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원전용 금속단열재의 내부 형상결정을 위한 설계인자 별 열전달 특성 분석
송기오(Ki O Song),유정호(Jeong Ho Yu),이태호(Tae Ho Lee),전현익(Hyun Ik Jeon),하승우(Seung Woo Ha),조선영(Sun Young Cho) 대한기계학회 2015 大韓機械學會論文集A Vol.39 No.11
일반적으로 산업현장에서 많이 사용되고 있는 단열재는 유리섬유와 같은 열전도도가 낮은 재료를 사용함으로써 단열성능을 확보하고 있다. 이와 달리 원전용 금속단열재의 경우 높은 열전도도를 가진 TP 304 스테인리스 박판을 재료로 한정하고 있어 단열성능을 확보하기 위해서는 구조적 측면에서의 접근이 필요하다. 본 연구에서는 금속단열재 내부구조에 대한 설계인자를 전도, 대류, 복사로 구성된 3가지 열전달 모드를 고려해 추출하고 각 인자들이 열전달에 미치는 영향과 각각의 열전달이 전체 열전달에 차지하는 비율을 열 유동해석을 이용하여 파악하고자 하였다. 본 연구를 통해 단열재 내부에서 발생되는 대류현상을 최소화하기 위해 다수의 박판을 삽입함과 동시에 증가하는 전도 비율을 비교하여 내부형상결정을 위한 세 가지 열전달 모드 하에서의 단열성능을 분석하였다. A heat insulating material used in the industrial site normally derives its heat insulating performance by using a low thermal conductivity material such as glass fiber. In case of the metal insulation for nuclear power plant, in contrast, only TP 304 stainless steel foil having high thermal conductivity is the only acceptable material. So, it is required to approach in structural aspect to ensure the insulation performance. In this study, the design factors related to the metal insulation internal structure were determined considering the three modes of heat transfer, i.e., conduction, convection, and radiation. The analysis of heat flow was used to understand the ratio of the heat transfer from each factor to the overall heat transfer from all the factors. Based on this study, in order to minimize the convection phenomenon caused by the internal insulation, a multiple foil was inserted in the insulation. The increase in the conduction heat transfer rate was compared, and the insulation performance under the three modes of heat transfer was analyzed in order to determine the internal geometry.
송기오(Ki-O Song),정용민(Yong-Min Jung),정혁구(Hyeok-Koo Jung) 대한전자공학회 2010 대한전자공학회 학술대회 Vol.2010 No.6
By relay-based cooperative communication algorithm at the wireless LAN environment, performance enhance through channel encode and transmission diversity method in this paper. The proposed channel encode is composed of convolution encoder and viterbi decoder, transmission diversity is composed of repetitive transmission and space time block code(STBC).
용접부의 결함이 소구경배관의 공진 주파수에 미치는 영향 분석
윤민수 ( Min Soo Yoon ),송기오 ( Ki O Song ),이재민 ( Jae Min Lee ),하승우 ( Seung Woo Ha ),조선영 ( Sun Young Cho ) 한국안전학회(구 한국산업안전학회) 2018 한국안전학회지 Vol.33 No.5
The piping system of a nuclear power plant plays a role of transferring high energy fluid to equipment and various devices. The safety and soundness of these piping systems are very closely related to the operability of the power plant. In the case of a welded part of a small diameter pipe, it may grow as a microcrack due to a lack of penetration, and it may grow to a size that affects the safety of the pipe due to the influence of mechanical vibration and fatigue load. Resonance refers to an increase in energy as the natural frequency of an object coincides with the frequency applied to the external force. When this resonance occurs, the frequency is the resonance frequency. In this study, when defects exist in the welds of small diameter pipe, the natural frequency of the pipe changes and resonance may occur. Since these resonances are likely to cause fatigue damage to the piping, resonance frequency changes due to the size and shape of the defects are analyzed and evaluated. As a result of the vibration test, the resonance frequency tended to decrease as the depth of the defect deepened, and the influence was larger when the defect existed at the bottom of the top of the trough. Also, it was confirmed that the Transverse cracks had an effect on the resonance frequency in the presence of the cracks in the weld bead, compared to the longitudinal cracks. As a result of this study, it is expected that the cause of the defect and the condition of the pipe can be monitored because the resonance frequency tendency according to the shape of the crack is analyzed.