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CFD-Based Method of Determining Form Factor k for Different Ship Types and Different Drafts 被引量:5

CFD-Based Method of Determining Form Factor k for Different Ship Types and Different Drafts
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摘要 The value of form factor k at different drafts is important in predicting full-scale total resistance and speed for different types of ships. In the ITTC community, most organizations predict form factor k using a low-speed model test. However, this method is problematic for ships with bulbous bows and transom. In this article, a Computational Fluid Dynamics(CFD)-based method is introduced to obtain k for different type of ships at different drafts, and a comparison is made between the CFD method and the model test. The results show that the CFD method produces reasonable k values. A grid generating method and turbulence model are briefly discussed in the context of obtaining a consistent k using CFD. The value of form factor k at different drafts is important in predicting full-scale total resistance and speed for different types of ships. In the ITTC community, most organizations predict form factor k using a low-speed model test. However, this method is problematic for ships with bulbous bows and transom. In this article, a Computational Fluid Dynamics (CFD)-based method is introduced to obtain k for different type of ships at different drafts, and a comparison is made between the CFD method and the model test. The results show that the CFD method produces reasonable k values. A grid generating method and turbulence model are briefly discussed m the context of obtaining a consistent k using CFD.
出处 《Journal of Marine Science and Application》 CSCD 2016年第3期236-241,共6页 船舶与海洋工程学报(英文版)
基金 Supported by Ministry of Industry and Information(No.K24097)
关键词 form factor computational fluid dynamics(CFD) Prohaska method model test different ship type different draft form factor, computational fluid dynamics (CFD),Prohaska method, model test, different ship type, different draft
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