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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. In this second edition of A Computational Differential Geometry Approach to Grid Generation the author gives a more detailed and practice oriented approach towards implementing the described method by - Conducting geometric and numerical analyses of monitor metrics as basis for developing efficient tools for controlling grid properties Geometric methods in grid generation is a fairly recent subject with many applications in scientific computing So far the literature on the subject is sparse.
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