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Featured researches published by F. Messali.


Key Engineering Materials | 2017

Multi-Scale Approach towards Groningen Masonry and Induced Seismicity

J.G. Rots; F. Messali; R. Esposito; Valentina Mariani; S. Jafari

In the last years, the induced seismicity in the northern part of the Netherlands has considerably increased. The existing building stock was not designed for seismic loading, and it is characterised by very slender walls, limited cooperation between walls and floors, and use of cavity walls. As a consequence, the validation of analytical and numerical models for the assessment of unreinforced masonry buildings and the characterisation of the masonry at both material and structural level have become of great importance. An extensive large-scale testing program was performed at the Delft University of Technology in 2015 to create benchmarks for the validation of the numerical and analytical models. The attention was mainly devoted to a terraced house typology, which was widely adopted for housing in the period 1960-1980, and focused on the characterisation of the typology at various levels: material, connection, component and assemblage level. The experimental tests at component and assemblage levels were also reproduced by nonlinear finite element analysis, validated and calibrated against the data available from the testing campaign at material level. In this paper, an overview description of performed experiments and numerical analyses is provided; specific devotion is given to the main outcomes of the campaign and to the lessons learned by the experimental evidences for improving the numerical models.


Procedia Engineering | 2017

Characterizing the Material Properties of Dutch Unreinforced Masonry

S. Jafari; J.G. Rots; R. Esposito; F. Messali


16th World Conference on Earthquake : Santiago, Chile | 2017

Large-scale testing program for the seismic characterization of Dutch masonry walls.

F. Messali; G.J.P. Ravenshorst; R. Esposito; J.G. Rots


Archive | 2018

A multiscale experimental characterisation of Dutch unreinforced masonry buildings

F. Messali; R. Esposito; S. Jafari; G.J.P. Ravenshorst; P.A. Korswagen Eguren; J.G. Rots


Archive | 2018

Blind prediction of a cyclic pushover test on a two-storey masonry assemblage : a comparative study

F. Messali; M. Pari; R. Esposito; J.G. Rots; D den Hertog


Archive | 2018

Quasi-static cyclic two-way out-of-plane bending tests and analytical models comparison for URM walls

M. Damiola; R. Esposito; F. Messali; J.G. Rots; G. Milani; A. Taliercio; S. Garrity


Archive | 2018

Mechanical characterisation of wall tie connection in cavity walls

Georgia Skroumpelou; F. Messali; R. Esposito; J.G. Rots


Engineering Structures | 2018

In-plane drift capacity at near collapse of rocking unreinforced calcium silicate and clay masonry piers

F. Messali; J.G. Rots


Archive | 2017

Computational modeling of the cyclic pushover test on a calcium silicate element masonry assemblage

M. Pari; S. Jafari; F. Messali; R. Esposito; J.G. Rots; W.J. Quist; S.J.C. Granneman; R.P.J. van Hees


16th World Conference on Earthquake | 2017

Cyclic pushover test on an unreinforced masonry structure reseambling a typical Dutch terraced house

J.G. Rots; R. Esposito; K.C. Terwel; G.J.P. Ravenshorst; H.R. Schipper; F. Messali

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J.G. Rots

Delft University of Technology

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R. Esposito

Delft University of Technology

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S. Jafari

Delft University of Technology

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H.R. Schipper

Delft University of Technology

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R.P.J. van Hees

Delft University of Technology

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S.J.C. Granneman

Delft University of Technology

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Valentina Mariani

Delft University of Technology

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W.J. Quist

Delft University of Technology

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