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Simulation on Heat Transfer and Emergency Protection of Tanks in a Tank Farm under Fire Scenario

Bibliographic Data

ID15499883
AuthorsYingwei Bao (Qingdao University of Science and Technology), Feng Zhang (0000-0002-7444-1103, Qingdao University of Science and Technology, corresponding author), Jiaji Cheng (0000-0002-8882-4295, Qingdao University of Science and Technology), Yapeng Wang (0000-0002-8085-9311, Qingdao University of Science and Technology), Yu Guan (0000-0003-0357-5646, Qingdao University of Science and Technology), Junjie Ren (0009-0006-6293-1267, Qingdao University of Science and Technology), Fangbo Jin (Qingdao University of Science and Technology), Yunfei Cheng (0000-0001-6164-4430, Qingdao University of Science and Technology), Weilun Xie (Qingdao University of Science and Technology)
Year2023
Volume20
Issue7
Pages5348-5348
Publication date2023-03-31
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph20075348
PMID37047963
OpenAlexW4362464874
LanguageEN
References cited21

It is very important to understand the heat transfer process between storage tanks in a tank farm under a fire scenario, which is one of the key factors in determining the consequences of accident development. In this paper, a CFD simulation is used to study the heat transfer process and emergency protection of tanks under a fire scenario. The simulated results show that the changes in wind speed can affect the heat transfer of the tank farm. The highest temperature of the tanks at 5.3 m/s (wind speed) is 1432 K, while the highest temperature at 17.1 m/s (wind speed) is 1556 K. At the same time, the changes in wind direction can also affect the heat transfer of the tank farm. For the 45° east by north (wind direction), almost all tanks in the tank farm are affected by the fire. When the water curtain was applied as an emergency protection measure, the simulated highest temperature of the tanks decreased to 779 K (the cooling water intensity 6 L/min·m 2 ), while the highest temperature of the tanks was 1432 K without water curtain protection under the actual fire conditions. The simulated highest temperature of the tanks decreased to 671 K when the emergency thermal insulation coating was sprayed on the surface of the tanks, which can effectively protect the adjacent tanks from being destroyed

Civil engineering · Fire protection · Firefighting · Heat transfer · Marine engineering · Mechanics · Meteorology · Storage tank · Waste management · Water tanks · Wind speed · Chemistry · Combustion and Detonation Processes · Engineering · Environmental Science · Risk and Safety Analysis · Wind and Air Flow Studies · Environmental Engineering

Citation velocityhistorical
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