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차유홍(You-Hong Cha),방부형(Boo Hyoung Bang),박정재(Jung-Jae Park),윤석구(Sam Sukgoo Yoon) 대한기계학회 2014 대한기계학회 춘추학술대회 Vol.2014 No.11
The greatest risk to safety in petrochemical refinery plants is an unexpected explosion. Although thermal damage to equipment may be significant, perhaps the more critical immediate risk is the pressure rise from the blast wave that could damage or destroy essential infrastructure and lead to loss of life. For this reason, numerical prediction of blast wave characteristics and their effects on the nearby structures, such as pipes and tanks, is crucial to assessing the risks of potential accidents. To this end, numerical simulations of pipe damage due to blast waves from a methane explosion are presented. Predicting the features and characteristics of the blast waves, which may result in pipe deformation, will help refinery engineers improve plant safety.