Mathematical Modelling And Simulation Of Heat Dispersion Due To Fire And Explosion

Fire and explosion are among the commonly occurring major hazards in the operation of chemical plants. In this paper, a mathematical model for heat dispersion in the event of an industrial fire and explosion is presented. The model is simulated numerically within MATLAB environment to provide both t...

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Main Authors: Lim, Wan Piang, Ahmad, Arshad
Format: Article
Language:English
Published: Penerbit UTM Press 2002
Subjects:
Online Access:http://eprints.utm.my/1442/
http://eprints.utm.my/1442/1/JT37F%5B2%5D.pdf
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author Lim, Wan Piang
Ahmad, Arshad
author_facet Lim, Wan Piang
Ahmad, Arshad
author_sort Lim, Wan Piang
building UTeM Institutional Repository
collection Online Access
description Fire and explosion are among the commonly occurring major hazards in the operation of chemical plants. In this paper, a mathematical model for heat dispersion in the event of an industrial fire and explosion is presented. The model is simulated numerically within MATLAB environment to provide both the time and space dependence of the heat flux and temperature using a finite difference method. Three classes of fire were considered. These are pool fire, flash fire and fireball following the event of Boiling Liquid Expanding Vapour (BLEVE). The simulation program that has been developed is employed to study the impact of the three types of fire hazard on a LPG storage facility at the Chemical Engineering Pilot Plant in the Universiti Teknologi Malaysia. The results obtained highlights the various hazard condition for all the three events, with fireball imposing the most severe condition by having safety distance of 300 meters away from the source of release, within which fatalities are expected.
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spelling utm-14422017-11-01T04:17:42Z http://eprints.utm.my/1442/ Mathematical Modelling And Simulation Of Heat Dispersion Due To Fire And Explosion Lim, Wan Piang Ahmad, Arshad TP Chemical technology Fire and explosion are among the commonly occurring major hazards in the operation of chemical plants. In this paper, a mathematical model for heat dispersion in the event of an industrial fire and explosion is presented. The model is simulated numerically within MATLAB environment to provide both the time and space dependence of the heat flux and temperature using a finite difference method. Three classes of fire were considered. These are pool fire, flash fire and fireball following the event of Boiling Liquid Expanding Vapour (BLEVE). The simulation program that has been developed is employed to study the impact of the three types of fire hazard on a LPG storage facility at the Chemical Engineering Pilot Plant in the Universiti Teknologi Malaysia. The results obtained highlights the various hazard condition for all the three events, with fireball imposing the most severe condition by having safety distance of 300 meters away from the source of release, within which fatalities are expected. Penerbit UTM Press 2002-12 Article PeerReviewed application/pdf en http://eprints.utm.my/1442/1/JT37F%5B2%5D.pdf Lim, Wan Piang and Ahmad, Arshad (2002) Mathematical Modelling And Simulation Of Heat Dispersion Due To Fire And Explosion. Jurnal Teknologi F (37F). pp. 15-26. ISSN 0127-9696 http://www.penerbit.utm.my/onlinejournal/37/F/JT37F2.pdf
spellingShingle TP Chemical technology
Lim, Wan Piang
Ahmad, Arshad
Mathematical Modelling And Simulation Of Heat Dispersion Due To Fire And Explosion
title Mathematical Modelling And Simulation Of Heat Dispersion Due To Fire And Explosion
title_full Mathematical Modelling And Simulation Of Heat Dispersion Due To Fire And Explosion
title_fullStr Mathematical Modelling And Simulation Of Heat Dispersion Due To Fire And Explosion
title_full_unstemmed Mathematical Modelling And Simulation Of Heat Dispersion Due To Fire And Explosion
title_short Mathematical Modelling And Simulation Of Heat Dispersion Due To Fire And Explosion
title_sort mathematical modelling and simulation of heat dispersion due to fire and explosion
topic TP Chemical technology
url http://eprints.utm.my/1442/
http://eprints.utm.my/1442/
http://eprints.utm.my/1442/1/JT37F%5B2%5D.pdf