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  1. Degrees

New Insights in the Mechanical Modeling of Cultural Heritage for Sustainable Restoration: Green Composites and Nano-Technologies (GreNaTe)

Project
Cultural heritage is of paramount importance for the Italian territory due to the presence of a great number of ancient structures with historical and archeological interest. The main aim of Italian culture is based on preservation, conservation and restoration of architectural heritage, however, these aspects are very complex when set in the context of structural mechanics due to different constructive typologies present on the national territory which is characterized by high seismicity. This is a threat for such structures which in general have poor resistance to horizontal actions. Therefore monitoring and acting on these structures becomes an open challenge for structural engineers especially when green technologies come into place due to the several environmental threats led by modern human beings. There is a need for theoretical and numerical modeling of green-nanocomposites to be considered in this context by taking into consideration the interdisciplinary and interoperability actions needed for such designs. Furthermore, the preservation of built heritage often requires the design of strengthening interventions on masonry structures. In this field, external bonded systems have been proposed in the last decades by adopting composite fibrous materials with high tensile strength. The initial use of carbon-based materials bonded to masonry with organic adhesives has been overcome by the adoption of sustainable solutions based on natural and organic materials. Reinforcement with FRCM represents a recent eco-compatible development, which can be further improved by the use of natural (NFRCM) or, better, vegetal fibers. These technologies require dedicated analytical and numerical models able to successfully reproduce the strengthening effect and evaluate the effectiveness of sustainable interventions for the reinforcement of masonry structures. Focusing also on green and sustainable technologies for masonry buildings, compressed and/or stabilized earth block (CEB, SEB, CSEB) masonry represents an ancient construction approach that deserves to be updated to current building standards by focusing on its advantages in terms of use of local materials and reduction of construction and transport costs. Such a technology can be Ministero dell'Università e della Ricerca MUR - BANDO 2022 improved and optimized by focusing on its mechanical behavior at material and structural level, in order to encourage its application, not necessarily in developing countries. A research team, expert in the area of structural mechanics, will drive the main Work Packages (WPs) of the project: (i) MECHANICAL MODELING focusing on constituent materials and related constitutive aspects, treated using discrete or non-standard continuous multiscale approaches; (ii) NUMERICAL IMPLEMENTATION using advanced computational tools;
  • Overview
  • Research Fields
  • Outputs

Overview

Contributor (4)

BARALDI DANIELE   Scientific Manager  
CECCHI ANTONELLA   Participant  
MAZZARELLA OLIMPIA   Participant  
MEROI EMILIO   Participant  

Representatives (2)

CHIAROTTO LUDOVICA   Administrative  
COCCON ISABELLA   Administrative  

Leading department

DIPARTIMENTO DI CULTURE DEL PROGETTO   Principale  

Term type

Ricerca PRIN_CTC

Financier

Ministero dell'Istruzione, dell'Università e della Ricerca
Funding Organization

Partner (2)

UNIVERSITA' DEGLI STUDI DI ROMA LA SAPIENZA
Università Iuav di Venezia

Total Contribution (assigned) University (EUR)

73,555€

Date/time interval

September 28, 2023 - February 28, 2026

Project duration

29 months

Research Fields

Concepts (3)


PE8_10 - Industrial design (product design, ergonomics, man-machine interfaces, etc.) - (2020)

PE8_11 - Sustainable design (for recycling, for environment, eco-design) - (2020)

Settore ICAR/08 - Scienza delle Costruzioni

Keywords (6)

  • ascendant
  • decrescent
MATRICE CEMENTIZIA RINFORZATA CON FIBRA NATURALE (NFRCM)
MECCANICA COMPUTAZIONALE
MECCANICA SPERIMENTALE
MECCANICA STRUTTURALE
MURATURA A BLOCCO DI TERRA COMPRESSA (CEB)
NANO-COMPOSITI VERDI
No Results Found
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Outputs

Outputs (8)

In-plane behaviour of NFRCM-strengthened masonry modelled by means of discrete elements 
UNIVERSITÀ DI BOLOGNA
2024
Abstract
Reserved Access
Adaptation of DIC technique for simplified applications in experimental mechanics 
JOURNAL OF PHYSICS. CONFERENCE SERIES
2024
Academic Article
Open Access
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DIC technique for experimental validation of higher order numerical models 
JOURNAL OF PHYSICS. CONFERENCE SERIES
2024
Academic Article
Open Access
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A Comparison Between Experimental Outcomes and Discrete Element Modeling for the Evaluation of Failure Modes of Masonry Under Shear Actions 
RILEM BOOKSERIES
SPRINGER
2026
Conference Paper
Reserved Access
Experimental and Numerical Investigation on Mechanical Response of Reinforced Earth-Based Masonry System 
RILEM BOOKSERIES
SPRINGER
2026
Conference Paper
restricted Access
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Experimental Characterization and Numerical Validation of NFRCM for Strengthening Masonry 
LECTURE NOTES IN CIVIL ENGINEERING
SPRINGER
2025
Conference Paper
Reserved Access
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Mechanical Performance of CEB Masonry Reinforced with BFRP Net 
LECTURE NOTES IN CIVIL ENGINEERING
SPRINGER INTERNATIONAL PUBLISHING AG
2025
Conference Paper
restricted Access
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Specimen size sensitivity on diagonal compression tests for masonry 
ADVANCED STRUCTURED MATERIALS
SPRINGER
2024
Conference Paper
Reserved Access
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