AbstractOn a model of clamped beam problem we study a finite element method with approximate constraints and the corresponding penalty function approach. By a small perturbation analysis we show that the rotation is independent from the penalization. This method allows us to use simple c0 elements, hence we can compute approximate solutions to obstacle problems. The one dimensional nature of all the results is underlined and the extension of this FEM to flexible pipe lines is indicated
We consider a class of two-dimensional problems in classical linear elasticity for which material ov...
A large class of problems in elasticity needs a description by several strain fields. One or more of...
A one-dimensional mechanical model of curved laminated beams is presented. The different laminae for...
AbstractOn a model of clamped beam problem we study a finite element method with approximate constra...
A clearer insight into the 'shear locking' phenomenon, which appears in the development of C0 contin...
Although C' continuous beam, plate and shell elements have13; become very popular, a simple understa...
Although Co continuous beam, plate and shell elements have become very popular, a simple understandi...
Although C° continuous beam, plate and shell elements have become very popular, a simple understandi...
The present work demonstrates how computations in finite element method can be interpreted as orthog...
We study finite element methods for the displacement obstacle problem of clamped Kirchhoff plates. A...
The Rayleigh-Ritz Method together with the Penalty Function Method is used to investigate the use of...
In this paper, the authors discuss problems that may occur in the finite element analysis of composi...
The present paper is dedicated to presentation and energy verification of the methods of stabilizati...
The present paper is dedicated to presentation and energy verification of the methods of stabilizati...
This paper presents a simplified finite element (FE) methodology for solving accurately beam models ...
We consider a class of two-dimensional problems in classical linear elasticity for which material ov...
A large class of problems in elasticity needs a description by several strain fields. One or more of...
A one-dimensional mechanical model of curved laminated beams is presented. The different laminae for...
AbstractOn a model of clamped beam problem we study a finite element method with approximate constra...
A clearer insight into the 'shear locking' phenomenon, which appears in the development of C0 contin...
Although C' continuous beam, plate and shell elements have13; become very popular, a simple understa...
Although Co continuous beam, plate and shell elements have become very popular, a simple understandi...
Although C° continuous beam, plate and shell elements have become very popular, a simple understandi...
The present work demonstrates how computations in finite element method can be interpreted as orthog...
We study finite element methods for the displacement obstacle problem of clamped Kirchhoff plates. A...
The Rayleigh-Ritz Method together with the Penalty Function Method is used to investigate the use of...
In this paper, the authors discuss problems that may occur in the finite element analysis of composi...
The present paper is dedicated to presentation and energy verification of the methods of stabilizati...
The present paper is dedicated to presentation and energy verification of the methods of stabilizati...
This paper presents a simplified finite element (FE) methodology for solving accurately beam models ...
We consider a class of two-dimensional problems in classical linear elasticity for which material ov...
A large class of problems in elasticity needs a description by several strain fields. One or more of...
A one-dimensional mechanical model of curved laminated beams is presented. The different laminae for...