International audienceA general mathematical framework is proposed, in this paper, to define new quadrature rules in the context of BB-spline/NURBS-based isogeometric analysis. High order continuity across the elements within a patch turned out to have higher accuracy than C0C0 finite elements, as well as a better time efficiency. Unfortunately, a maximum regularity accentuates the shear and membrane locking in thick structural elements. The improved selective reduced integration schemes are given for uni-dimensional beam problems, with basis functions of order two and three, and can be easily extended to higher orders. The resulting BB-spline/NURBS finite elements are free from membrane and transverse shear locking. Moreover, no zero energ...
We initiate the study of efficient quadrature rules for NURBS-based isogeometric analysis. A rule of...
The exact description of the arbitrarily curved geometries, including conic sections, is an undeniab...
International audienceThe concept of isogeometric analysis is proposed. Basis functions generated fr...
International audienceA general mathematical framework is proposed, in this paper, to define new qua...
International audienceWe propose a new approach to construct selective and reduced integration rules...
In this thesis the geometrically exact 3D shear-flexible beam model is discretized with the Lagrangi...
International audienceHighlights • We model Reissner–Mindlin isogeometric plates and shells. • We ex...
We present different innovative formulations for shear deformable beams and plates exploiting the hi...
Isogeometric analysis has recently become very popular for the numerical modeling of structures and ...
In isogeometric analysis (IGA), the functions used to describe the CAD geometry (such as NURBS) are ...
A curved beam element based on the Timoshenko model and non-uniform rational B-splines (NURBS) inter...
Abstract: The Isogeometric analysis is a computational geometry based on a series of polynomial func...
Data transmission between finite element analysis (FEA) and computer-aided design (CAD) is ahuge bot...
We initiate the study of efficient quadrature rules for NURBS-based isogeometric analysis. A rule of...
The exact description of the arbitrarily curved geometries, including conic sections, is an undeniab...
International audienceThe concept of isogeometric analysis is proposed. Basis functions generated fr...
International audienceA general mathematical framework is proposed, in this paper, to define new qua...
International audienceWe propose a new approach to construct selective and reduced integration rules...
In this thesis the geometrically exact 3D shear-flexible beam model is discretized with the Lagrangi...
International audienceHighlights • We model Reissner–Mindlin isogeometric plates and shells. • We ex...
We present different innovative formulations for shear deformable beams and plates exploiting the hi...
Isogeometric analysis has recently become very popular for the numerical modeling of structures and ...
In isogeometric analysis (IGA), the functions used to describe the CAD geometry (such as NURBS) are ...
A curved beam element based on the Timoshenko model and non-uniform rational B-splines (NURBS) inter...
Abstract: The Isogeometric analysis is a computational geometry based on a series of polynomial func...
Data transmission between finite element analysis (FEA) and computer-aided design (CAD) is ahuge bot...
We initiate the study of efficient quadrature rules for NURBS-based isogeometric analysis. A rule of...
The exact description of the arbitrarily curved geometries, including conic sections, is an undeniab...
International audienceThe concept of isogeometric analysis is proposed. Basis functions generated fr...