A Methodology for Post-Mainshock Probabilistic Assessment of Building Collapse Risk

Created 16/10/2025

Updated 16/10/2025

This paper presents a methodology for post-earthquake probabilistic risk (of damage) assessment that we propose in order to develop a computational tool for automatic or semi-automatic assessment. The methodology utilizes the same so-called risk integral which can be used for pre-earthquake probabilistic assessment. The risk integral couples (i) ground motion hazard information for the location of a structure of interest with (ii) knowledge of the fragility of the structure with respect to potential ground motion intensities. In the proposed post-mainshock methodology, the ground motion hazard component of the risk integral is adapted to account for aftershocks which are deliberately excluded from typical pre-earthquake hazard assessments and which decrease in frequency with the time elapsed since the mainshock. Correspondingly, the structural fragility component is adapted to account for any damage caused by the mainshock, as well as any uncertainty in the extent of this damage. The result of the adapted risk integral is a fully-probabilistic quantification of post-mainshock seismic risk that can inform emergency response mobilization, inspection prioritization, and reoccupancy decisions.

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Title A Methodology for Post-Mainshock Probabilistic Assessment of Building Collapse Risk
Language eng
Licence Not Specified
Landing Page https://data.gov.au/data/en/dataset/50cc39e0-7a6d-420b-a273-9f000a6fd6d3
Contact Point
Geoscience Australia Data
clientservices@ga.gov.au
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Geospatial Coverage Australia
Data Portal Geoscience Australia

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This dataset was originally found on Geoscience Australia "A Methodology for Post-Mainshock Probabilistic Assessment of Building Collapse Risk". Please visit the source to access the original metadata of the dataset:
https://ecat.ga.gov.au/geonetwork/srv/eng/csw/dataset/a-methodology-for-post-mainshock-probabilistic-assessment-of-building-collapse-risk