Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Fragility Curves for Italian Urm Buildings Based on a Hybrid Method

View through CrossRef
Abstract A hybrid seismic fragility model for territorial-scale seismic vulnerability assessment of masonry buildings is developed and presented in this paper. The method combines expert-judgment and mechanical approaches to derive typological fragility curves for Italian residential masonry building stock. The first classifies Italian masonry buildings in five different typological classes as function of age of construction, structural typology, and seismic behaviour and damaging of buildings observed following the most severe earthquakes occurred in Italy. The second, based on numerical analyses results conducted on building prototypes, provides all the parameters necessary for developing fragility functions.Peak-Ground Acceleration (PGA) at Ultimate Limit State attainable by each building’s class has been chosen as an Intensity Measure (IM) to represent fragility curves: three types of curve have been developed, each referred to mean, maximum and minim value of PGAs defined for each buildings class.To represent the expected damage scenario for increasing earthquake intensities, a correlation between PGAs and Mercalli-Cancani-Sieber (MCS) macroseismic intensity scale has been used and the corresponding fragility curves developed.Results show that the proposed building’s classes are representative of the Italian masonry building stock and that fragility curves are effective for predicting both seismic vulnerability and expected damage scenarios for seismic-prone areas. Finally, the fragility curves have been compared with empirical curves obtained through a macroseismic approach on Italian masonry buildings available in literature, underlining the differences between the methods.
Title: Fragility Curves for Italian Urm Buildings Based on a Hybrid Method
Description:
Abstract A hybrid seismic fragility model for territorial-scale seismic vulnerability assessment of masonry buildings is developed and presented in this paper.
The method combines expert-judgment and mechanical approaches to derive typological fragility curves for Italian residential masonry building stock.
The first classifies Italian masonry buildings in five different typological classes as function of age of construction, structural typology, and seismic behaviour and damaging of buildings observed following the most severe earthquakes occurred in Italy.
The second, based on numerical analyses results conducted on building prototypes, provides all the parameters necessary for developing fragility functions.
Peak-Ground Acceleration (PGA) at Ultimate Limit State attainable by each building’s class has been chosen as an Intensity Measure (IM) to represent fragility curves: three types of curve have been developed, each referred to mean, maximum and minim value of PGAs defined for each buildings class.
To represent the expected damage scenario for increasing earthquake intensities, a correlation between PGAs and Mercalli-Cancani-Sieber (MCS) macroseismic intensity scale has been used and the corresponding fragility curves developed.
Results show that the proposed building’s classes are representative of the Italian masonry building stock and that fragility curves are effective for predicting both seismic vulnerability and expected damage scenarios for seismic-prone areas.
Finally, the fragility curves have been compared with empirical curves obtained through a macroseismic approach on Italian masonry buildings available in literature, underlining the differences between the methods.

Related Results

Visual Rating Method for Seismic Vulnerability Assessment of Unreinforced Masonry Buildings
Visual Rating Method for Seismic Vulnerability Assessment of Unreinforced Masonry Buildings
Abstract The Visual Rating Method (VRM) offers a cost-effective and rapid means of assessing the seismic vulnerability of unreinforced masonry (URM) structures, aiding in t...
1116-P: Enrollment of Racial/Ethnic Minorities in the Rare and Atypical Diabetes Network (RADIANT)
1116-P: Enrollment of Racial/Ethnic Minorities in the Rare and Atypical Diabetes Network (RADIANT)
RADIANT is an NIH study of people with uncharacterized forms of atypical diabetes mellitus (DM) in the US. RADIANT participants consent online and progress through three sequential...
Inverse Jacobian and related topics for certain superelliptic curves
Inverse Jacobian and related topics for certain superelliptic curves
Given an elliptic curve E over the complex numbers (CC) given by y^2 = x^3 + ax + b, there exists a lattice L in CC such that the group E(CC) of complex points on E is isomorphic ...
Performance of Unreinforced Masonry Walls in Compression: A Review of Design Provisions, Experimental Research, and Future Needs
Performance of Unreinforced Masonry Walls in Compression: A Review of Design Provisions, Experimental Research, and Future Needs
Unreinforced masonry (URM) is a construction of brick or concrete block unit that is joined together using mortar, without steel reinforcement. Because of the heterogeneous nature ...
Research Initiatives in Accounting Education: Toward a More Inclusive Accounting Academy
Research Initiatives in Accounting Education: Toward a More Inclusive Accounting Academy
ABSTRACT This essay provides descriptive evidence on the state of under-represented minority (URM) Ph.D. faculty in the accounting academy. Despite the significant g...
Ubiquitin-Related Modifier 1 (URM-1) Modulates Cx43 in Breast Cancer Cell Lines
Ubiquitin-Related Modifier 1 (URM-1) Modulates Cx43 in Breast Cancer Cell Lines
Gap-junction-forming connexins are exquisitely regulated by post-translational modifications (PTMs). In particular, the PTM of connexin 43 (Cx43), a tumor suppressor protein, regul...

Back to Top