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Comparative study on wind load coefficients of ultra large container ship in different loaded conditions  ( CPCI-S收录 EI收录)   被引量:1

文献类型:会议论文

英文题名:Comparative study on wind load coefficients of ultra large container ship in different loaded conditions

作者:Wang, Xian-lei[1];Jia, Bao-zhu[2];Ge, Xin-tong[3]

机构:[1]Dalian Maritime Univ, Marine Engn Coll, Dalian, Peoples R China;[2]Guangdong Ocean Univ, Maritime Coll, Zhanjiang, Peoples R China;[3]Tianjin Univ Sci & Technol, Coll Econ & Management, Tianjin, Peoples R China

会议论文集:Chinese Automation Congress (CAC)

会议日期:NOV 22-24, 2019

会议地点:Hangzhou, PEOPLES R CHINA

语种:英文

外文关键词:ultra large container ship; wind loads coefficient; computational fluid dynamics(CFD); loaded conditions; isherwood empirical equation

外文摘要:The estimation of wind loads plays an important role in the efficient operation of a container ship's propulsion plant or on her maneuverability, as well as in ship building and arrangement on working deck. The computational fluid dynamics (CFD) numerical simulation is used to calculate the longitudinal, lateral and yawing moment wind loads coefficient for very large container ships. The obtained coefficients were compared with the results of Isherwood empirical equation, the deviation between them are analyzed. It can be seen that with the ship loading variation, the CFD results shown a significant dispersion from Isherwood equation, especially for the longitudinal and yaw moment coefficients. To further reveal the influential factors of wind loads, the pressure contours and airflow were presented and discussed. It was apparent, as expected, the shielding effect due to higher container configuration could increase the wind loads in general, and the bluff-body-effect of container ship could affect the airflow around the hull, which lead to the greater pressure difference between windward and leeward, therefor increased in additional wind loads for container ship. The proposed CFD numerical simulation method and relevant conclusions might provide a general concept of how the loaded condition influent the wind loads for ultra large container ship.

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