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A geometric modeler for generation of two - and three - dimensional finite element meshes

A geometric modeler for generation of two - and three - dimensional finite element meshes PDF Author:
Publisher:
ISBN:
Category :
Languages : pt-BR
Pages :

Book Description
Este trabalho apresenta algoritmos de geração automática de malhas de elementos finitos bidimensionais e tridimensionais que, juntamente com outros algoritmos desenvolvidos dentro da linha de pesquisa ao qual ele está inserido, são integrados consistentemente em um pacote computacional. Os algoritmos geradores de malhas foram modificados para serem independentes dos pré-processadores, podendo assim serem incorporados em diferentes programas. Um novo algoritmo bidimensional de geração de elementos triangulares é proposto. Este algoritmo incorpora novas idéias, adaptadas de um algoritmo de geração tridimensional de malhas em volume arbitrário, e procura gerar elementos de melhor qualidade geométrica possível. Duas técnicas de geração de malhas sólidas são apresentadas: uma de mapeamento transfinito tridimensional, onde a malha sólida é construída a partir das seções transversais do modelo; e uma técnica de sweep, onde a malha sólida é construída pelo arrasto de uma seção transversal ao longo de um curva no espaço. Os algoritmos são incorporados em um modelador geométrico tridimensional, o MG (Mesh Generator), e alguns exemplos são feitos para demonstrar a capacidade de modelagem do ambiente criado. Em particular são mostrados exemplos para modelagem composta com diferentes métodos de construção de malhas e diferentes tipos de elementos finitos em um mesmo modelo. Também é feito um estudo de algumas medidas de distorção para elementos finitos planos. O cálculo dessas medidas de distorção é implementado em um modelador bidimensional gráfico interativo. A visualização das medidas de distorção é feita através de uma escala de cores.

A geometric modeler for generation of two - and three - dimensional finite element meshes

A geometric modeler for generation of two - and three - dimensional finite element meshes PDF Author:
Publisher:
ISBN:
Category :
Languages : pt-BR
Pages :

Book Description
Este trabalho apresenta algoritmos de geração automática de malhas de elementos finitos bidimensionais e tridimensionais que, juntamente com outros algoritmos desenvolvidos dentro da linha de pesquisa ao qual ele está inserido, são integrados consistentemente em um pacote computacional. Os algoritmos geradores de malhas foram modificados para serem independentes dos pré-processadores, podendo assim serem incorporados em diferentes programas. Um novo algoritmo bidimensional de geração de elementos triangulares é proposto. Este algoritmo incorpora novas idéias, adaptadas de um algoritmo de geração tridimensional de malhas em volume arbitrário, e procura gerar elementos de melhor qualidade geométrica possível. Duas técnicas de geração de malhas sólidas são apresentadas: uma de mapeamento transfinito tridimensional, onde a malha sólida é construída a partir das seções transversais do modelo; e uma técnica de sweep, onde a malha sólida é construída pelo arrasto de uma seção transversal ao longo de um curva no espaço. Os algoritmos são incorporados em um modelador geométrico tridimensional, o MG (Mesh Generator), e alguns exemplos são feitos para demonstrar a capacidade de modelagem do ambiente criado. Em particular são mostrados exemplos para modelagem composta com diferentes métodos de construção de malhas e diferentes tipos de elementos finitos em um mesmo modelo. Também é feito um estudo de algumas medidas de distorção para elementos finitos planos. O cálculo dessas medidas de distorção é implementado em um modelador bidimensional gráfico interativo. A visualização das medidas de distorção é feita através de uma escala de cores.

Geometric Modeling and Mesh Generation from Scanned Images

Geometric Modeling and Mesh Generation from Scanned Images PDF Author: Yongjie Jessica Zhang
Publisher: CRC Press
ISBN: 1482227770
Category : Computers
Languages : en
Pages : 352

Book Description
Cutting-Edge Techniques to Better Analyze and Predict Complex Physical Phenomena Geometric Modeling and Mesh Generation from Scanned Images shows how to integrate image processing, geometric modeling, and mesh generation with the finite element method (FEM) to solve problems in computational biology, medicine, materials science, and engineering. Based on the author’s recent research and course at Carnegie Mellon University, the text explains the fundamentals of medical imaging, image processing, computational geometry, mesh generation, visualization, and finite element analysis. It also explores novel and advanced applications in computational biology, medicine, materials science, and other engineering areas. One of the first to cover this emerging interdisciplinary field, the book addresses biomedical/material imaging, image processing, geometric modeling and visualization, FEM, and biomedical and engineering applications. It introduces image-mesh-simulation pipelines, reviews numerical methods used in various modules of the pipelines, and discusses several scanning techniques, including ones to probe polycrystalline materials. The book next presents the fundamentals of geometric modeling and computer graphics, geometric objects and transformations, and curves and surfaces as well as two isocontouring methods: marching cubes and dual contouring. It then describes various triangular/tetrahedral and quadrilateral/hexahedral mesh generation techniques. The book also discusses volumetric T-spline modeling for isogeometric analysis (IGA) and introduces some new developments of FEM in recent years with applications.

Geometric Modeling and Mesh Generation from Scanned Images

Geometric Modeling and Mesh Generation from Scanned Images PDF Author: Yongjie Jessica Zhang
Publisher: CRC Press
ISBN: 1315362562
Category : Computers
Languages : en
Pages : 354

Book Description
Cutting-Edge Techniques to Better Analyze and Predict Complex Physical Phenomena Geometric Modeling and Mesh Generation from Scanned Images shows how to integrate image processing, geometric modeling, and mesh generation with the finite element method (FEM) to solve problems in computational biology, medicine, materials science, and engineering. Based on the author’s recent research and course at Carnegie Mellon University, the text explains the fundamentals of medical imaging, image processing, computational geometry, mesh generation, visualization, and finite element analysis. It also explores novel and advanced applications in computational biology, medicine, materials science, and other engineering areas. One of the first to cover this emerging interdisciplinary field, the book addresses biomedical/material imaging, image processing, geometric modeling and visualization, FEM, and biomedical and engineering applications. It introduces image-mesh-simulation pipelines, reviews numerical methods used in various modules of the pipelines, and discusses several scanning techniques, including ones to probe polycrystalline materials. The book next presents the fundamentals of geometric modeling and computer graphics, geometric objects and transformations, and curves and surfaces as well as two isocontouring methods: marching cubes and dual contouring. It then describes various triangular/tetrahedral and quadrilateral/hexahedral mesh generation techniques. The book also discusses volumetric T-spline modeling for isogeometric analysis (IGA) and introduces some new developments of FEM in recent years with applications.

Finite Element Mesh Generation

Finite Element Mesh Generation PDF Author: Daniel S.H. Lo
Publisher: CRC Press
ISBN: 041569048X
Category : Technology & Engineering
Languages : en
Pages : 676

Book Description
Highlights the Progression of Meshing Technologies and Their Applications Finite Element Mesh Generation provides a concise and comprehensive guide to the application of finite element mesh generation over 2D domains, curved surfaces, and 3D space. Organised according to the geometry and dimension of the problem domains, it develops from the basic meshing algorithms to the most advanced schemes to deal with problems with specific requirements such as boundary conformity, adaptive and anisotropic elements, shape qualities, and mesh optimization. It sets out the fundamentals of popular techniques, including: Delaunay triangulation Advancing-front (ADF) approach Quadtree/Octree techniques Refinement and optimization-based strategies From the geometrical and the topological aspects and their associated operations and inter-relationships, each approach is vividly described and illustrated with examples. Beyond the algorithms, the book also explores the practice of using metric tensor and surface curvatures for generating anisotropic meshes on parametric space. It presents results from research including 3D anisotropic meshing, mesh generation over unbounded domains, meshing by means of intersection, re-meshing by Delaunay-ADF approach, mesh refinement and optimization, generation of hexahedral meshes, and large scale and parallel meshing, along with innovative unpublished meshing methods. The author provides illustrations of major meshing algorithms, pseudo codes, and programming codes in C++ or FORTRAN. Geared toward research centers, universities, and engineering companies, Finite Element Mesh Generation describes mesh generation methods and fundamental techniques, and also serves as a valuable reference for laymen and experts alike.

Geometric Modeling

Geometric Modeling PDF Author: Fouad Sabry
Publisher: One Billion Knowledgeable
ISBN:
Category : Computers
Languages : en
Pages : 104

Book Description
What is Geometric Modeling Geometric modeling is a branch of applied mathematics and computational geometry that studies methods and algorithms for the mathematical description of shapes.The shapes studied in geometric modeling are mostly two- or three-dimensional, although many of its tools and principles can be applied to sets of any finite dimension. Today most geometric modeling is done with computers and for computer-based applications. Two-dimensional models are important in computer typography and technical drawing. Three-dimensional models are central to computer-aided design and manufacturing (CAD/CAM), and widely used in many applied technical fields such as civil and mechanical engineering, architecture, geology and medical image processing. How you will benefit (I) Insights, and validations about the following topics: Chapter 1: Geometric modeling Chapter 2: Computer-aided design Chapter 3: Computational geometry Chapter 4: Bézier surface Chapter 5: Constructive solid geometry Chapter 6: Solid modeling Chapter 7: Subdivision surface Chapter 8: Mesh generation Chapter 9: Procedural modeling Chapter 10: Geometric constraint solving (II) Answering the public top questions about geometric modeling. (III) Real world examples for the usage of geometric modeling in many fields. Who this book is for Professionals, undergraduate and graduate students, enthusiasts, hobbyists, and those who want to go beyond basic knowledge or information for any kind of Geometric Modeling.

Meshing, Geometric Modeling and Numerical Simulation, Volume 2

Meshing, Geometric Modeling and Numerical Simulation, Volume 2 PDF Author: Paul Louis George
Publisher: John Wiley & Sons
ISBN: 1119384354
Category : Mathematics
Languages : en
Pages : 414

Book Description
Triangulations, and more precisely meshes, are at the heart of many problems relating to a wide variety of scientific disciplines, and in particular numerical simulations of all kinds of physical phenomena. In numerical simulations, the functional spaces of approximation used to search for solutions are defined from meshes, and in this sense these meshes play a fundamental role. This strong link between meshes and functional spaces leads us to consider advanced simulation methods in which the meshes are adapted to the behaviors of the underlying physical phenomena. This book presents the basic elements of this vision of meshing. These mesh adaptations are generally governed by a posteriori error estimators representing an increase of the error with respect to a size or metric. Independently of this metric of calculation, compliance with a geometry can also be calculated using a so-called geometric metric. The notion of mesh thus finds its meaning in the metric of its elements.

The Scaled Boundary Finite Element Method

The Scaled Boundary Finite Element Method PDF Author: Chongmin Song
Publisher: John Wiley & Sons
ISBN: 1119388457
Category : Science
Languages : en
Pages : 775

Book Description
An informative look at the theory, computer implementation, and application of the scaled boundary finite element method This reliable resource, complete with MATLAB, is an easy-to-understand introduction to the fundamental principles of the scaled boundary finite element method. It establishes the theory of the scaled boundary finite element method systematically as a general numerical procedure, providing the reader with a sound knowledge to expand the applications of this method to a broader scope. The book also presents the applications of the scaled boundary finite element to illustrate its salient features and potentials. The Scaled Boundary Finite Element Method: Introduction to Theory and Implementation covers the static and dynamic stress analysis of solids in two and three dimensions. The relevant concepts, theory and modelling issues of the scaled boundary finite element method are discussed and the unique features of the method are highlighted. The applications in computational fracture mechanics are detailed with numerical examples. A unified mesh generation procedure based on quadtree/octree algorithm is described. It also presents examples of fully automatic stress analysis of geometric models in NURBS, STL and digital images. Written in lucid and easy to understand language by the co-inventor of the scaled boundary element method Provides MATLAB as an integral part of the book with the code cross-referenced in the text and the use of the code illustrated by examples Presents new developments in the scaled boundary finite element method with illustrative examples so that readers can appreciate the significant features and potentials of this novel method—especially in emerging technologies such as 3D printing, virtual reality, and digital image-based analysis The Scaled Boundary Finite Element Method: Introduction to Theory and Implementation is an ideal book for researchers, software developers, numerical analysts, and postgraduate students in many fields of engineering and science.

Delaunay Mesh Generation

Delaunay Mesh Generation PDF Author: Siu-Wing Cheng
Publisher: CRC Press
ISBN: 1584887311
Category : Computers
Languages : en
Pages : 404

Book Description
Written by authors at the forefront of modern algorithms research, Delaunay Mesh Generation demonstrates the power and versatility of Delaunay meshers in tackling complex geometric domains ranging from polyhedra with internal boundaries to piecewise smooth surfaces. Covering both volume and surface meshes, the authors fully explain how and why thes

Statistical Analysis and Modelling of Spatial Point Patterns

Statistical Analysis and Modelling of Spatial Point Patterns PDF Author: Dr. Janine Illian
Publisher: John Wiley & Sons
ISBN: 9780470725153
Category : Mathematics
Languages : en
Pages : 560

Book Description
Spatial point processes are mathematical models used to describe and analyse the geometrical structure of patterns formed by objects that are irregularly or randomly distributed in one-, two- or three-dimensional space. Examples include locations of trees in a forest, blood particles on a glass plate, galaxies in the universe, and particle centres in samples of material. Numerous aspects of the nature of a specific spatial point pattern may be described using the appropriate statistical methods. Statistical Analysis and Modelling of Spatial Point Patterns provides a practical guide to the use of these specialised methods. The application-oriented approach helps demonstrate the benefits of this increasingly popular branch of statistics to a broad audience. The book: Provides an introduction to spatial point patterns for researchers across numerous areas of application Adopts an extremely accessible style, allowing the non-statistician complete understanding Describes the process of extracting knowledge from the data, emphasising the marked point process Demonstrates the analysis of complex datasets, using applied examples from areas including biology, forestry, and materials science Features a supplementary website containing example datasets. Statistical Analysis and Modelling of Spatial Point Patterns is ideally suited for researchers in the many areas of application, including environmental statistics, ecology, physics, materials science, geostatistics, and biology. It is also suitable for students of statistics, mathematics, computer science, biology and geoinformatics.

Meshing, Geometric Modeling and Numerical Simulation, Volume 2

Meshing, Geometric Modeling and Numerical Simulation, Volume 2 PDF Author: Paul Louis George
Publisher: John Wiley & Sons
ISBN: 1119384362
Category : Mathematics
Languages : en
Pages : 385

Book Description
Triangulations, and more precisely meshes, are at the heart of many problems relating to a wide variety of scientific disciplines, and in particular numerical simulations of all kinds of physical phenomena. In numerical simulations, the functional spaces of approximation used to search for solutions are defined from meshes, and in this sense these meshes play a fundamental role. This strong link between meshes and functional spaces leads us to consider advanced simulation methods in which the meshes are adapted to the behaviors of the underlying physical phenomena. This book presents the basic elements of this vision of meshing. These mesh adaptations are generally governed by a posteriori error estimators representing an increase of the error with respect to a size or metric. Independently of this metric of calculation, compliance with a geometry can also be calculated using a so-called geometric metric. The notion of mesh thus finds its meaning in the metric of its elements.