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Long-term approach for assessment of sloshing loads in LNG carrier,Part I: Comparison of Short- and Long-term approaches
Institution:1. School of AI Convergence, Sungshin Women''s University, 2, Bomun-Ro 34da-gil, Seongbuk-Gu, Seoul, 02844, Republic of Korea;2. Department of Naval Architecture and Ocean Engineering, Seoul National University, 599 Gwanak-Ro, Gwanak-Gu, Seoul, 08826, Republic of Korea;3. Ship & Offshore Research Institute, Samsung Heavy Industries Co., Ltd., 217, Munji-ro, Yuseong-gu, Daejeon, 34051, Republic of Korea;4. DSME R&D Institute, Daewoo Shipbuilding and Marine Engineering Co., Ltd, 96, Baegot 2-ro, Siheung-si, Gyeonggi-do, 15011, Republic of Korea;5. Ship Navigation Research Department, Hyundai Maritime Research Institute, Hyundai Heavy Industry Co., Ltd., 75, Yulgok-ro, Jongno-gu, Seoul, 03058, Republic of Korea;6. Ship & Offshore Technology Center, Korean Register, 36, Myeongji Ocean City 9-ro, Gangseo-gu, Busan, 46762, Republic of Korea
Abstract:To assess the long-term sloshing loads of a liquefied natural gas carrier, Daewoo Shipbuilding and Marine Engineering Co., Ltd., Hyundai Heavy Industry Co., Ltd, Samsung Heavy Industry Co., Ltd. (SHI), Korean Register, and Seoul National University conducted a series of joint industrial experiments using a six-degree-of-freedom irregular sloshing model test. SHI provides a 174 K S-LNGC and its cargo hold information. To consider the numerous test conditions of the long-term approach, the present study focuses on the upper regions of the cargo hold structure, and feasible operating scenarios are assumed. A total of 3870 h at a real scale are simulated based on 387 sailing conditions. Extensive experimental results of sloshing loads are analyzed based on different guidelines suggested by different maritime classification societies. Part I of this study provides an assessment of sloshing loads based on a comparison of short- and long-term approaches distinguished by the guidelines, and the possible reference values are presented. A practical solution for the long-term approach will be discussed in Part II.
Keywords:Sloshing  Sloshing experiment  Long-term approach  Short-term approach  LNG Design
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