Several Problems with Froude-Number Based Scale Modeling of Fires in Small Compartments
The Froude-number based reduced-scale modeling is a technique commonly used to investigate the flow of heat and mass in building fires. The root of the method is the thermodynamic model of a flow in a compartment and several non-dimensional flow numbers based on the proportionalities of the Navier-S...
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doaj-253ea7cce0fa462b94907c956e3ea6492020-11-25T02:32:42ZengMDPI AGEnergies1996-10732019-09-011219362510.3390/en12193625en12193625Several Problems with Froude-Number Based Scale Modeling of Fires in Small CompartmentsMateusz Zimny0Piotr Antosiewicz1Grzegorz Krajewski2Tomasz Burdzy3Adam Krasuski4Wojciech Węgrzyński5Faculty of Fire Safety Engineering, The Main School of Fire Service (SGSP), 01-629 Warsaw, PolandFire Research Department, Building Research Institute (ITB), 00-611 Warsaw, PolandFire Research Department, Building Research Institute (ITB), 00-611 Warsaw, PolandFaculty of Mining and Geoengineering, AGH University of Science and Technology, 30-059 Kraków, PolandFaculty of Fire Safety Engineering, The Main School of Fire Service (SGSP), 01-629 Warsaw, PolandFire Research Department, Building Research Institute (ITB), 00-611 Warsaw, PolandThe Froude-number based reduced-scale modeling is a technique commonly used to investigate the flow of heat and mass in building fires. The root of the method is the thermodynamic model of a flow in a compartment and several non-dimensional flow numbers based on the proportionalities of the Navier-Stokes and heat transfer equations. The ratio of inertial forces to the buoyancy forces, known as the Froude-number, plays a pivotal role within these proportionalities. This paper is an attempt to define the range of credible scale modeling using the Froude-number. We verify the credibility of the modeling by small fire (approximately 150 kW) in a small compartment, comparing data from a physical test (scale 1:1 and 1:4) and the numerical model’s data (Fire Dynamics Simulator, scales 1:1, 1:2, 1:4, 1:10, 1:20, and 1:50). The scope of the research covers a wide range of fires, with observed change of the flow from turbulent to laminar. The results show that the applicability of Froude-number reduced-scale modeling has limitations related to the scale. Therefore, it should be applied with care following sensibility analysis. We propose a method for sensibility analysis using Computational Fluid Dynamics (CFD) modeling.https://www.mdpi.com/1996-1073/12/19/3625fireFroude numberscale modelingfire modelingCFDFDS |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mateusz Zimny Piotr Antosiewicz Grzegorz Krajewski Tomasz Burdzy Adam Krasuski Wojciech Węgrzyński |
spellingShingle |
Mateusz Zimny Piotr Antosiewicz Grzegorz Krajewski Tomasz Burdzy Adam Krasuski Wojciech Węgrzyński Several Problems with Froude-Number Based Scale Modeling of Fires in Small Compartments Energies fire Froude number scale modeling fire modeling CFD FDS |
author_facet |
Mateusz Zimny Piotr Antosiewicz Grzegorz Krajewski Tomasz Burdzy Adam Krasuski Wojciech Węgrzyński |
author_sort |
Mateusz Zimny |
title |
Several Problems with Froude-Number Based Scale Modeling of Fires in Small Compartments |
title_short |
Several Problems with Froude-Number Based Scale Modeling of Fires in Small Compartments |
title_full |
Several Problems with Froude-Number Based Scale Modeling of Fires in Small Compartments |
title_fullStr |
Several Problems with Froude-Number Based Scale Modeling of Fires in Small Compartments |
title_full_unstemmed |
Several Problems with Froude-Number Based Scale Modeling of Fires in Small Compartments |
title_sort |
several problems with froude-number based scale modeling of fires in small compartments |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2019-09-01 |
description |
The Froude-number based reduced-scale modeling is a technique commonly used to investigate the flow of heat and mass in building fires. The root of the method is the thermodynamic model of a flow in a compartment and several non-dimensional flow numbers based on the proportionalities of the Navier-Stokes and heat transfer equations. The ratio of inertial forces to the buoyancy forces, known as the Froude-number, plays a pivotal role within these proportionalities. This paper is an attempt to define the range of credible scale modeling using the Froude-number. We verify the credibility of the modeling by small fire (approximately 150 kW) in a small compartment, comparing data from a physical test (scale 1:1 and 1:4) and the numerical model’s data (Fire Dynamics Simulator, scales 1:1, 1:2, 1:4, 1:10, 1:20, and 1:50). The scope of the research covers a wide range of fires, with observed change of the flow from turbulent to laminar. The results show that the applicability of Froude-number reduced-scale modeling has limitations related to the scale. Therefore, it should be applied with care following sensibility analysis. We propose a method for sensibility analysis using Computational Fluid Dynamics (CFD) modeling. |
topic |
fire Froude number scale modeling fire modeling CFD FDS |
url |
https://www.mdpi.com/1996-1073/12/19/3625 |
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