Abstract
This paper presents a detailed study of the damages and collapses suffered by various masonry churches in the aftermath of the seismic sequence of Central Italy in 2016. The damages will first be analyzed and then compared with the numerical data obtained through 3D simulations with eigenfrequency and then nonlinear static analyses (i.e., pushover). The main purposes of this study are: (i) to create an adequately consistent sensitivity study on several definite case studies to obtain an insight into the role played by geometry—which is always unique when referred to churches—and by irregularities; (ii) validate or address the applicability limits of the more widespread nonlinear approach, widely recommended by the Italian Technical Regulations. Pushover analyses are conducted assuming that the masonry behaves as a nonlinear material with different tensile and compressive strengths. The consistent number of case studies investigated will show how conventional static approaches can identify, albeit in a qualitative way, the most critical macro-elements that usually trigger both global and local collapses, underlining once again how the phenomena are affected by the geometry of stones and bricks, the texture of the wall face, and irregularities in the plan and elevation and in addition to hypotheses made on the continuity between orthogonal walls.
Subject
Building and Construction,Civil and Structural Engineering,Architecture
Reference33 articles.
1. Seismic vulnerability of building aggregates through hybrid and indirect assessment techniques
2. Decreto Ministeriale 17/01/2018—Aggiornamento delle “Norme Tecniche per le Costruzioni”,2018
3. Circolare 21 gennaio 2019 n. 7 C.S.LL.PP—Istruzioni per l’applicazione dell’Aggiornamento delle “Norme Tecniche per le Costruzioni” di cui al D.M. 17/01/2018,2019
4. Mechanics of Masonry Structures;Angelillo,2014
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