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Establishment of Aqueous Film Forming Foam extinguishing agent minimum supply intensity model based on experimental method
Institution:1. Department of Civil and Environmental Engineering, Worcester Polytechnic Institute, Worcester, MA 01609, United States;2. Department of Fire Protection Engineering, Worcester Polytechnic Institute, Worcester, MA 01609, United States;1. State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, Anhui, 230026, PR China;2. SINOPEC Research Institute of Safety Engineering, Qingdao, Shandong, 266100, PR China;3. Hefei Institute for Public Safety Research, Tsinghua University, Hefei, Anhui, 230601, PR China
Abstract:In recent years, serious fire and explosion accident in petrochemical storage tanks have taken place frequently. Therefore, increasing the firefighting force in petrochemical parks is particularly important. The ambition of the paper is mainly studying the supply intensity of Aqueous Film Forming Foam (AFFF) extinguishing agent. Fire extinguishing agent demand calculation method that can be capable of matching fire scale is established by carrying out series of fire extinguishing experiments. 6% AFFF is chosen to carry out three groups of experiments respectively: fire extinguishing agent fluidity determination, series groups of small size simulation oil pool fire and 177 square meters of large oil pool fire extinguishing experiment. The situation of fire extinguishing on fuel surface of AFFF can be explored through experimental means under cold and hot conditions. The data obtained from experiments prove a higher conformity between covering process and covering model under the cold condition. The model can predict the cold coverage of AFFF effectively. After unifying the supply flow from each experiment, the statistics can be fitted and come to the minimum supply intensity algorithm of AFFF against the target storage tank specifications. The algorithm is used to estimate the minimum supply intensity when extinguishing full liquid surface fire. This model also can be used as reference for petrochemical fire protection.
Keywords:Petrochemical tank  Tank fire  AFFF  Supply intensity  Fire experiment
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