Building evacuation: Principles for the analysis of basic structures through dynamic flow networks

<p class="NormalLatinaVerdana"><strong>Purpose:</strong> The main purpose of this paper is to perform an analysis of the factors determining the architectural configuration of buildings for the mobility of people, using dynamic flow networks and considering group formatio...

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Main Authors: Salvador Casadesús-Pursals, Federico Garriga-Garzón
Format: Article
Language:English
Published: OmniaScience 2013-09-01
Series:Journal of Industrial Engineering and Management
Subjects:
Online Access:http://www.jiem.org/index.php/jiem/article/view/635
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spelling doaj-f64c49968c1b40b79e5cff082ee6eee42020-11-24T21:40:16ZengOmniaScienceJournal of Industrial Engineering and Management2013-84232013-09532013-09-016483185910.3926/jiem.635209Building evacuation: Principles for the analysis of basic structures through dynamic flow networksSalvador Casadesús-Pursals0Federico Garriga-Garzón1Universitat Politècnica de Catalunya (UPC)Universitat Politècnica de Catalunya (UPC)<p class="NormalLatinaVerdana"><strong>Purpose:</strong> The main purpose of this paper is to perform an analysis of the factors determining the architectural configuration of buildings for the mobility of people, using dynamic flow networks and considering group formation in the evacuation process.</p><p class="NormalLatinaVerdana"><strong>Design/methodology/approach:</strong> For a long time it has been considered that once an evacuation begins, movement on the evacuation route mainly obeys mechanical factors; people occupy the free spaces which lead to evacuation more or less automatically. However, recent research has emphasized the need to consider people’s behavior; one of the aspects considered in this work is group formation, with its significant influence on the evacuation process. In positions of convergence and their branches things become considerably more complicated; as well as occupants’ behavioral aspects other relevant factors such as the geometry of the premises are critical in this process. Authors propose models, in which nodes are strategically placed, besides taking into consideration aspects of behavior. Several cases are analyzed.</p><p class="NormalLatinaVerdana"><strong>Findings:</strong> The solution proposed in this paper is to analyze the problem through dynamic flow networks, using a macroscopic model in a deterministic environment in which the evolution of the quantities characterizing the problem at regular intervals is represented, obtaining a reasonably accurate and reliable understanding of the development of the evacuation.</p><p class="NormalLatinaVerdana"><strong>Originality/value:</strong> A precise model of evacuation routes, convergence points and branches which includes a consideration of occupants’ behavior is obtained using stochastic models with microscopic analysis, in which people’s behavior is considered individually, this solution is complex, difficult to apply with many occupants and in large enclosures, and also, this way does not lead to optimal solutions.</p>http://www.jiem.org/index.php/jiem/article/view/635Building evacuation, evacuation optimization, optimal evacuation of buildings.
collection DOAJ
language English
format Article
sources DOAJ
author Salvador Casadesús-Pursals
Federico Garriga-Garzón
spellingShingle Salvador Casadesús-Pursals
Federico Garriga-Garzón
Building evacuation: Principles for the analysis of basic structures through dynamic flow networks
Journal of Industrial Engineering and Management
Building evacuation, evacuation optimization, optimal evacuation of buildings.
author_facet Salvador Casadesús-Pursals
Federico Garriga-Garzón
author_sort Salvador Casadesús-Pursals
title Building evacuation: Principles for the analysis of basic structures through dynamic flow networks
title_short Building evacuation: Principles for the analysis of basic structures through dynamic flow networks
title_full Building evacuation: Principles for the analysis of basic structures through dynamic flow networks
title_fullStr Building evacuation: Principles for the analysis of basic structures through dynamic flow networks
title_full_unstemmed Building evacuation: Principles for the analysis of basic structures through dynamic flow networks
title_sort building evacuation: principles for the analysis of basic structures through dynamic flow networks
publisher OmniaScience
series Journal of Industrial Engineering and Management
issn 2013-8423
2013-0953
publishDate 2013-09-01
description <p class="NormalLatinaVerdana"><strong>Purpose:</strong> The main purpose of this paper is to perform an analysis of the factors determining the architectural configuration of buildings for the mobility of people, using dynamic flow networks and considering group formation in the evacuation process.</p><p class="NormalLatinaVerdana"><strong>Design/methodology/approach:</strong> For a long time it has been considered that once an evacuation begins, movement on the evacuation route mainly obeys mechanical factors; people occupy the free spaces which lead to evacuation more or less automatically. However, recent research has emphasized the need to consider people’s behavior; one of the aspects considered in this work is group formation, with its significant influence on the evacuation process. In positions of convergence and their branches things become considerably more complicated; as well as occupants’ behavioral aspects other relevant factors such as the geometry of the premises are critical in this process. Authors propose models, in which nodes are strategically placed, besides taking into consideration aspects of behavior. Several cases are analyzed.</p><p class="NormalLatinaVerdana"><strong>Findings:</strong> The solution proposed in this paper is to analyze the problem through dynamic flow networks, using a macroscopic model in a deterministic environment in which the evolution of the quantities characterizing the problem at regular intervals is represented, obtaining a reasonably accurate and reliable understanding of the development of the evacuation.</p><p class="NormalLatinaVerdana"><strong>Originality/value:</strong> A precise model of evacuation routes, convergence points and branches which includes a consideration of occupants’ behavior is obtained using stochastic models with microscopic analysis, in which people’s behavior is considered individually, this solution is complex, difficult to apply with many occupants and in large enclosures, and also, this way does not lead to optimal solutions.</p>
topic Building evacuation, evacuation optimization, optimal evacuation of buildings.
url http://www.jiem.org/index.php/jiem/article/view/635
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