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Alessandro Contento

Other affiliations: University of L'Aquila
Bio: Alessandro Contento is an academic researcher from University of Illinois at Urbana–Champaign. The author has contributed to research in topics: Structural engineering & Rigid body. The author has an hindex of 10, co-authored 33 publications receiving 478 citations. Previous affiliations of Alessandro Contento include University of L'Aquila.

Papers
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Journal ArticleDOI
TL;DR: In this paper, the authors focused their attention on understanding the behavior of these buildings during the earthquake events that repeatedly struck the region of L’Aquila during the seismic sequence of April 2009.

73 citations

Journal ArticleDOI
TL;DR: In this paper, the authors analyzed the influence of base isolation on the behavior of rigid blocks representing works of art, and found that base isolation can be more effective for rigid bodies with geometrical parameters similar to those of real works.

68 citations

Journal ArticleDOI
TL;DR: In this article, the influence of base isolation on the behaviour of a work of art has been analyzed, where a non-symmetric rigid body is modelled with a base that is connected to a visco-elastic device, representing the passive control system.
Abstract: In this paper the influence of base isolation on the behaviour of a work of art has been analysed. To make things more realistic, the work of art has been modelled with a non-symmetrical rigid body, sitting on a base that is connected to a visco-elastic device, which represents the passive control system. To prevent the breaking of the isolation device, security stops have been introduced to limit the displacement of the oscillating base to a maximum safety value. All analyses have been carried out comparing the behaviour of the non-isolated and the isolated non-symmetric rigid body subject to impulsive and seismic excitations. The analysis is particularly focused on the effects of the eccentricity of the rigid body and on the presence of the security stops. Generally, base isolation improves the behaviour of the system while the presence of an eccentricity makes the performance of the system worse with respect to the symmetric rigid body. Moreover the security stops, although they preserve the isolator devices, cause a worsening in the performance of the systems. Copyright © 2008 John Wiley & Sons, Ltd.

57 citations

Journal ArticleDOI
TL;DR: In this article, a model of a 3D rigid body with a rectangular base, able to rock around a side or a vertex of the base is developed, and the equations of motion are obtained through the general balance principle.
Abstract: A model of 3D rigid body with a rectangular base, able to rock around a side or a vertex of the base is developed. Eccentricity of the center of mass with respect to the geometrical center of the body is also considered. The equations of motion are obtained through the general balance principle. A one-sine pulse base excitation is applied to the body in different directions. The analyses are conducted with the aim to highlight the role of the period, the amplitude and the direction of the external excitation. In significant ranges of the previous parameters, the results obtained with a bi-dimensional model, that does not consider the 3D rocking motions on a vertex of the base, are not in favor of safety. It is found, in fact, that in several conditions the overturning of the 3D block takes place for amplitudes of excitation smaller than those able to overturn the 3D block.

56 citations

Journal ArticleDOI
TL;DR: In this paper, the influence of base isolation on the behavior of rigid blocks which represent works of art has been analyzed and two types of security stops have been considered and their effects on the system investigated, one is able to prevent isolation device breakage by limiting the displacement of the oscillating base to a maximum safety value, the others are introduced to prevent the rigid body from falling off the base.

49 citations


Cited by
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01 Dec 2012
TL;DR: In this paper, the authors present the results of a postdoctoral fellowship program at the U.S. National Oceanic and Atmospheric Administration (NOAA) in the field of ocean science.
Abstract: United States. National Oceanic and Atmospheric Administration (Postdoctoral Fellowship Program)

458 citations

Journal Article
TL;DR: In this paper, the dynamic behavior of rigid-block structures resting on a rigid foundation subjected to horizontal harmonic excitation is examined, and several possible modes of steady-state response are detected, and analytical procedures are developed for determining the amplitudes of the predominant modes and for performing stability analyses.
Abstract: The dynamic behavior of rigid-block structures resting on a rigid foundation subjected to horizontal harmonic excitation is examined. For slender structures, the nonlinear equation of motion is approximated by a piecewise linear equation. Using this approximation for an initially quiescent structure, safe or no-toppling and unsafe regions are identified in an excitation amplitude versus excitation frequency plane. Furthermore, several possible modes of steady-state response are detected, and analytical procedures are developed for determining the amplitudes of the predominant modes and for performing stability analyses. It is shown that the produced stability diagrams can be beneficial to assessing the toppling potential of a rigid-block structure under a given amplitude-frequency combination of harmonic excitation; in this manner the integration of the equation of motion is circumvented.

248 citations

01 Jan 2000
TL;DR: In this article, the authors present theoretical descriptions of the key phenomena that govern the behavior of composite framed structures in fire, which is based upon the analysis of single structural elements under a combination of thermal actions and end restraints representing the surrounding structure.
Abstract: Abstract This paper presents theoretical descriptions of the key phenomena that govern the behaviour of composite framed structures in fire. These descriptions have been developed in parallel with large scale computational work undertaken as a part of a research project (The DETR-PIT Project, Behaviour of steel framed structures under fire conditions) to model the full-scale fire tests on a composite steel framed structure at Cardington (UK). Behaviour of composite structures in fire has long been understood to be dominated by the effects of strength loss caused by thermal degradation, and that large deflections and runaway resulting from the action of imposed loading on a ‘weakened’ structure. Thus ‘strength’ and ‘loads’ are quite generally believed to be the key factors determining structural response (fundamentally no different from ambient behaviour). The new understanding produced from the aforementioned project is that, composite framed structures of the type tested at Cardington possess enormous reserves of strength through adopting large displacement configurations. Furthermore, it is the thermally induced forces and displacements, and not material degradation that govern the structural response in fire. Degradation (such as steel yielding and buckling) can even be helpful in developing the large displacement load carrying modes safely. This, of course, is only true until just before failure when material degradation and loads begin to dominate the behaviour once again. However, because no clear failures of composite structures such as the Cardington frame have been seen, it is not clear how far these structures are from failure in a given fire. This paper attempts to lay down some of the most important and fundamental principles that govern the behaviour of composite frame structures in fire in a simple and comprehensible manner. This is based upon the analysis of the response of single structural elements under a combination of thermal actions and end restraints representing the surrounding structure.

229 citations

Journal ArticleDOI
TL;DR: The state-of-the-art review indicates to what extent ML has been applied in four topic areas of earthquake engineering, including seismic hazard analysis, system identification and damage detection, seismic fragility assessment, and structural control for earthquake mitigation.
Abstract: Machine learning (ML) has evolved rapidly over recent years with the promise to substantially alter and enhance the role of data science in a variety of disciplines. Compared with traditional appro...

185 citations

Journal ArticleDOI
TL;DR: In this article, the seismic behavior of masonry churches damaged during the 2009 L’Aquila earthquake is studied, and four important basilicas are considered in order to derive general conclusions from the damage assessment and the performance analysis.

184 citations