책 이미지
책 정보
· 분류 : 외국도서 > 컴퓨터 > 컴퓨터 공학
· ISBN : 9783030139940
· 쪽수 : 490쪽
· 출판일 : 2020-08-14
목차
Part 1: High-order Adapted Meshes.- P2 Mesh Optimization Operators.- Isometric Embedding of Curvilinear Meshes Defined on Riemannian Metric Spaces.- Defining a Stretching and Alignment Aware Quality Measure for Linear and Curved 2D Meshes.- Curvilinear Mesh Adaptation.- Part 2 : Mesh and Geometry Blocks, Hex mesh generation.- A 44-Element Mesh of Schneiders' Pyramid: Bounding the Difficulty of Hex-Meshing Problems.- Representing Three-dimensional Cross Fields Using 4th Order Tensors.- Medial Axis Based Bead Feature Recognition for Automotive Body Panel Meshing.- An Angular Method with Position Control for Block Mesh Squareness Improvement.- Dual Surface Based Approach to Block Decomposition of Solid Models.- Automatic Blocking of Shapes using Evolutionary Algorithm.- Multi-block mesh refinement by adding mesh singularities.- Part 3: Simplicial Meshes.- Tuned Terminal Triangles Centroid Delaunay Algorithm for Quality Triangulation.- Local Bisection for Conformal Re?nement of Unstructured 4D Simplicial Meshes.- A Construction of Anisotropic Meshes Based on Quasi Conformal Mapping.- Terminal Star Operations Algorithm for Tetrahedral Mesh Improvement.- Part 4: Curved High-Order Meshes.- Towards Simulation-Driven Optimization of High-Order Meshes by the Target-Matrix Optimization Paradigm.- Curving for Viscous Meshes.- An Angular Approach to Untangling High-Order Curvilinear Triangular Meshes.- Imposing Boundary Conditions to Match a CAD Virtual Geometry for the Mesh Curving Problem.- Part 5: Parallel and Fast Meshing Methods.- Exact Fast Parallel Intersection of Large 3-D Triangular Meshes.- Performance Comparison and Workload Analysis of Mesh Untangling and Smoothing Algorithms.- Accurate Manycore-Accelerated Manifold Surface Remesh Kernels.- Parallel Performance Model for Vertex Repositioning Algorithms and Application to Mesh Partitioning.- Discrete Mesh Optimization on GPU.- Mesh Morphing for Turbomachinery Applications Using Radial Basis Functions.














