Session - Geometric modeling 1In recent years, heterogeneous materials have attracted a lot of attention for their superior properties over homogeneous materials. To design, analyze, and optimize the behavior of heterogeneous materials, the finite element method (FEM) as an effective numerical method has been immensely utilized. Although tremendous efforts are devoted to finite element analysis (FEA) of heterogeneous materials in the past two decades, little attention has been focused on mesh generation, which is an essential part of the FEA procedure. For the sake of simplicity, classic mesh generation methods targeted on homogeneous objects are often directly applied into the domain of heterogeneous objects. The meshes generated by these ...
A computational homogenization of heterogeneous solids is presented based on the data-driven approac...
In most engineering applications, it is necessary to conduct analyses, eg thermal, stress or flow an...
Tetrahedral meshes are often used for simulating deformable objects. Unlike engineering disciplines ...
In this paper, a step-wise tetrahedral mesh generation method is introduced to solve the adaptive me...
Adaptive meshing of 2D planar regions, curved surfaces as well as 3D volumes has been extensively st...
Conventional solid modeling systems have focused on developing homogeneous models of physical object...
This paper describes an automatic and efficient approach to construct unstructured tetrahedral and h...
Solid/Geometric Modeling has been a crucial technology aiding automation in design and manufacturing...
The use of finite element analysis methods is increasing in all kinds of engineering applications. N...
The goal of this work is to enable automated thermal and mechanical finite element analysis of heter...
There appear more critical requirements for special functions of components/products in various area...
Four different automatic mesh generators capable of generating either triangular meshes or hybrid me...
Abstract: This paper describes an approach to construct unstructured tetrahedral and hexahedral mesh...
International audienceThis monograph provides a concise overview of the main theoretical and numeric...
Most 3D mesh generation techniques require simplification and mesh improvement stages to prepare a t...
A computational homogenization of heterogeneous solids is presented based on the data-driven approac...
In most engineering applications, it is necessary to conduct analyses, eg thermal, stress or flow an...
Tetrahedral meshes are often used for simulating deformable objects. Unlike engineering disciplines ...
In this paper, a step-wise tetrahedral mesh generation method is introduced to solve the adaptive me...
Adaptive meshing of 2D planar regions, curved surfaces as well as 3D volumes has been extensively st...
Conventional solid modeling systems have focused on developing homogeneous models of physical object...
This paper describes an automatic and efficient approach to construct unstructured tetrahedral and h...
Solid/Geometric Modeling has been a crucial technology aiding automation in design and manufacturing...
The use of finite element analysis methods is increasing in all kinds of engineering applications. N...
The goal of this work is to enable automated thermal and mechanical finite element analysis of heter...
There appear more critical requirements for special functions of components/products in various area...
Four different automatic mesh generators capable of generating either triangular meshes or hybrid me...
Abstract: This paper describes an approach to construct unstructured tetrahedral and hexahedral mesh...
International audienceThis monograph provides a concise overview of the main theoretical and numeric...
Most 3D mesh generation techniques require simplification and mesh improvement stages to prepare a t...
A computational homogenization of heterogeneous solids is presented based on the data-driven approac...
In most engineering applications, it is necessary to conduct analyses, eg thermal, stress or flow an...
Tetrahedral meshes are often used for simulating deformable objects. Unlike engineering disciplines ...