Engineering applications in conventional numerical modeling are investigated by domain decomposition techniques because, generally, structural components do not have a regular shape. The most common and versatile numerical approach, in this regard, is the Finite Element (FE) method, which uses low order polynomials and the variational formulation for the solution of the differential problem. In contrast with the classic approach, the present paper shows a strong form collocation method for solving laminated composite plates wherein discontinuities arise. Both approaches need mapping technique for converting arbitrarily shaped elements into the computational space. Since the present strong form technique can deal with variable order approxim...
The conceptual ideas behind isogeometric analysis (IGA) are aimed at unifying computer aided design ...
A novel approach which combines isogeometric collocation and an equilibrium-based stress recovery te...
Isogeometric collocation has emerged as an efficient numerical technique for solving boundary value ...
Engineering applications in conventional numerical modeling are investigated by domain decomposition...
In computational mechanics Finite Elements (FE) are the most common and versatile tool for studying ...
A numerical solution is sought for many engineering applications since it is not always possible to ...
Recently it has been proven that differential quadrature can be applied to arbitrarily shaped struct...
A numerical approach is developed to deal with arbitrarily shaped structures. Two different methodol...
Composite structures have been widely used in several engineering applications nowadays. Their use i...
The Differential Quadrature (DQ) method is a numerical technique for the solution of initial and bou...
This paper provides a new technique for solving the static analysis of arbitrarily shaped composite ...
This paper provides a new technique for solving the static analysis of arbitrarily shaped composite ...
It is well known that many applications in several fields of engineering cannot be solved analytical...
The conceptual ideas behind isogeometric analysis (IGA) are aimed at unifying computer aided design ...
A novel approach which combines isogeometric collocation and an equilibrium-based stress recovery te...
Isogeometric collocation has emerged as an efficient numerical technique for solving boundary value ...
Engineering applications in conventional numerical modeling are investigated by domain decomposition...
In computational mechanics Finite Elements (FE) are the most common and versatile tool for studying ...
A numerical solution is sought for many engineering applications since it is not always possible to ...
Recently it has been proven that differential quadrature can be applied to arbitrarily shaped struct...
A numerical approach is developed to deal with arbitrarily shaped structures. Two different methodol...
Composite structures have been widely used in several engineering applications nowadays. Their use i...
The Differential Quadrature (DQ) method is a numerical technique for the solution of initial and bou...
This paper provides a new technique for solving the static analysis of arbitrarily shaped composite ...
This paper provides a new technique for solving the static analysis of arbitrarily shaped composite ...
It is well known that many applications in several fields of engineering cannot be solved analytical...
The conceptual ideas behind isogeometric analysis (IGA) are aimed at unifying computer aided design ...
A novel approach which combines isogeometric collocation and an equilibrium-based stress recovery te...
Isogeometric collocation has emerged as an efficient numerical technique for solving boundary value ...