4.5 Article

Earthquake evacuation simulation of multi-story buildings during earthquakes

Journal

EARTHQUAKE SPECTRA
Volume 37, Issue 1, Pages 95-113

Publisher

SAGE PUBLICATIONS INC
DOI: 10.1177/8755293020957353

Keywords

Earthquake evacuation; multi-story buildings; cellular automata; network graph; seismic damage

Funding

  1. Research Project on Emergency and Escape Technology of Platform of the High Technology Ship Scientific Research Project of Ministry of Industry and Information Technology of the People's Republic of China
  2. National Natural Science Foundation of China [51978397]

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A fully random evacuation model combining a network-based pedestrian dynamics simulation model, simplified probabilistic structural damage assessment, and structural random vibration analysis has been proposed for simulating and analyzing earthquake evacuation processes of multi-story buildings. The model can be used for fast pre-evaluation or evaluation of the earthquake evacuation capabilities of multi-story buildings, as shown in a simulation and analysis of a three-story office building with 60 persons working on the first and second stories.
Through combining a network-based pedestrian dynamics simulation model, simplified probabilistic structural damage assessment, and structural random vibration analysis, a fully random evacuation model is proposed for simulating and analyzing earthquake evacuation processes of multi-story buildings during earthquakes. The model simplifies the simulation of three-dimensional pedestrian dynamics, couples the emergency evacuation processes and damage processes of structures, and takes into account the randomness of pedestrian dynamics, structural damage, and earthquake excitation. The model can be used for the fast pre-evaluation or evaluation of the earthquake evacuation capabilities of multi-story buildings. The simulation and analysis of the earthquake evacuation process of a three-story office building, in which a total of 60 persons work in the first and second stories, illustrates the effectiveness and implementation of the proposed model.

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