Limiting Distances for Flame Merging of Multiple n-Heptane and Di-tert-Butyl Peroxide Pool Fires

Experiments to determine the limiting distances for flame merging of multiple pool fires are presented. As model substances n-heptane and di-tert-butyl peroxide are used. Laboratory scale tests with a diameter d = 6 cm and relative distances between the pools of 0.08 = D/d = 4 are described and comp...

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Main Authors: S. Schaelike, K. Mishra, K.D. Wehrstedt, A. Schonbucher
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2013-06-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/6415
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spelling doaj-2fe0695d4d284217a395acf1e1a106392021-02-22T21:00:20ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162013-06-013210.3303/CET1332021Limiting Distances for Flame Merging of Multiple n-Heptane and Di-tert-Butyl Peroxide Pool FiresS. SchaelikeK. MishraK.D. WehrstedtA. SchonbucherExperiments to determine the limiting distances for flame merging of multiple pool fires are presented. As model substances n-heptane and di-tert-butyl peroxide are used. Laboratory scale tests with a diameter d = 6 cm and relative distances between the pools of 0.08 = D/d = 4 are described and complemented with field experiments with a diameter d = 1.5 m and relative distances between the pools of 0.17 = D/d = 1. Three regions for flame merging are observed and limiting distances are determined. A merging region with the limiting distance Dmerg/d within which all flames merge together over the complete burning time. A transition region with the limiting distance Dtran/d within which some flames merge together while other flames are separated from each other. A separated region within which all flames are completely separated from each other. A correlation against the number of burning pools is presented to predict the limiting distances Dmerg/d und Dtran/d.https://www.cetjournal.it/index.php/cet/article/view/6415
collection DOAJ
language English
format Article
sources DOAJ
author S. Schaelike
K. Mishra
K.D. Wehrstedt
A. Schonbucher
spellingShingle S. Schaelike
K. Mishra
K.D. Wehrstedt
A. Schonbucher
Limiting Distances for Flame Merging of Multiple n-Heptane and Di-tert-Butyl Peroxide Pool Fires
Chemical Engineering Transactions
author_facet S. Schaelike
K. Mishra
K.D. Wehrstedt
A. Schonbucher
author_sort S. Schaelike
title Limiting Distances for Flame Merging of Multiple n-Heptane and Di-tert-Butyl Peroxide Pool Fires
title_short Limiting Distances for Flame Merging of Multiple n-Heptane and Di-tert-Butyl Peroxide Pool Fires
title_full Limiting Distances for Flame Merging of Multiple n-Heptane and Di-tert-Butyl Peroxide Pool Fires
title_fullStr Limiting Distances for Flame Merging of Multiple n-Heptane and Di-tert-Butyl Peroxide Pool Fires
title_full_unstemmed Limiting Distances for Flame Merging of Multiple n-Heptane and Di-tert-Butyl Peroxide Pool Fires
title_sort limiting distances for flame merging of multiple n-heptane and di-tert-butyl peroxide pool fires
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2013-06-01
description Experiments to determine the limiting distances for flame merging of multiple pool fires are presented. As model substances n-heptane and di-tert-butyl peroxide are used. Laboratory scale tests with a diameter d = 6 cm and relative distances between the pools of 0.08 = D/d = 4 are described and complemented with field experiments with a diameter d = 1.5 m and relative distances between the pools of 0.17 = D/d = 1. Three regions for flame merging are observed and limiting distances are determined. A merging region with the limiting distance Dmerg/d within which all flames merge together over the complete burning time. A transition region with the limiting distance Dtran/d within which some flames merge together while other flames are separated from each other. A separated region within which all flames are completely separated from each other. A correlation against the number of burning pools is presented to predict the limiting distances Dmerg/d und Dtran/d.
url https://www.cetjournal.it/index.php/cet/article/view/6415
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