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Abstract Most ship’s accidents are accompanied by flooding. After accidents, incoming water propagates along with complex compartments of the ship cause of flooding. It makes complicated to design the arrangement of a ship considering flooding. At the intermediate stage of flooding, dynamic effects such as waves, and winds and various factors that make ships motion while flooding can lead to a more severe condition of the ship than the final state. For the robust design, nevertheless, it is necessary to consider the flooding process when designing the arrangement of ships. However, most shipbuilding companies carried out arrangement design only considering the final state of damage that generally induce the flooding. They refer to the previous data of arrangement design and modify some parts of the data for a new ship when needed based on expert’s experiences. In this process, flooding is indirectly reflected in the way of examining the damage stability. To improve the arrangement design considering flooding, we propose an optimal arrangement method of a ship. In this study, for optimal arrangement design of ships, we considered three aspects of stability, vulnerability, and operability for initial arrangement design. To evaluate stability which is the most important part, Position Based Dynamics (PBD) which is a kind of mesh-free particle method was modified and applied. Using PBD, the flowrate of the inflow of water due to flooding was calculated. After, the ship's motion due to flooding in the time domain can be calculated. Objective functions such as the total time to flooding and the severity of motion during flooding were applied. To evaluate the vulnerability, we consider the bulkhead and the room vulnerability due to the various damage. Lastly, to evaluate the operability, movement efficiency of crew and cargos was considered using affinity and antagonism between rooms. Of course, constraints for requirements such as damage stability and intact stability were included in the formulation. The proposed method was applied to an example of a naval ship that survivability is one of the important issues. The result shows the applicability of the proposed method at the arrangement design of the ship.
Publication Date 2020-11-24

Ki-Su Kim, Myung-Il Roh, "Optimization of the Arrangement Design of a Ship Considering the Multiple Performance", Proceedings of ACSMO(Asian Congress of Structural and Multidisciplinary Optimization) 2020, Seoul, Korea, pp. 167, 2020.11.23-25


List of Articles
번호 분류 제목 Publication Date
396 Domestic Conference 김진혁, 노명일, 김기수, 여인창, 남정우, 이상현, 장영훈, "딥 러닝을 이용한 선형 성능의 우열 관계 예측", 2021년도 대한조선학회 춘계학술발표회, 인천, pp. 572, 2021.05.13-14 file 2021-05-13
395 Domestic Conference 여인창, 노명일, 김진혁, 김기수, "선형 성능의 정성적 평가를 위한 딥 러닝 기반 이미지 시각화 방법", 2021년도 대한조선학회 춘계학술발표회, 인천, pp. 573, 2021.05.13-14 file 2021-05-13
394 Domestic Conference 이종혁, 노명일, 김기수, 이혜원, "선박 및 해양 구조물의 자동 접이안 시뮬레이션 방법", 2021년도 대한조선학회 춘계학술발표회, 인천, pp. 562, 2021.05.13-14 file 2021-05-13
393 Domestic Conference 하지상, 노명일, 김진혁, 김기수, "경로 탐색 알고리즘과 전문가 시스템을 활용한 배관 경로 생성 최적화 방법", 2021년도 대한조선학회 춘계학술발표회, 인천, pp. 409, 2021.05.13-14 file 2021-05-13
392 Domestic Conference 노명일, "선박 설계, 생산 및 운용 단계에서의 딥 러닝 활용 예, 2020년도 선박해양플랜트구조연구회 워크샵, 2021.02.18 2021-02-18
391 Domestic Conference 김기수, 김종웅, 노명일, "대기 행렬과 DEVS 기반 함정의 승조원 운영 최적화 방법", 2020년도 한국CDE학회 동계학술발표회, 제주, pp. 311, 2020.11.25-28 file 2020-11-25
» International Conference Ki-Su Kim, Myung-Il Roh, "Optimization of the Arrangement Design of a Ship Considering the Multiple Performance", Proceedings of ACSMO 2020, Seoul, Korea, pp. 167, 2020.11.23-25 file 2020-11-24
389 International Conference Jisang Ha, Myung-Il Roh, Hye-Won Lee, Jong-Ho Eun, Jong-Jin Park, Hyun-Joe Kim, "A Method of the Collision Avoidance of a Ship Using Real-time AIS Data", Proceedings of ACSMO 2020, Seoul, Korea, pp. 106, 2020.11.23-25 file 2020-11-23
388 Domestic Conference 하지상, 노명일, 김기수, "전문가 시스템과 최적화 기법 기반 배관 라우팅 방법", 2020년도 대한조선학회 추계학술발표회, 창원, pp. 402, 2020.11.05-06 file 2020-11-06
387 Domestic Conference 이준범, 노명일, 김기수, 한기민, 이갑헌, "딥 러닝을 이용한 해기상 및 소요 마력 예측 모델 개발", 2020년도 대한조선학회 추계학술발표회, 창원, pp. 453-454, 2020.11.05-06 file 2020-11-06
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