A computational differential geometry approach to grid generation / Vladimir D. Liseikin.

By: Liseĭkin, V. DMaterial type: TextTextLanguage: English Series: Scientific computationBerlin ; Springer, c2007Edition: Second editionDescription: xiv, 291 pages : illustrations ; 24 cmISBN: 9783540342359Subject(s): Numerical grid generation (Numerical analysis) | Generación de red numérica (Análisis numérico) | Differential geometry | Geometría diferencialDDC classification: 515.353
Partial contents:
Introductory Notions -- General Coordinate Systems in Domains -- Geometry of Curves -- Multidimensional Geometry -- Comprehensive Grid Models -- Inverted Equations -- Numerical Implementation of Grid Generators --
Abstract: The process of breaking up a physical domain into smaller sub-domains, known as meshing, facilitates the numerical solution of partial differential equations used to simulate physical systems. This monograph gives a detailed treatment of applications of geometric methods to advanced grid technology. It focuses on and describes a comprehensive approach based on the numerical solution of inverted Beltramian and diffusion equations with respect to monitor metrics for generating both structured and unstructured grids in domains and on surfaces
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Item type Current library Call number Copy number Status Date due Barcode Item holds
Libro académico Libro académico Biblioteca del Campus
515.353 L7695c 2007 (Browse shelf (Opens below)) Ej. 1 Available 001800
Libro académico Libro académico Biblioteca del Campus
515.353 L7695c 2007 (Browse shelf (Opens below)) Ej. 2 Available 001801
Libro académico Libro académico Biblioteca del Campus
515.353 L7695c 2007 (Browse shelf (Opens below)) Ej. 3 Available 001802
Total holds: 0

Includes index

Includes bibliographical references (p. [279]-288) and index.

Introductory Notions -- General Coordinate Systems in Domains -- Geometry of Curves -- Multidimensional Geometry -- Comprehensive Grid Models -- Inverted Equations -- Numerical Implementation of Grid Generators --

The process of breaking up a physical domain into smaller sub-domains, known as meshing, facilitates the numerical solution of partial differential equations used to simulate physical systems. This monograph gives a detailed treatment of applications of geometric methods to advanced grid technology. It focuses on and describes a comprehensive approach based on the numerical solution of inverted Beltramian and diffusion equations with respect to monitor metrics for generating both structured and unstructured grids in domains and on surfaces

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