AbstractDirac’s delta functions enable simple and effective representations of point loads and singularities in a variety of structural problems, leading very often to elegant and otherwise unworkable closed-form solutions. This is the case of cracked beams under static loads, whose theoretical and practical significance has attracted in recent years the interest of many researchers. Nevertheless, analytical formulations currently available for this problem are not completely satisfactory, either in terms of computational efficiency, when the continuity conditions must be enforced with auxiliary equations, or in terms of physical consistency, when the singularities in the beam’s flexural rigidity are represented with Dirac’s delta functions...
In the design of the reinforced concrete beams loaded by the bending moment, it is assumed that the ...
A computationally efficient beam finite element is presented for the static and dynamic analysis of ...
AbstractThis paper deals with the identification of a single crack in a beam based on the knowledge ...
AbstractDirac’s delta functions enable simple and effective representations of point loads and singu...
Dirac’s delta functions enable simple and effective representations of point loads and singularities...
AbstractThe paper deals with the static analysis of pre-damaged Euler–Bernoulli beams with any numbe...
AbstractLocalized flexibility models of cracks enable one for simple and effective representation of...
The thesis presents a novel computational method for analysing the static and dynamic behaviour of a...
The paper deals with the static analysis of pre-damaged Euler-Bernoulli beams with any number of uni...
AbstractThe use of distributions (generalized functions) is a powerful tool to treat singularities i...
Localized flexibility models of cracks enable one for simple and effective representation of the beh...
AbstractCracks and other forms of concentrated damage can significantly affect the performance of sl...
AbstractThe model where the cracks are represented by means of internal hinges endowed with rotation...
AbstractIn this work the static stability of the uniform Timoshenko column in presence of multiple c...
We studied the implementation of a multi-stepped multi-cracked beam finite element for analysing bea...
In the design of the reinforced concrete beams loaded by the bending moment, it is assumed that the ...
A computationally efficient beam finite element is presented for the static and dynamic analysis of ...
AbstractThis paper deals with the identification of a single crack in a beam based on the knowledge ...
AbstractDirac’s delta functions enable simple and effective representations of point loads and singu...
Dirac’s delta functions enable simple and effective representations of point loads and singularities...
AbstractThe paper deals with the static analysis of pre-damaged Euler–Bernoulli beams with any numbe...
AbstractLocalized flexibility models of cracks enable one for simple and effective representation of...
The thesis presents a novel computational method for analysing the static and dynamic behaviour of a...
The paper deals with the static analysis of pre-damaged Euler-Bernoulli beams with any number of uni...
AbstractThe use of distributions (generalized functions) is a powerful tool to treat singularities i...
Localized flexibility models of cracks enable one for simple and effective representation of the beh...
AbstractCracks and other forms of concentrated damage can significantly affect the performance of sl...
AbstractThe model where the cracks are represented by means of internal hinges endowed with rotation...
AbstractIn this work the static stability of the uniform Timoshenko column in presence of multiple c...
We studied the implementation of a multi-stepped multi-cracked beam finite element for analysing bea...
In the design of the reinforced concrete beams loaded by the bending moment, it is assumed that the ...
A computationally efficient beam finite element is presented for the static and dynamic analysis of ...
AbstractThis paper deals with the identification of a single crack in a beam based on the knowledge ...