The accidental release of fuel in a confined or partially enclosures leads to the formation of flammable clouds at variable concentration. Eventually, concentration gradients and stratified (to the floor) or layered (to the ceiling) flammable clouds are formed. In low-strength enclosures (buildings or equipments) even very small quantities of fuel can be able to produce overpressures sufficient to determine significant explosion hazard. Few indications are given in the literature for the vent sizing in such cases. Moreover, the entire combustion phenomenon is poorly understood. A CFD code for the simulation of stratified methane-air explosion is adopted to compute the relevant parameters to determine the explosion hazard from small quantities of fuel. The dependence of the pressure rise and the rate of pressure rise with respect to the partial filling of the entire volume with a stoichiometric homogeneous mixture of methane-air have been computed in enclosures of different volume. A theoretical analysis of the results has allowed the determination of a possible correlation for the deflagration index KG with respect to the partial filling parameter, to be used in the well-known correlations for vent sizing.

LAYERED FUEL AIR MIXTURES EXPLOSION IN LOW-STRENGTH ENCLOSURE

Marra F S;Salzano E;
2004

Abstract

The accidental release of fuel in a confined or partially enclosures leads to the formation of flammable clouds at variable concentration. Eventually, concentration gradients and stratified (to the floor) or layered (to the ceiling) flammable clouds are formed. In low-strength enclosures (buildings or equipments) even very small quantities of fuel can be able to produce overpressures sufficient to determine significant explosion hazard. Few indications are given in the literature for the vent sizing in such cases. Moreover, the entire combustion phenomenon is poorly understood. A CFD code for the simulation of stratified methane-air explosion is adopted to compute the relevant parameters to determine the explosion hazard from small quantities of fuel. The dependence of the pressure rise and the rate of pressure rise with respect to the partial filling of the entire volume with a stoichiometric homogeneous mixture of methane-air have been computed in enclosures of different volume. A theoretical analysis of the results has allowed the determination of a possible correlation for the deflagration index KG with respect to the partial filling parameter, to be used in the well-known correlations for vent sizing.
2004
Istituto di Ricerche sulla Combustione - IRC - Sede Napoli
Proceedings of the 11th International Symposium Loss Prevention and Safety Promotion in the Process Industries
11th International Symposium Loss Prevention and Safety Promotion in the Process Industries Loss Prevention 200431 May - 3 June 2004, Praha, Czech Republic
8002015746
Sì, ma tipo non specificato
31 May - 3 June 2004
Praha, Czech Republic
4
none
Orlando, F; Marra, F S; Salzano, E; Russo, G
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/56720
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