We propose a software design for the efficient and flexible handling of the building blocks used in high performance finite element simulations, through the pervasive use of parameters (parsed through parameter files). In the proposed design, all the building blocks of a high performance finite element program are built according to the command and composite design patterns. We present version 1.1.0 of the deal2lkit (deal.II ToolKit) library, which is a collection of modules and classes aimed at providing high level interfaces to several deal.II classes and functions, obeying the command and composite design patterns, and controlled via parameter files
The solution of the basic equations relating stiffness, displacement and force in finite element ana...
Finding numerical solutions to partial differential equations (PDEs) is an essential task in the dis...
How do we build maintainable, robust, and performance-portable scientific applications? This thesi...
We propose a software design for the efficient and flexible handling of the building blocks used in ...
Scientific computing has become of more and more importance for modern research. Especially the fini...
deal.II version 8.3 was released August 1, 2015. This paper provides an overview of the new features...
The ever-increasing availability of finite element (FE)-related software tools puts pressure on the ...
An overview of the software design and data abstraction decisions chosen for deal.II, a general pu...
This source code contains an implementation of the locally modified finite element method first prop...
An overview of the deal.II library is given. This library provides the functionality needed by moder...
An overview of the software design and data abstraction decisions chosen for deal.II, a general purp...
Abstract. This paper provides an overview of the new features of the finite element library deal.II ...
Abstract. This paper provides an overview of the new features of the finite element library deal.II ...
We present the ONELAB software, a lightweight open source toolkit to interface finite element and re...
peer reviewedThis paper presents and exercises a general structure for an object-oriented-enriched f...
The solution of the basic equations relating stiffness, displacement and force in finite element ana...
Finding numerical solutions to partial differential equations (PDEs) is an essential task in the dis...
How do we build maintainable, robust, and performance-portable scientific applications? This thesi...
We propose a software design for the efficient and flexible handling of the building blocks used in ...
Scientific computing has become of more and more importance for modern research. Especially the fini...
deal.II version 8.3 was released August 1, 2015. This paper provides an overview of the new features...
The ever-increasing availability of finite element (FE)-related software tools puts pressure on the ...
An overview of the software design and data abstraction decisions chosen for deal.II, a general pu...
This source code contains an implementation of the locally modified finite element method first prop...
An overview of the deal.II library is given. This library provides the functionality needed by moder...
An overview of the software design and data abstraction decisions chosen for deal.II, a general purp...
Abstract. This paper provides an overview of the new features of the finite element library deal.II ...
Abstract. This paper provides an overview of the new features of the finite element library deal.II ...
We present the ONELAB software, a lightweight open source toolkit to interface finite element and re...
peer reviewedThis paper presents and exercises a general structure for an object-oriented-enriched f...
The solution of the basic equations relating stiffness, displacement and force in finite element ana...
Finding numerical solutions to partial differential equations (PDEs) is an essential task in the dis...
How do we build maintainable, robust, and performance-portable scientific applications? This thesi...