Efficient functional derivative formulas suitable for optimal discretization based refinement criteria are developed for 3-D adaptive finite element analysis (FEA) with vector tetrahedra. Results for generalized vector Helmholtz systems are derived directly from first principles, and confirmed numerically through fundamental benchmark evaluations. Practical adaption applications are illustrated for selected FEA refinement models
This is a survey on the theory of adaptive finite element methods (AFEM), which are fundamental in m...
The increasing demand to understand the behaviour of electromagnetic waves in many real life problem...
summary:We review some numerical analysis of an adaptive finite element method (AFEM) for a class o...
One of the primary objectives of adaptive finite element analysis research is to determine how to ef...
One of the primary objectives of adaptive finite element analysis research is to determine how to ef...
The potential benefits of employing optimal discretization-based refinement criteria to achieve load...
Finite-element solution efficiency and accuracy can be directly affected by mesh quality. When emplo...
The potential advantages and related costs of using second-order functional mesh discretization deri...
This thesis is concerned with the analysis and design of adaptive finite element methods for a varie...
In the present work, as an improvement of the previous proposed methods, the author studies an h and...
In this paper it is presented an approximate direct solver for systems of linear equations arising f...
In the present work, as an improvement of the previous proposed methods, the author studies an h and...
The finite element method (FEM) is a popular method in computational electromagnetics, and tetrahedr...
Automatic refinement finite element analyses were carried out employing three different-order tetrah...
A method for determining regions of a finite element method to be refined is presented. The calculat...
This is a survey on the theory of adaptive finite element methods (AFEM), which are fundamental in m...
The increasing demand to understand the behaviour of electromagnetic waves in many real life problem...
summary:We review some numerical analysis of an adaptive finite element method (AFEM) for a class o...
One of the primary objectives of adaptive finite element analysis research is to determine how to ef...
One of the primary objectives of adaptive finite element analysis research is to determine how to ef...
The potential benefits of employing optimal discretization-based refinement criteria to achieve load...
Finite-element solution efficiency and accuracy can be directly affected by mesh quality. When emplo...
The potential advantages and related costs of using second-order functional mesh discretization deri...
This thesis is concerned with the analysis and design of adaptive finite element methods for a varie...
In the present work, as an improvement of the previous proposed methods, the author studies an h and...
In this paper it is presented an approximate direct solver for systems of linear equations arising f...
In the present work, as an improvement of the previous proposed methods, the author studies an h and...
The finite element method (FEM) is a popular method in computational electromagnetics, and tetrahedr...
Automatic refinement finite element analyses were carried out employing three different-order tetrah...
A method for determining regions of a finite element method to be refined is presented. The calculat...
This is a survey on the theory of adaptive finite element methods (AFEM), which are fundamental in m...
The increasing demand to understand the behaviour of electromagnetic waves in many real life problem...
summary:We review some numerical analysis of an adaptive finite element method (AFEM) for a class o...