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Earthquake risk in reinforced concrete buildings during aftershock sequences based on period elongation and operational earthquake forecasting

机译:基于周期伸长和运作地震预测的余震序列钢筋混凝土建筑地震风险

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摘要

Rapid post-earthquake damage assessment is critical to short-term earthquake crisis management. Reinforced concrete buildings may accumulate damage during an aftershock sequence, and short-term damage forecasts after the mainshock can aid in decision-making (in particular, on whether to allow immediate occupancy) before further damage actually occurs. This paper presents an operative damage forecasting and building tagging procedure for reinforced concrete buildings during synthetic aftershock sequences near Thessaloniki, Greece, for two hypothetical earthquake scenarios. The synthetic aftershock sequences are simulated, and the time-variant seismic vulnerability is modeled based on fragility curves for the damage state thresholds in terms of period elongation. Period elongation is chosen as a damage proxy because it is available for rapid damage assessment in buildings with permanent monitoring systems or for city-scale post-earthquake surveys. Time-variable damage state probabilities owing to aftershocks are estimated, and a building tagging scheme is proposed based on a traffic-light concept (red-orange-green) to assist in seismic crisis management during aftershock sequences.
机译:快速地震后损伤评估对于短期地震危机管理至关重要。钢筋混凝土建筑物可能在余震序列期间累积损坏,并且在主歇地发生后,主歇尔可以帮助决策(特别是允许立即占用)之后的短期损坏预测。本文为塞萨洛尼基,希腊附近的合成余震序列,钢筋混凝土建筑造成了钢筋混凝土建筑物的操作损坏和建设标签程序。两个假想的地震场景。模拟了合成余震序列,并且基于在周期伸长率方面基于用于损坏状态阈值的脆弱性曲线来建模时变震荡漏洞。选择期间伸长率作为损坏代理,因为它可以在具有永久监测系统或城市规模的地震调查中进行快速损坏评估。估计由于余震的时间可变损伤状态概率,并且基于交通光概念(红橙绿色)提出了建筑标记方案,以帮助在余震序列期间辅助地震危机管理。

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