begins at a basic level and advances to numerical tools for increasingly difficult flow problems, with an emphasis on practical implementation, in order to be accessible to readers with diverse backgrounds and interests.
Finite Element Methods Computational Fluid Dynamics editado por Cambridge
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Condición: New. An informal introduction to computational fluid dynamics and numerical simulation of transport phenomena for advanced undergraduates and above. Num Pages: 330 pages. BIC Classification: PBKS; PHDF; TGMF. Category: (U) Tertiary Education (US: College). Dimension: 181 x 261 x 23. Weight in Grams: 590. . 2014. Paperback. . . . . Nº de ref. del artículo: V9781611973600
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Paperback. Condición: New. This informal introduction to computational fluid dynamics and practical guide to numerical simulation of transport phenomena covers the derivation of the governing equations, construction of finite element approximations, and qualitative properties of numerical solutions, among other topics. To make the book accessible to readers with diverse interests and backgrounds, the authors begin at a basic level and advance to numerical tools for increasingly difficult flow problems, emphasizing practical implementation rather than mathematical theory.Finite Element Methods for Computational Fluid Dynamics: Explains the basics of the finite element method (FEM) in the context of simple model problems, illustrated by numerical examples. Comprehensively reviews stabilization techniques for convection-dominated transport problems, introducing the reader to streamline diffusion methods, Petrov-Galerkin approximations, Taylor-Galerkin schemes, flux-corrected transport algorithms, and other nonlinear high-resolution schemes. Covers Petrov-Galerkin stabilization, classical projection schemes, Schur complement solvers, and the implementation of the k-epsilon turbulence model in its presentation of the FEM for incompressible flow problems.Ddescribes the open-source finite element library ELMER, which is recommended as a software development kit for advanced applications in an online component. Nº de ref. del artículo: LU-9781611973600
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Paperback. Condición: new. Paperback. This informal introduction to computational fluid dynamics and practical guide to numerical simulation of transport phenomena covers the derivation of the governing equations, construction of finite element approximations, and qualitative properties of numerical solutions, among other topics. To make the book accessible to readers with diverse interests and backgrounds, the authors begin at a basic level and advance to numerical tools for increasingly difficult flow problems, emphasizing practical implementation rather than mathematical theory.Finite Element Methods for Computational Fluid Dynamics: Explains the basics of the finite element method (FEM) in the context of simple model problems, illustrated by numerical examples. Comprehensively reviews stabilization techniques for convection-dominated transport problems, introducing the reader to streamline diffusion methods, PetrovGalerkin approximations, TaylorGalerkin schemes, flux-corrected transport algorithms, and other nonlinear high-resolution schemes. Covers PetrovGalerkin stabilization, classical projection schemes, Schur complement solvers, and the implementation of the k-epsilon turbulence model in its presentation of the FEM for incompressible flow problems.Ddescribes the open-source finite element library ELMER, which is recommended as a software development kit for advanced applications in an online component. This informal introduction to computational fluid dynamics and practical guide to numerical simulation of transport phenomena covers the derivation of the governing equations, construction of finite element approximations, and qualitative properties of numerical solutions, among other topics. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Nº de ref. del artículo: 9781611973600
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