International audienceIn this work we propose some generic concepts to design a specific language for FV discretizations of PDEs allowing a fast prototyping of industrial and research codes. We shall focus on the capability of such concepts to describe and solve multi-physics problems. These concepts will be validated on a model problem that we will implement and compare with its counterpart implemented using the FE Life framework, see [5, 6]
Abstract—This paper presents an ongoing effort to develop a domain specific language that would simp...
LifeV is a library for the finite element (FE) solution of partial differential equations in one, tw...
Developing complex scientific applications on high performance systems requires both domain knowledg...
Industrial simulation software has to manage: (i) the complexity of the underlying physical models,u...
The methods considered in the 7th conference on "Finite Volumes for Complex Applications" (Berlin, J...
Nowadays, some frameworks like Arcane and Dune offer a number of advanced tools to deal with the com...
This book presents a systematic methodology for the development of parallel multi-physics models and...
How do we build maintainable, robust, and performance-portable scientific applications? This thesi...
summary:In this paper we describe PDELab, an extensible C++ template library for finite element meth...
This thesis is about the development of RPL-Shell, a DSL-based tool aiming to facilitate the design ...
The definitive version is published in H. Bowman & J. Derrick (Eds.), Formal methods for distributed...
In this paper we propose a technique for formalizing Finite Difference Schemes (FDSs) physical model...
The finite volume method is a popular method for the solution of systems of partial differential equ...
Starting from an abstract mathematical notion of discrete function spaces and operators, we derive a...
Physical models using finite difference schemes (FDS) are typically implemented using mutable data s...
Abstract—This paper presents an ongoing effort to develop a domain specific language that would simp...
LifeV is a library for the finite element (FE) solution of partial differential equations in one, tw...
Developing complex scientific applications on high performance systems requires both domain knowledg...
Industrial simulation software has to manage: (i) the complexity of the underlying physical models,u...
The methods considered in the 7th conference on "Finite Volumes for Complex Applications" (Berlin, J...
Nowadays, some frameworks like Arcane and Dune offer a number of advanced tools to deal with the com...
This book presents a systematic methodology for the development of parallel multi-physics models and...
How do we build maintainable, robust, and performance-portable scientific applications? This thesi...
summary:In this paper we describe PDELab, an extensible C++ template library for finite element meth...
This thesis is about the development of RPL-Shell, a DSL-based tool aiming to facilitate the design ...
The definitive version is published in H. Bowman & J. Derrick (Eds.), Formal methods for distributed...
In this paper we propose a technique for formalizing Finite Difference Schemes (FDSs) physical model...
The finite volume method is a popular method for the solution of systems of partial differential equ...
Starting from an abstract mathematical notion of discrete function spaces and operators, we derive a...
Physical models using finite difference schemes (FDS) are typically implemented using mutable data s...
Abstract—This paper presents an ongoing effort to develop a domain specific language that would simp...
LifeV is a library for the finite element (FE) solution of partial differential equations in one, tw...
Developing complex scientific applications on high performance systems requires both domain knowledg...