A methodology for evacuation route planning inside buildings using geospatial technology


Autoria(s): Ramon-Morte, A.; Rodríguez Hidalgo, A.B.; Navarro Carrión, José Tomás; Zaragozí Zaragozí, Benito Manuel
Contribuinte(s)

Universidad de Alicante. Departamento de Análisis Geográfico Regional y Geografía Física

Universidad de Alicante. Instituto Interuniversitario de Geografía

Medio, Sociedad y Paisaje (MedSPai)

Planificación y Gestión Sostenible del Turismo

Data(s)

21/10/2014

21/10/2014

2013

Resumo

Evacuation route planning is a fundamental task for building engineering projects. Safety regulations are established so that all occupants are driven on time out of a building to a secure place when faced with an emergency situation. As an example, Spanish building code requires the planning of evacuation routes on large and, usually, public buildings. Engineers often plan these routes on single building projects, repeatedly assigning clusters of rooms to each emergency exit in a trial-and-error process. But problems may arise for a building complex where distribution and use changes make visual analysis cumbersome and sometimes unfeasible. This problem could be solved by using well-known spatial analysis techniques, implemented as a specialized software able to partially emulate engineer reasoning. In this paper we propose and test an easily reproducible methodology that makes use of free and open source software components for solving a case study. We ran a complete test on a building floor at the University of Alicante (Spain). This institution offers a web service (WFS) that allows retrieval of 2D geometries from any building within its campus. We demonstrate how geospatial technologies and computational geometry algorithms can be used for automating the creation and optimization of evacuation routes. In our case study, the engineers’ task is to verify that the load capacity of each emergency exit does not exceed the standards specified by Spain’s current regulations. Using Dijkstra’s algorithm, we obtain the shortest paths from every room to the most appropriate emergency exit. Once these paths are calculated, engineers can run simulations and validate, based on path statistics, different cluster configurations. Techniques and tools applied in this research would be helpful in the design and risk management phases of any complex building project.

Identificador

WIT Transactions on Information and Communication Technologies. 2013, 45: 155-166. doi:10.2495/DATA130141

1746-4463 (Print)

1743-3517 (Online)

http://hdl.handle.net/10045/41464

10.2495/DATA130141

Idioma(s)

eng

Publicador

WIT Press

Relação

http://dx.doi.org/10.2495/DATA130141

Direitos

© 2013 WIT Press

info:eu-repo/semantics/restrictedAccess

Palavras-Chave #Emergency evacuation #Route planning #Building engineering #Geospatial technology #Análisis Geográfico Regional
Tipo

info:eu-repo/semantics/article