The paper presents an algorithm of volume meshing by using the Advancing Front Technique (AFT) combined with the Delaunay Triangulation. The tetrahedronization starts with the surface mesh with the elements oriented towards the interior 3-D domain. The main idea is based upon AFT, with simultaneous points insertion and tetrahedra creation. The characteristic feature of the approach is the part of AFT in the case, when a new calculated point on the current face of the front is not accepted then the existing point in the front is found to create a new tetrahedron by using the Delaunay triangulation on the given set of points. Additionally the algorithm takes a mesh size function into account
ABSTRACT 'Ifv A new algorithm is described for generating an unstructured mesh about ar-tT&apos...
The aim of this investigation is the proposal of 3D mesh generation method based on the Delaunay tri...
The aim of this investigation is the proposal of 3D mesh generation method based on the Delaunay tri...
The paper presents an algorithm of volume meshing by using the Advancing Front Technique (AFT) combi...
The paper presents an algorithm of volume meshing by using the Advancing Front Technique (AFT) combi...
The whole process of mesh generation is presented in detail. Advancing front technique (AFT) is pro-...
Existing methods of automatic mesh generation for 3D solid objects are reviewed. Although the 3D Del...
A method of unstructured technical mesh generation for general three-dimensional domains is presente...
A method of unstructured technical mesh generation for general three-dimensional domains is presente...
AbstractAn extension of the restricted Delaunay-refinement algorithm for three-dimensional tetrahedr...
A new unstructured triangular mesh generator, DBMesh, is described, incorporating both the Delaunay ...
A new unstructured triangular mesh generator, DBMesh, is described, incorporating both the Delaunay ...
A new unstructured triangular mesh generator, DBMesh, is described, incorporating both the Delaunay ...
A new algorithm is described for generating an unstructured mesh about an arbitrary two-dimensional ...
ABSTRACT 'Ifv A new algorithm is described for generating an unstructured mesh about ar-tT&apos...
ABSTRACT 'Ifv A new algorithm is described for generating an unstructured mesh about ar-tT&apos...
The aim of this investigation is the proposal of 3D mesh generation method based on the Delaunay tri...
The aim of this investigation is the proposal of 3D mesh generation method based on the Delaunay tri...
The paper presents an algorithm of volume meshing by using the Advancing Front Technique (AFT) combi...
The paper presents an algorithm of volume meshing by using the Advancing Front Technique (AFT) combi...
The whole process of mesh generation is presented in detail. Advancing front technique (AFT) is pro-...
Existing methods of automatic mesh generation for 3D solid objects are reviewed. Although the 3D Del...
A method of unstructured technical mesh generation for general three-dimensional domains is presente...
A method of unstructured technical mesh generation for general three-dimensional domains is presente...
AbstractAn extension of the restricted Delaunay-refinement algorithm for three-dimensional tetrahedr...
A new unstructured triangular mesh generator, DBMesh, is described, incorporating both the Delaunay ...
A new unstructured triangular mesh generator, DBMesh, is described, incorporating both the Delaunay ...
A new unstructured triangular mesh generator, DBMesh, is described, incorporating both the Delaunay ...
A new algorithm is described for generating an unstructured mesh about an arbitrary two-dimensional ...
ABSTRACT 'Ifv A new algorithm is described for generating an unstructured mesh about ar-tT&apos...
ABSTRACT 'Ifv A new algorithm is described for generating an unstructured mesh about ar-tT&apos...
The aim of this investigation is the proposal of 3D mesh generation method based on the Delaunay tri...
The aim of this investigation is the proposal of 3D mesh generation method based on the Delaunay tri...