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Journal Article

Citation

Owen M, Galea ER, Lawrence PJ. J. Fire Prot. Eng. 1996; 8(2): 65-84.

Copyright

(Copyright © 1996, SAGE Publishing)

DOI

10.1177/104239159600800202

PMID

unavailable

Abstract

The purpose of this paper is to demonstrate the potential of the EXODUS evacuation model in building environments. The latest PC/workstation version of EXODUS is described and is also applied to a large hypothetical supermarket/restaurant complex measuring 50 m x 40 m. A range of scenarios is presented where population characteristics (such as size, individual travel speeds, and individual response times), and enclosure configuration characteristics (such as number of exits, size of exits, and opening times of exits) are varied.
The results demonstrate a wide range of occupant behavior including overtaking, queuing, redirection, and conflict avoidance. Evacuation performance is measured by a number of model predicted parameters including individual exit flow rates, overall evacuation flow rates, total evacuation time, average evacuation time per occupant, average travel distance, and average wait time.
The simulations highlight the profound impact that variations in individual travel speeds and occupant response times have in determining the overall evacuation performance.
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Language: en

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