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Titel och upphov A mathematical model for calculating heat release in the Room Corner test
Utgivning, distribution etc. Lund University, Institute of Technology, Dept. of Fire Safety Engineering, Lund : 1992
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Fysisk beskrivning
Serietitel - biuppslagsform Report / Lund University, Sweden, Institute of Science and Technology, Department of Fire Safety Engineering ; 3063, ISSN 0284-933X
Anmärkning: Allmän På omslaget: Research financed by the Swedish Fire Research Board (Brandforsk).
Anmärkning: Innehållsbeskrivning, sammanfattning A mathematical model is presented for calculating heat release rate in the Room Corner test, where lining materials are mounted on both walls and ceiling. The model is based on a thermal theory for concurrent flow flame spread. By using a simple mathematical representation of the heat release rate from the Cone Calorimeter, analytical solutions are arrived ar for the velocity and position of the pyrolysis front in the Room Corner test as well as the heat release rate from the burning material. Results from calculations are compared with experiments, showing good agreement for 11 materials out of 12. Brandforskprojekt.
Term Matematiska modeller Värme
Ägande institution
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*008930623s1992 sw ze 00 0 eng
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*440 $aReport / Lund University, Sweden, Institute of Science and Technology, Department of Fire Safety Engineering ;$v3063,$x0284-933X
*500 $aPå omslaget: Research financed by the Swedish Fire Research Board (Brandforsk).
*520 $bA mathematical model is presented for calculating heat release rate in the Room Corner test, where lining materials are mounted on both walls and ceiling. The model is based on a thermal theory for concurrent flow flame spread. By using a simple mathematical representation of the heat release rate from the Cone Calorimeter, analytical solutions are arrived ar for the velocity and position of the pyrolysis front in the Room Corner test as well as the heat release rate from the burning material. Results from calculations are compared with experiments, showing good agreement for 11 materials out of 12. Brandforskprojekt.
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*650 7$aMatematiska modeller$2sao
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