Urban risk assessment model to quantify earthquake‐induced elevator passenger entrapment with population heatmap

Author:

Gu Donglian1,Zhang Ning1,Xu Zhen1,Wu Yongjingbang23,Tian Yuan1

Affiliation:

1. Research Institute of Urbanization and Urban Safety University of Science and Technology Beijing Beijing China

2. Shenzhen Urban Public Safety and Technology Institute Shenzhen China

3. Key Laboratory for Urban Safety Risk Monitoring and Early Warning of Emergency Management Department Shenzhen China

Abstract

AbstractThe seismic resilience of cities plays a crucial role in achieving the United Nations Sustainability Development Goal. However, despite the occurrence of elevator passenger entrapment in numerous earthquakes, there is a notable lack of studies addressing this sophisticated issue. This study aims to bridge this gap by proposing a novel urban risk assessment model designed to evaluate city‐scale earthquake‐induced elevator passenger entrapment. The model integrates big data and physics‐based approaches. A novel mapping method was developed to estimate city‐scale elevator traffic level based on population heatmap data and deep learning. A process‐based parallel computing scheme was designed to accelerate the assessment. The applicability was demonstrated based on a real‐world urban area comprising 619 buildings. The findings reveal that as the time of the earthquake varies, the risk exhibits significant fluctuations. Additionally, this study highlights that a simplistic correspondence between seismic intensity and passenger entrapment risk can lead to erroneous estimations.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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