Analyzing the Crowd Evacuation Pattern of a Large Densely Populated Building View Full Text


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Article Info

DATE

2019-04

AUTHORS

Yasser M. Alginahi, Mohammed Mudassar, Muhammad Nomani Kabir, Omar Tayan

ABSTRACT

Understanding crowd evacuation behavior is of utmost importance for large buildings in order to achieve efficient crowd monitoring and management. This paper presents the simulation and analysis of crowd evacuation pattern for a large building called Al Masjid An Nabawi, widely known as ‘the Haram,’ in Madinah, Saudi Arabia. Legion Evac software is employed to simulate the crowd evacuation. During simulation, Legion computes various metrics that holistically reflect the crowd evacuation pattern, which captures the crowd evacuation behavior. We analyze the magnitude and temporal variations with respect to the general evacuation patterns (GEP) of the building. The magnitude is analyzed using the t-test, which is a hypothesis testing method. However, the temporal variations are analyzed using cross-correlation analysis. The GEP captures the general crowd evacuation behavior (across all sections) of the building by aggregating the evacuation patterns of each section of the building. The crowd evacuation simulation resulted in an evacuation time of 21 min to evacuate a population of approximately 170,000. The analysis of evacuation patterns shows that the evacuation pattern of different sections of the building differs significantly in magnitude, but has significant temporal similarity with respect to GEP. Finally, insights are derived from the analysis results, which aid in efficient crowd monitoring and management. More... »

PAGES

3289-3304

References to SciGraph publications

  • 2013-07. A review of behavior mechanisms and crowd evacuation animation in emergency exercises in JOURNAL OF ZHEJIANG UNIVERSITY SCIENCE C
  • 2017. Crowd Simulation in SIMULATING CROWDS IN EGRESS SCENARIOS
  • 2017-08-25. Review of Research on Simulation Platform Based on the Crowd Evacuation in ADVANCED COMPUTATIONAL METHODS IN LIFE SYSTEM MODELING AND SIMULATION
  • 2000-09. Simulating dynamical features of escape panic in NATURE
  • 2013-12. Right of way in THE VISUAL COMPUTER
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    URI

    http://scigraph.springernature.com/pub.10.1007/s13369-018-3411-z

    DOI

    http://dx.doi.org/10.1007/s13369-018-3411-z

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1106098052


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