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  5. Constructal design for pedestrian movement in living spaces: Evacuation configurations

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Article
English
2012

Constructal design for pedestrian movement in living spaces: Evacuation configurations

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English
2012
Journal of Applied Physics
Vol 111 (5)
DOI: 10.1063/1.3689771

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Adrian Bejan
Adrian Bejan

Duke University

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Che Heng Gigi Lui
Nai Kong Fong
Sylvie Lorente
+2 more

Abstract

Here we show that the configuration of an inhabited area controls the time required by all the pedestrians to vacate the space. From the minimization of the global evacuation time emerges the optimal configuration of the area. This is a fundamental principle for designing living spaces with efficient evacuation quality, and it is demonstrated here with several simple building blocks that can be used as components of more complex living structures: single walkway, corner, and T-shaped walkway. We show analytically and numerically that the ratio of the widths of the stem and branches of the T-shaped walkway has an optimal value that facilitates the evacuation of all the inhabitants. This result is fundamental, and is the crowd-dynamics equivalent of the Hess-Murray rule for the ratio of diameters in bifurcated ducts with fluid flow.

How to cite this publication

Che Heng Gigi Lui, Nai Kong Fong, Sylvie Lorente, Adrian Bejan, W. K. Chow (2012). Constructal design for pedestrian movement in living spaces: Evacuation configurations. Journal of Applied Physics, 111(5), DOI: 10.1063/1.3689771.

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Publication Details

Type

Article

Year

2012

Authors

5

Datasets

0

Total Files

0

Language

English

Journal

Journal of Applied Physics

DOI

10.1063/1.3689771

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