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The GETMe Mesh Smoothing Framework - A Geometric Way to Quality Finite Element Meshes (Paperback)
Loot Price: R1,583
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The GETMe Mesh Smoothing Framework - A Geometric Way to Quality Finite Element Meshes (Paperback)
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High quality meshes play a key role in many applications based on
digital modeling and simulation. The finite element method is a
paragon for such an approach and it is well known that quality
meshes can significantly improve computational efficiency and
solution accuracy of this method. Therefore, a lot of effort has
been put in methods for improving mesh quality. These range from
simple geometric approaches, like Laplacian smoothing, with a high
computational efficiency but possible low resulting mesh quality,
to global optimization-based methods, resulting in an excellent
mesh quality at the cost of an increased computational and
implementational complexity. The geometric element transformation
method (GETMe) aims to fill the gap between these two approaches.
It is based on geometric mesh element transformations, which
iteratively transform polygonal and polyhedral elements into their
regular counterparts or into elements with a prescribed shape.
GETMe combines a Laplacian smoothing-like computational efficiency
with a global optimization-like effectiveness. The method is
straightforward to implement and its variants can also be used to
improve tangled and anisotropic meshes. This book describes the
mathematical theory of geometric element transformations as
foundation for mesh smoothing. It gives a thorough introduction to
GETMe-based mesh smoothing and its algorithms providing a framework
to focus on effectively improving key mesh quality aspects. It
addresses the improvement of planar, surface, volumetric, mixed,
isotropic, and anisotropic meshes and addresses aspects of
combining mesh smoothing with topological mesh modification. The
advantages of GETMe-based mesh smoothing are demonstrated by the
example of various numerical tests. These include smoothing of real
world meshes from engineering applications as well as smoothing of
synthetic meshes for demonstrating key aspects of GETMe-based mesh
improvement. Results are compared with those of other smoothing
methods in terms of runtime behavior, mesh quality, and resulting
finite element solution efficiency and accuracy. Features: * Helps
to improve finite element mesh quality by applying geometry-driven
mesh smoothing approaches. * Supports the reader in understanding
and implementing GETMe-based mesh smoothing. * Discusses aspects
and properties of GETMe smoothing variants and thus provides
guidance for choosing the appropriate mesh improvement algorithm. *
Addresses smoothing of various mesh types: planar, surface,
volumetric, isotropic, anisotropic, non-mixed, and mixed. *
Provides and analyzes geometric element transformations for
polygonal and polyhedral elements with regular and non-regular
limits. * Includes a broad range of numerical examples and compares
results with those of other smoothing methods.
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