We introduce a new algorithm for generating tetrahedral meshes that conform to physical boundaries in volumetric domains consisting of multiple materials. The proposed method allows for an arbitrary number of materials, produces high-quality tetrahedral meshes with upper and lower bounds on dihedral angles, and guarantees geometric fidelity. Moreover, the method is combinatoric so its implementation enables rapid mesh construction. These meshes are structured in a way that also allows grading, to reduce element counts in regions of homogeneity. Additionally, we provide proofs showing that both element quality and geometric fidelity are bounded using this approach
This paper presents a tetrahedral mesh generation method for numerically solving partial differentia...
Abstract We present an algorithm for the construction of locally adapted conformal tetrahedral mesh...
Most 3D mesh generation techniques require simplification and mesh improvement stages to prepare a t...
pre-printWe introduce a new algorithm for generating tetrahedral meshes that conform to physical bou...
Three-dimensional meshes are frequently used to perform physical simulations in sci-ence and enginee...
We present a novel algorithm for generating three-dimensional unstructured tetrahedral meshes of mul...
AbstractWe propose a new strategy for boundary conforming meshing that decouples the problem of buil...
Abstract: This paper describes an approach to construct unstructured tetrahedral and hexahedral mesh...
We present a practical approach to isotropic tetrahedral meshing of 3D domains bounded by piecewise ...
We present a novel algorithm for generating three-dimensional unstructured tetrahedral meshes for bi...
. We present an algorithm for the construction of locally adapted conformal tetrahedral meshes. The ...
International audienceWe propose a practical iterative remeshing algorithm for multi-material tetrah...
This paper describes an automatic and efficient approach to construct unstructured tetrahedral and h...
We describe an algorithm which generates tetrahedral decomposition of a general solid body, whose su...
Most algorithms for guaranteed-quality tetrahedral mesh generation create Delaunay meshes. Delaunay ...
This paper presents a tetrahedral mesh generation method for numerically solving partial differentia...
Abstract We present an algorithm for the construction of locally adapted conformal tetrahedral mesh...
Most 3D mesh generation techniques require simplification and mesh improvement stages to prepare a t...
pre-printWe introduce a new algorithm for generating tetrahedral meshes that conform to physical bou...
Three-dimensional meshes are frequently used to perform physical simulations in sci-ence and enginee...
We present a novel algorithm for generating three-dimensional unstructured tetrahedral meshes of mul...
AbstractWe propose a new strategy for boundary conforming meshing that decouples the problem of buil...
Abstract: This paper describes an approach to construct unstructured tetrahedral and hexahedral mesh...
We present a practical approach to isotropic tetrahedral meshing of 3D domains bounded by piecewise ...
We present a novel algorithm for generating three-dimensional unstructured tetrahedral meshes for bi...
. We present an algorithm for the construction of locally adapted conformal tetrahedral meshes. The ...
International audienceWe propose a practical iterative remeshing algorithm for multi-material tetrah...
This paper describes an automatic and efficient approach to construct unstructured tetrahedral and h...
We describe an algorithm which generates tetrahedral decomposition of a general solid body, whose su...
Most algorithms for guaranteed-quality tetrahedral mesh generation create Delaunay meshes. Delaunay ...
This paper presents a tetrahedral mesh generation method for numerically solving partial differentia...
Abstract We present an algorithm for the construction of locally adapted conformal tetrahedral mesh...
Most 3D mesh generation techniques require simplification and mesh improvement stages to prepare a t...