Vector-valued fragility surfaces conditioned on mainshock-aftershock intensity levels for masonry buildings
Landi, Filippo and Bartolini, Giada and Sevieri, Giacomo and Baiguera, Marco (2026) Vector-valued fragility surfaces conditioned on mainshock-aftershock intensity levels for masonry buildings. International Journal of Disaster Risk Reduction, 143. 106310. ISSN 2212-4209 (https://doi.org/10.1016/j.ijdrr.2026.106310)
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Abstract
Recent earthquakes have shown the devastating impact of successive ground motions on unreinforced masonry (URM) buildings. While post-earthquake surveys provide valuable insights into the seismic performance of common construction typologies, they rarely capture damage progression induced by each event, as little or no time is available for inspection between seismic sequences. As a result, most existing vulnerability models, typically based on single mainshock (MS) analyses, underestimate the effects of cumulative damage. To address this limitation, this paper proposes a new methodology that adapts the Cloud Capacity Spectrum Method for prototype URM structures modeled using a macro-element approach based on the equivalent frame idealization. A set of physically consistent mainshock–aftershock ground motion pairs is employed to perform sequential non-linear static analyses and derive fragility surfaces directly as a function of the two events, without assuming a predefined MS-induced damage state. The resulting bivariate vulnerability surface highlights the significant amplification of expected losses due to aftershocks, even following moderate MSs. The method, demonstrated on a benchmark building and validated through a consistency check against equivalent-SDOF non-linear time history analyses, is computationally efficient and readily extendable to building portfolios.
ORCID iDs
Landi, Filippo, Bartolini, Giada
ORCID: https://orcid.org/0000-0003-3052-9426, Sevieri, Giacomo and Baiguera, Marco;
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Item type: Article ID code: 96824 Dates: DateEvent1 September 2026Published17 July 2026Published Online10 July 2026AcceptedSubjects: Technology > Engineering (General). Civil engineering (General)
Social Sciences > Industries. Land use. Labor > Risk ManagementDepartment: Faculty of Engineering > Civil and Environmental Engineering Depositing user: Pure Administrator Date deposited: 16 Jul 2026 16:03 Last modified: 29 Jul 2026 00:15 URI: https://strathprints.strath.ac.uk/id/eprint/96824
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