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The report gives a guideline for assessment of smoke hazard from hydrocarbon fires offshore. The first element of the hazard assessment is prediction of smoke production rates. This is based on laboratory scale experiments with liquid hydrocarbon pool fires, calculations by the computer model KAMELEON FIRE E-3D and on theoretical considerations. The second part is prediction of smoke transport and dispersion, done by stationary calculation by the 3 - dimensional field model KAMELEON II for various scenarios of offshore environmental conditions. The third part is a conversion of gas and soot concentration to toxic hazard and reduced visibility for people on board a platform.
The report gives a guideline for assessment of smoke hazard from hydrocarbon fires offshore. The first element of the hazard assessment is prediction of smoke production rates. This is based on laboratory scale experiments with liquid hydrocarbon pool fires, calculations by the computer model KAMELEON FIRE E-3D and on theoretical considerations. The second part is prediction of smoke transport and dispersion, done by stationary calculation by the 3 - dimensional field model KAMELEON II for various scenarios of offshore environmental conditions. The third part is a conversion of gas and soot concentration to toxic hazard and reduced visibility for people on board a platform.
Smoke Hazard in Offshore Platform Fires
1991
49 pages
Report
No indication
English
Solid Wastes Pollution & Control , Air Pollution & Control , Toxicology , Mineral Industries , Offshore structures , Fire safety , Hazardous materials , Offshore drilling , Smoke , Hydrocarbons , Mathematical models , Liquids , Computerized simulation , Dispersing , Three dimensional flow , Toxicity , Environmental transport , Visibility , Heat stress , Flow distribution , Carbon monoxide , Carbon dioxide , Oxygen , Concentration(Composition) , Foreign technology , Soot
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