In this paper we present a novel algorithm for adaptive mesh refinement in computational physics meshes in a distributed memory parallel setting. The proposed method is developed for nodally based parallel domain partitions where the nodes of the mesh belong to a single processor, whereas the elements can belong to multiple processors. Some of the main features of the algorithm presented in this paper are its capability of handling multiple types of elements in two and three dimensions (triangular, quadrilateral, tetrahedral, and hexahedral), the small amount of memory required per processor, and the parallel scalability up to thousands of processors. The presented algorithm is also capable of dealing with nonbalanced hierarchical refinemen...
AbstractWe present a new method for parallelization of adaptive mesh refinement called Concurrent St...
The efficient use of computational resources while maintaining a certain level of solution accuracy ...
Over recent years, Adaptive Mesh Refinement (AMR) algorithms which dynamically match the local resol...
No separate or additional fees are collected for access to or distribution of the work.In this paper...
Dynamic mesh adaption on unstructured grids is a powerful tool for efficiently computing unsteady pr...
To enable the solution of large-scale applications on distributed memory architectures, we are desig...
ISBN 978-84-942844-7-2International audienceThis paper presents a parallel remeshing algorithm for d...
Mesh adaption is a powerful tool for efficient unstructured-grid computations but causes load imbala...
Computational methods based on the use of adaptively constructed nonuniform meshes reduce the amount...
dient of our method is a technique for the estimation of the size and the element distribution of th...
The ability to dynamically adapt an unstructured mesh is a powerful tool for solving computational p...
International audienceWe present a parallel unstructured mesh adaptation algorithm based on iterativ...
International audienceModern parallel architectures require applications to generate massive paralle...
dissertationSolutions to Partial Di erential Equations (PDEs) are often computed by discretizing the...
We present a new approach to the use of parallel computers with adaptive finite element methods. Thi...
AbstractWe present a new method for parallelization of adaptive mesh refinement called Concurrent St...
The efficient use of computational resources while maintaining a certain level of solution accuracy ...
Over recent years, Adaptive Mesh Refinement (AMR) algorithms which dynamically match the local resol...
No separate or additional fees are collected for access to or distribution of the work.In this paper...
Dynamic mesh adaption on unstructured grids is a powerful tool for efficiently computing unsteady pr...
To enable the solution of large-scale applications on distributed memory architectures, we are desig...
ISBN 978-84-942844-7-2International audienceThis paper presents a parallel remeshing algorithm for d...
Mesh adaption is a powerful tool for efficient unstructured-grid computations but causes load imbala...
Computational methods based on the use of adaptively constructed nonuniform meshes reduce the amount...
dient of our method is a technique for the estimation of the size and the element distribution of th...
The ability to dynamically adapt an unstructured mesh is a powerful tool for solving computational p...
International audienceWe present a parallel unstructured mesh adaptation algorithm based on iterativ...
International audienceModern parallel architectures require applications to generate massive paralle...
dissertationSolutions to Partial Di erential Equations (PDEs) are often computed by discretizing the...
We present a new approach to the use of parallel computers with adaptive finite element methods. Thi...
AbstractWe present a new method for parallelization of adaptive mesh refinement called Concurrent St...
The efficient use of computational resources while maintaining a certain level of solution accuracy ...
Over recent years, Adaptive Mesh Refinement (AMR) algorithms which dynamically match the local resol...