AbstractAn interpolation function for triangular mid-edge finite elements is developed using an algebraic interpolation approach. A convenient method for deriving shape functions of serendipity type directly and explicitly arises aslo from the interpolation function proposed above
AbstractInterpolation schemes which assume prescribed values on the boundary of a triangle are prese...
AbstractIn the analysis of a finite element method (FEM) we can describe the shape of a given elemen...
Rational and polynomial 'smooth' interpolation schemes are derived which interpolate a function and ...
AbstractAn interpolation function for triangular mid-edge finite elements is developed using an alge...
An algorithm to calculate shape function values at specific points is presented. It applies to three...
An algorithm to calculate shape function values at specific points is presented. It applies to three...
This paper describes the formulation of shape functions and their derivatives for universal serendip...
Straight beam finite elements with greater than two nodes are used for edge stiening in plane stress...
For simplex finite elements, the native Lagrange family with arbitrarily placed nodes is presented i...
summary:The reduction and the concentration of the parameters determining an interpolation polynomia...
summary:The reduction and the concentration of the parameters determining an interpolation polynomia...
AbstractIn the analysis of a finite element method (FEM) we can describe the shape of a given elemen...
This paper presents a methodology for generating high-order shape functions for the complete family ...
The traditional approach to the basal functions construction in the finite element method reduces to...
AbstractHierarchies of C0 and C1 interpolations over triangles are presented. By means of a new inte...
AbstractInterpolation schemes which assume prescribed values on the boundary of a triangle are prese...
AbstractIn the analysis of a finite element method (FEM) we can describe the shape of a given elemen...
Rational and polynomial 'smooth' interpolation schemes are derived which interpolate a function and ...
AbstractAn interpolation function for triangular mid-edge finite elements is developed using an alge...
An algorithm to calculate shape function values at specific points is presented. It applies to three...
An algorithm to calculate shape function values at specific points is presented. It applies to three...
This paper describes the formulation of shape functions and their derivatives for universal serendip...
Straight beam finite elements with greater than two nodes are used for edge stiening in plane stress...
For simplex finite elements, the native Lagrange family with arbitrarily placed nodes is presented i...
summary:The reduction and the concentration of the parameters determining an interpolation polynomia...
summary:The reduction and the concentration of the parameters determining an interpolation polynomia...
AbstractIn the analysis of a finite element method (FEM) we can describe the shape of a given elemen...
This paper presents a methodology for generating high-order shape functions for the complete family ...
The traditional approach to the basal functions construction in the finite element method reduces to...
AbstractHierarchies of C0 and C1 interpolations over triangles are presented. By means of a new inte...
AbstractInterpolation schemes which assume prescribed values on the boundary of a triangle are prese...
AbstractIn the analysis of a finite element method (FEM) we can describe the shape of a given elemen...
Rational and polynomial 'smooth' interpolation schemes are derived which interpolate a function and ...