Sangiorgio V., Martiradonna S., Fatiguso F., Uva G. 2020, AHP-based methodology integrating modern information technologies for historical masonry churches diagnosis, in A. Caravale, P. Moscati (eds.), Logic and computing. The underlying basis of digital archaeology. Proceedings of the MetroArchaeo 2019 Special Session, 2019 IMEKO TC-4 International Conference on Metrology for Archaeology and Cultural Heritage (Florence, 4-6 December 2019), «Archeologia e Calcolatori», 31.2, 257-268 (https://doi.org/10.19282/ac.31.2.2020.24)
Copy to clipboard Download: BibTeXAHP-based methodology integrating modern information technologies for historical masonry churches diagnosis
Valentino Sangiorgio, Silvia Martiradonna, Fabio Fatiguso, Giuseppina Uva
«Archeologia e Calcolatori» 2020, 31.2, 257-268; doi: 10.19282/ac.31.2.2020.24
Abstract
Surveys conducted in the aftermath of recent earthquakes have shown that the structural and anti-seismic performances of historical masonry churches are related not only to structural damages and masonry quality but also to other key features such as effectiveness of connections, damages of wooden elements or criticalities related to humidity. Technical and scientific communities are interested in developing or improving existing procedures for the fast-visual survey and diagnostics in order to measure and analyze all the parameters affecting the building performance. In this paper a new procedure, that can be implemented in a Decision Support System (DSS) based on the Analytic Hierarchy Processes (AHP), is developed to perform a rapid visual survey and diagnostics of masonry building through a set of condition ratings. The originality of the presented work is fourfold: 1) the AHP allows to include in the analysis qualitative and quantitative data such as the quality of masonry and connections effectiveness; 2) the proposed survey and diagnostics performed by suitable condition ratings allow an extensive application in order to identify the most damaged buildings that require more detailed structural investigations; 3) the proposed AHP-based approach is integrated in a DSS to provide a powerful computerized tool, useful to large scale data acquisition; 4) the comparison with a standard diagnostics is performed to validate the procedure and emphasize the advantages of the novel diagnostics.
Preview
Subjects:
Simulation AI Documentation, conservation and restoration
Download (PDF)Publishers:
CNR - Istituto di Scienze del Patrimonio Culturale
Edizioni All'Insegna del Giglio
This website uses only technical cookies strictly necessary for its proper functioning. It doesn't perform any profiling and doesn't use third party cookies of any kind.
Read our privacy policy for additional information.
By clicking 'OK' or closing this banner you acknowledge having read this information and accept the website's contents.