Numerical block-based simulation of rocking structures using a novel universal viscous damping model

dc.contributor.authorVlachakis, Giorgiospor
dc.contributor.authorGiouvanidis, Anastasiospor
dc.contributor.authorMehrotra, Anjali Abhaypor
dc.contributor.authorLourenço, Paulo B.por
dc.date.accessioned2022-03-23T16:32:03Z
dc.date.available2022-03-23T16:32:03Z
dc.date.issued2021-08-24
dc.date.submitted2021-01-11
dc.description.abstractUnreinforced masonry structures, particularly façade walls, are seismically vulnerable due to their weak connections with adjacent walls, floors, and/or roofs. During an earthquake, such walls formulate local mechanisms prone to out-of-plane collapse. This behavior has been largely investigated using classical rocking theory, which assumes the structure responds as a rigid body undergoing rocking motion, with energy dissipation at impact. Due to the complexity of the problem, however, e.g., number of degrees of freedom or boundary conditions, numerical block-based modeling is gaining momentum. However, numerical models lack a consistent and reliable treatment of the energy loss at impact. This paper bridges the gap between the well-established energy loss of classical rocking theory and the treatment of damping in numerical modeling. Specifically, it proposes an equivalent viscous damping model through novel ready-to-use predictive equations that capture the dissipative phenomena during both one-sided and two-sided planar rocking motion. The results reveal a satisfactory performance of the proposed model through comparisons with experimental results from literature and highlight its universality and robustness through applications of the model in fundamentally different block-based numerical modeling software.por
dc.description.sponsorshipThis study has been funded by the STAND4HERITAGE project (New Standards for Seismic Assessment of Built Cultural Heritage) that has received funding from the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation program (Grant No. 833123) as an Advanced Grantpor
dc.distributioninternationalpor
dc.identifier.citationG. Vlachakis, A. I. Giouvanidis, A. Mehrotra & P. B. Lourenço. 2021. ‘Numerical block-based simulation of rocking structures using a novel universal viscous damping model’, Journal of Engineering Mechanics, 147 (11).por
dc.identifier.doi10.1061/(ASCE)EM.1943-7889.0001985por
dc.identifier.eissn1943-7889por
dc.identifier.issn0733-9399por
dc.identifier.urihttps://hdl.handle.net/1822/76643
dc.language.isoengpor
dc.peerreviewedyespor
dc.publisherAmerican Society of Civil Engineers (ASCE)por
dc.relationinfo:eu-repo/grantAgreement/EC/H2020/833123/EUpor
dc.relation.publisherversionhttps://ascelibrary.org/doi/10.1061/%28ASCE%29EM.1943-7889.0001985por
dc.rightsopenAccesspor
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/por
dc.subjectRockingpor
dc.subjectCoefficient of restitutionpor
dc.subjectViscous dampingpor
dc.subjectNumerical modelingpor
dc.subjectOut-of-plane collapsepor
dc.subject.fosEngenharia e Tecnologia::Engenharia Civilpor
dc.subject.odsCidades e comunidades sustentáveispor
dc.subject.wosScience & Technologypor
dc.titleNumerical block-based simulation of rocking structures using a novel universal viscous damping modelpor
dc.typearticle
dspace.entity.typePublicationen
oaire.citationIssue11por
oaire.citationVolume147por
oaire.versionVoRpor
sdum.journalJournal of Engineering Mechanicspor

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