FE vs. DE Modeling for the Nonlinear Dynamics of a Historic Church in Central Italy
The present research paper properly focuses on the dynamics and failure mechanisms of the masonry “Apennine Church” of Santissimo Crocifisso in Pretare, municipality of Arquata del Tronto in the province of Ascoli Piceno (Marche region, Central Italy). Such a peculiar structural type traditionally c...
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doaj-59f26b752c4f401b860f819a169137512021-04-27T23:03:38ZengMDPI AGGeosciences2076-32632021-04-011118918910.3390/geosciences11050189FE vs. DE Modeling for the Nonlinear Dynamics of a Historic Church in Central ItalyAngela Ferrante0Ersilia Giordano1Francesco Clementi2Gabriele Milani3Antonio Formisano4Department of Civil and Building Engineering, and Architecture, Polytechnic University of Marche, Via Brecce Bianche 12, 60131 Ancona, ItalyDepartment of Civil and Building Engineering, and Architecture, Polytechnic University of Marche, Via Brecce Bianche 12, 60131 Ancona, ItalyDepartment of Civil and Building Engineering, and Architecture, Polytechnic University of Marche, Via Brecce Bianche 12, 60131 Ancona, ItalyDepartment of Architecture, Built Environment and Construction Engineering, Technical University of Milan, Piazza Leonardo da Vinci 32, 20133 Milan, ItalyDepartment of Structures for Engineering and Architecture, University of Naples “Federico II”, Piazzale Tecchio 80, 80125 Naples, ItalyThe present research paper properly focuses on the dynamics and failure mechanisms of the masonry “Apennine Church” of Santissimo Crocifisso in Pretare, municipality of Arquata del Tronto in the province of Ascoli Piceno (Marche region, Central Italy). Such a peculiar structural type traditionally characterizes the intense seismic area of Central Italy, unfortunately almost totally damaged by the recent shock sequence of 2016. Advanced numerical modeling through discontinuous and continuous approaches were here utilized to have an insight into the dynamic properties and behavior of the structure under strong nonlinear dynamic excitations. In the discrete element approach, the non-smooth contact dynamics method, implemented in LMGC90©, was applied, adopting a full 3D detailed discretization. The church was schematized as an arrangement of rigid blocks, subjected to sliding by friction and perfect plastic collisions, with a null restitution coefficient. In the finite element approach, the concrete damaged plasticity model available in Midas FEA NX© was involved. This model allows reproducing the tensile cracking, the compressive crushing, and the degradation of the material under cyclic loads. Finally, the numerical analyses provided a valuable picture of the actual behavior of the church, thus giving useful hints for future strengthening interventions.https://www.mdpi.com/2076-3263/11/5/189masonry churchescentral Italy earthquakenonlinear dynamic analysisfailure mechanismscontinuous approachdiscontinuous approach |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Angela Ferrante Ersilia Giordano Francesco Clementi Gabriele Milani Antonio Formisano |
spellingShingle |
Angela Ferrante Ersilia Giordano Francesco Clementi Gabriele Milani Antonio Formisano FE vs. DE Modeling for the Nonlinear Dynamics of a Historic Church in Central Italy Geosciences masonry churches central Italy earthquake nonlinear dynamic analysis failure mechanisms continuous approach discontinuous approach |
author_facet |
Angela Ferrante Ersilia Giordano Francesco Clementi Gabriele Milani Antonio Formisano |
author_sort |
Angela Ferrante |
title |
FE vs. DE Modeling for the Nonlinear Dynamics of a Historic Church in Central Italy |
title_short |
FE vs. DE Modeling for the Nonlinear Dynamics of a Historic Church in Central Italy |
title_full |
FE vs. DE Modeling for the Nonlinear Dynamics of a Historic Church in Central Italy |
title_fullStr |
FE vs. DE Modeling for the Nonlinear Dynamics of a Historic Church in Central Italy |
title_full_unstemmed |
FE vs. DE Modeling for the Nonlinear Dynamics of a Historic Church in Central Italy |
title_sort |
fe vs. de modeling for the nonlinear dynamics of a historic church in central italy |
publisher |
MDPI AG |
series |
Geosciences |
issn |
2076-3263 |
publishDate |
2021-04-01 |
description |
The present research paper properly focuses on the dynamics and failure mechanisms of the masonry “Apennine Church” of Santissimo Crocifisso in Pretare, municipality of Arquata del Tronto in the province of Ascoli Piceno (Marche region, Central Italy). Such a peculiar structural type traditionally characterizes the intense seismic area of Central Italy, unfortunately almost totally damaged by the recent shock sequence of 2016. Advanced numerical modeling through discontinuous and continuous approaches were here utilized to have an insight into the dynamic properties and behavior of the structure under strong nonlinear dynamic excitations. In the discrete element approach, the non-smooth contact dynamics method, implemented in LMGC90©, was applied, adopting a full 3D detailed discretization. The church was schematized as an arrangement of rigid blocks, subjected to sliding by friction and perfect plastic collisions, with a null restitution coefficient. In the finite element approach, the concrete damaged plasticity model available in Midas FEA NX© was involved. This model allows reproducing the tensile cracking, the compressive crushing, and the degradation of the material under cyclic loads. Finally, the numerical analyses provided a valuable picture of the actual behavior of the church, thus giving useful hints for future strengthening interventions. |
topic |
masonry churches central Italy earthquake nonlinear dynamic analysis failure mechanisms continuous approach discontinuous approach |
url |
https://www.mdpi.com/2076-3263/11/5/189 |
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