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Modelling Cumulative Seismic Damage at the Urban Scale
Rosa Maria Sava1,2, Annalisa Greco3, Alessandro Pluchino1,2
1Department of Physics and Astronomy "Ettore Majorana", University of Catania, Via Santa Sofia 64, 95123 Catania, Italy.
This study introduces a new method to simulate urban earthquake damage, considering the cumulative effects of seismic sequences. It models evolving building vulnerability, providing a more realistic assessment of seismic risk and mitigation strategies.
Area of Science:
- Earthquake engineering
- Urban seismology
- Complex systems analysis
Background:
- Urban seismic risk assessment is crucial for mitigation and management.
- Existing methods often analyze earthquakes in isolation, neglecting cumulative effects.
- Understanding evolving building vulnerability under seismic sequences is key.
Purpose of the Study:
- To present a methodology for simulating earthquake damage scenarios in urban areas, accounting for cumulative seismic sequence effects.
- To model the progressive accumulation of structural damage and evolving building vulnerability.
- To extend previous work by integrating updated calibration procedures and applying them to new case studies.
Main Methods:
- Modeling urban areas as collections of buildings with memory-dependent vulnerability evolution.
- Simulating the cumulative effects of entire seismic histories, not just individual events.
- Integrating instrumentally derived macroseismic intensity maps with observed building damage data.
Main Results:
- The methodology successfully reproduces observed damage patterns by considering the entire seismic sequence.
- New calibration procedures enhance the model's accuracy.
- Comparative analysis reveals the influence of seismic sequence characteristics and building stock on damage evolution.
Conclusions:
- The proposed methodology offers a robust tool for interpreting post-earthquake damage.
- It enhances seismic risk assessment and mitigation strategies by considering cumulative seismic effects.
- The study highlights the importance of a complex systems approach to urban seismic risk.
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