Abstract In this work, a comparative study of different simplified methods and nonlinear finite element (FE) models used for calculating short-term deflections (vertical displacements of the longitudinal axis) in continuous reinforced concrete (RC) beams, under service loads, is performed. The simplified methods employed are the one proposed by Branson and the bilinear method recommended by the European Code CEB - Design Manual on Cracking and Deformations. Two finite element models are utilized: the first one with frame elements in which material nonlinearities are considered along the element and its cross section divided into layers, by using of constitutive relationships for steel and concrete, while the second one utilizes beam element...
[[abstract]]A numerical technique has been proposed for the long-term deformation analysis of reinfo...
This work discusses and compares different numerical approaches that can be adopted for the analysi...
Abstract In this work, a two-dimensional finite element (FE) model for physical and geometric nonlin...
AbstractThe paper presents an advanced methodology for calculating deflections of reinforced concret...
AbstractThe paper presents a theoretical and experimental analysis of deflections of reinforced conc...
A nonlinear finite element program to simulate the behavior of reinforced concrete (RC) members unde...
AbstractThe paper presents an advanced methodology for calculating deflections of statically indeter...
This paper presents a finite element (FE) method of modelling reinforced concrete beams. The propose...
International audienceThe macro-finite-element (MFE) modeling proposed in this paper is dedicated to...
This paper presents a finite element (FE) model for predicting the nonlinear response and behavior o...
Purpose: A nonlinear finite element (FE) beam-column model for the analysis of reinforced concrete (...
The finite element (FE) method is a powerful technique that can provide numerical solutions to the r...
In steel and concrete composite beams, the incomplete interaction between steel profile and concrete...
The object of this research is to study the effects of nonlinear behavior of partially prestressed c...
In the present study, an analysis of plain and reinforced concrete beams under monotonic loading was...
[[abstract]]A numerical technique has been proposed for the long-term deformation analysis of reinfo...
This work discusses and compares different numerical approaches that can be adopted for the analysi...
Abstract In this work, a two-dimensional finite element (FE) model for physical and geometric nonlin...
AbstractThe paper presents an advanced methodology for calculating deflections of reinforced concret...
AbstractThe paper presents a theoretical and experimental analysis of deflections of reinforced conc...
A nonlinear finite element program to simulate the behavior of reinforced concrete (RC) members unde...
AbstractThe paper presents an advanced methodology for calculating deflections of statically indeter...
This paper presents a finite element (FE) method of modelling reinforced concrete beams. The propose...
International audienceThe macro-finite-element (MFE) modeling proposed in this paper is dedicated to...
This paper presents a finite element (FE) model for predicting the nonlinear response and behavior o...
Purpose: A nonlinear finite element (FE) beam-column model for the analysis of reinforced concrete (...
The finite element (FE) method is a powerful technique that can provide numerical solutions to the r...
In steel and concrete composite beams, the incomplete interaction between steel profile and concrete...
The object of this research is to study the effects of nonlinear behavior of partially prestressed c...
In the present study, an analysis of plain and reinforced concrete beams under monotonic loading was...
[[abstract]]A numerical technique has been proposed for the long-term deformation analysis of reinfo...
This work discusses and compares different numerical approaches that can be adopted for the analysi...
Abstract In this work, a two-dimensional finite element (FE) model for physical and geometric nonlin...