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Published October 24, 2022 | Version pre-print
Journal article Open

Statistical property parameterization of simple rocking block response

  • 1. National Technical University of Athens
  • 2. Hong Kong University of Science and Technology

Description

The parametric representation of rocking fragilities is statistically investigated. Initially, the potential normalization of the rocking parameters to reduce the problem’s dimensionality is tackled by undertaking comparisons both on a singlerecord and a sample-of-records basis. It is found that the slenderness angle can be normalized out when probabilistically considering the rocking response of simple rocking blocks with the same semi-diagonal length. Then, the robustness of the lognormal distribution for characterizing the rocking motion is investigated. Sets of pulse-like and ordinary ground motions are employed to test the lognormal fit for the full range of rocking response when the peak ground acceleration or the peak ground velocity are employed as intensity measures. In both cases, the lognormal distribution offers an adequate, but often imperfect, baseline model of the rocking fragility curves. Instead, a shifted lognormal that accounts for the absence of response below the rocking initiation intensity is an enhanced solution that can form the basis for offering simplified response model surrogates
 

Notes

This research has been co-financed by the European Regional Development Fund of the European Union and Greek national funds through the Operational Program Competitiveness, Entrepreneurship and Innovation, under the call RESEARCH – CREATE – INNOVATE (project code: Τ1EDK-00956), project: "ARCHYTAS: Archetypal telemetry and decision support system for the protection of monumental structures". Financial support has been also provided by the European Framework Programme for Research and Innovation (Horizon 2020) under the "HYPERION" project with Grant Agreement number 821054.

Files

lachanas-vamva-dimitrakopoulos_prEESD2023_RockingStatisticsParameterization.pdf

Additional details

Funding

HYPERION – Development of a Decision Support System for Improved Resilience & Sustainable Reconstruction of historic areas to cope with Climate Change & Extreme Events based on Novel Sensors and Modelling Tools 821054
European Commission