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통신 안테나용 허니콤 샌드위치 구조물의 충격 손상에 관한 연구
김차겸,이라미,박현철,황운봉,박위상,Kim, Cha-Gyeom,Lee, Ra-Mi,Park, Hyeon-Cheol,Hwang, Un-Bong,Park, Wi-Sang 대한기계학회 2002 大韓機械學會論文集A Vol.26 No.2
The impact response and damage of CLAS panel was investigated experimentally. The facesheet material used was RO4003 woven-glass hydrocarbon/ceramic and the core material was Nomex honeycomb with a cell size of 3.2mm and a density of 96 kg/㎥. The shield plane used was RO4003 and 2024-T3 aluminum. Static indentation and impact test was conducted to characterize the type and extent of the damage observed in two CLAS panels, and the performance of antenna used in a wireless LAN system. Correlation of peak contact force, residual indentation and the delamination area shows impact damage of the panel with an aluminum shield plane is larger than that of the panel with RO4003 shield plane, although the former is more penetration resistant. The damage was observed by naked eye, ultrasonic inspection and cross sectioning. The shape and size of delamination was estimated by ultrasonic inspection, and the area of delamination linearly increases as impact energy increases. The performance of impact damaged antenna was estimated by measuring return loss and radiation pattern. It was revealed that the performance of antenna was related to the impact damage and there was a threshold that the performance of antenna fell as impact energy level changed. The threshold was between the impact energies of 1.5J and 1.75J.
3차원 점성토(粘性土) 운송(運送) 모델의 개발(開發)과 수영만(水營灣)의 부유물질 확산
김차겸,이종섭,Kim, Cha Kyum,Lee, Jong Sup 대한토목학회 1993 대한토목학회논문집 Vol.13 No.1
유한차분법으로 3차원 점성토 수송 모델 COSETM-3을 개발하여 개수로의 중층에서 시간에 따른 부유니의 상대농도에 관한 실험결과(實驗結果)와 비교하였으며, 그 결과 잘 일치하였다. 모델의 현지(現地) 적용성(適用性)과 수영만(水營灣)의 SS(Suspended Solids) 확산을 조사하기 위해 대조기(大潮期) 수평시(平水時)와 홍수시(洪水時)에 모델을 수영만에 적용하여 수영강(水營江)에서 유출되는 SS의 거동(擧動)을 해석하였으며, 그 결과 현지의 SS 거동을 정성적으로 잘 예측하였다. 침강속도가 SS의 농도분포에 미치는 영향에 대해서도 검토하였다. 침강(沈降)을 고려하지 않은 경우 SS 농도는 표층이 저층보다 높게 나타났으나, 침강(沈降)을 고려했을 경우에는 저층이 표층보다 높게 나타났다. 그리고, 표층에서는 활발한 해수교환으로 인해 SS의 변동폭이 크게 나타났으나, 저층에서는 해수교환(海水交換)이 약하기 때문에 SS의 변동폭이 상대적으로 작게 나타났다. 홍수시(洪水時) SS 확산패턴은 평수시(平水時)와 유사하게 나타났으나, SS 농도는 평수시(平水時)보다 훨씬 높게 나타났다. 첨두유량이 발생할 때까지 SS 농도는 점차 증가하였으나, 첨두유량이 발생한 이 후부터 SS 농도는 유출량(流出量)의 감소로 인해 점차 감소하였다. Three-dimensional cohesive sediment transport model, COSETM-3, is develpoed using a finite difference method. The model results are compared with the physical experimental results for the relative concentration with time at the mid-depth of the recirculating flume and are found to be in good agreement. This model is applied to Suyoung Bay in Pusan of Korea to verify the field applicability of the model and to investigate on the SS (suspended solids) diffusion phenomena at the bay. Behaviors of discharging SS from Suyoung River at normal river flow and flood river flow are predicted. The numerical results appear to be reasonable and qualitative agreement with field data. The influence of settling velocity on the concentration distribution of SS is also investigated. In case of not considering settling velocity, SS concentration at surface layer is higher than that at lower layer, but in case of considering settling velocity, SS concentration at lower layer is higher than that at surface layer. The fluctuation of SS concentration at surface layer is large due to the strong mixing, but the fluctuation of the concentration at lower layer is small due to the weak mixing. SS diffusion patterns at flood river flow are similar to those at normal river flow, while the concentration at that flow is so much higher than that at this flow. SS concentration increases with time until the peak discharge occurs, but the concentration decreases with time with decreasing river flow after the peak discharge.
김차겸,강태순 해양환경안전학회 2023 해양환경안전학회지 Vol.29 No.7
태풍 매미 통과 시에 부산연안에서 폭풍해일고를 해석하기 위한 수치실험을 수행하였다. 태풍 매미는 2003년 9월 12일 21:00에 중심기압 950hPa로 우리나라 남해안에 상륙하였으며, 지난 수십년 간에 걸쳐 최악의 해안재해로 기록되었다. 태풍 매미 통과시 부산항, 여수항, 통영항, 마산항, 제주항 및 서귀포항에서 관측된 폭풍해일고와 계산된 해일고의 시계열을 비교하였으며, 계산결과와 관측결과는 잘 일치하였다. 태풍해일고는 마산항에서 약 230 cm로 가장 크게 나타났으며, 여수항과 통영항에서는 약 200 cm, 부산항에서는 약 75 cm로 나타났다. 폭풍해일 수치실험결과, 부산 동부 연안에서 해일고는 52∼55 cm 범위이고, 외해로 갈수록 해일고는 감소하였다. 따라서 반폐쇄된 만에서는 해일고의 상승으로 인한 연안 침수범람 피해가 크게 발생할 것으로 사료되며, 본 수치실험결과는 태풍으로 인한 연안재해 저감을 위한 중요한 자료로 사용될 수 있다. A numerical simulations were performed to investigate the storm surge during the passage of Typhoon Maemi on the coast of Busan. The typhoon landed on the southern coasts of Korean Peninsula at 21:00, September 12, 2003 with a central pressure of 950 hPa, and the typhoon resulted on the worst coastal disaster on the coast of Busan in the last decades. Observed storm surges at Busan, Yeosu, Tongyoung, Masan, Jeju and Seogwipo harbors during the passage of the typhoon were compared with the computed data. The simulated storm surge time series were in good agreement with the observations. The simulated peak storm surges were estimated to be 230 cm at Masan harbor, 200 cm at Yeosu harbor and Tongyoung harbor, and 75 cm at Busan harbor. The computed storm surges along the east coast of Busan measure 52 to 55 cm, exhibiting a gradual reduction in surge height as one moves further from the coast of Busan. Therefore, coastal inundation due to the storm surge in the semi-enclosed bay can induce great disasters, and the simulated results can be used as the important data to reduce the impact of a typhoon-induced coastal disaster in the future.