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FTA를 이용한 볼트 유도가열시스템의 고장 및 전기화재 분석
김두현,김성철,엄한얼,강문수,정천기,Kim, Doo-Hyun,Kim, Sung-Chul,Eom, Haneol,Kang, Moon-Soo,Jeong, Cheon-Kee 한국안전학회 2021 한국안전학회지 Vol.36 No.4
This paper presents a safety assessment method for FTA-based induction heating systems; the failures and causes of electrical fire are first analyzed for each part and module qualitatively, and methods to manage high probabilities of failure and electrical fire are considered, thereby improving the reliability of the induction heating system. The cumulative importance value (ACC) of the minimal cut set is drawn by setting failure as the top event, and STACK and SMPS are observed to account for about 70% of the induction heating system failures. Thus, intensively managing the basic events contained in the minimal cut set of failures for STACK and SMPS is expected to provide effective and stable operation of the induction heating system. When electrical fire is set as the top event, the STACK percentage is 90%. Accordingly, the current IGBT is changed to a FET to increase the applied voltage and prevent induction heating system failure, and a heat sink plane is installed to prevent FET heating caused by switching, thereby preventing an electrical fire. By classifying the parts and modules of the induction heating system in detail and by applying FTA based on actual failure rates and relevant data, more practical and reasonable results may be expected. Hence, continuous research must be conducted to ensure safety when using induction heating systems.
Mistuning Intensity Effect to Optimization of Mistuning pattern for Bladed Disk
최병근(ByeongKeun Choi),김학은(Kim Hack Eun),김효중(Kim Hyo Jung),정한얼(Jeong Haneol),구동식(Gu DongSik) 한국유체기계학회 2006 유체기계 연구개발 발표회 논문집 Vol.- No.-
In turbomachinery rotor, there are small differences in the structural and/or geometrical properties of individual blades, which are referred to as blade mistuning. Mistuning effects of the forced response of bladed disks can be extremely large as often reported in many studies. In this paper, the pattern optimization of intentional mistuning for bladed disks considering with intentional mistuning intensity effect is the focus of the present investigation. More specifically, the class of intentionally mistuned disks considered here is limited, for cost reasons, to arrangements of two types of blades (A and B, say) and Genetic Algorithm is used to optimize the arrangement of these blades around the disk to reduce the forced response of blade with intentional mistuning intensity levels.