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Optimal design method of bulbous bow for fishing vessels

机译:渔船球形弓的最佳设计方法

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Although widely used, the design of the bulbous bow for ships has been difficult due to the complex interference between the wave system generated by the bulb and the wave system of the ship hull. Until now, a bulbous bow has been often designed using Kracht charts, which were established based on model test data, but these charts apply only to ships with a block coefficient CB= 0.56-0.82, Froude number Fn = 0.20-0.40, and the obtained bulb sizes are only close to optimal. This paper presents a new method for the optimal design of bulbous bow, starting from the design of an initial bulb using Kracht charts for ships with any block coefficient or Froude number, then resizing this initial bulb to define the optimal bulb sizes based on a multi-objective function of the required power reduction, and a combined solution of Computation Fluid Dynamics (CFD) analysis and surrogate models. This study was applied to a fishing vessel FAO 75, which has been model tested and used to design steel fishing vessels in Vietnam recently. The obtained quantitative results showed the same trend as the theory and practice, with a reduction of the ship’s required power by about 14%.
机译:虽然广泛使用,由于灯泡产生的波系统与船体的波动系统之间的波动和波动系统之间的复杂干涉以及船体的波动系统之间的混合物,但船舶的球茎弓的设计一直很困难。到目前为止,使用基于模型测试数据的KRACHT图表通常设计了一种球形弓,但这些图表仅适用于块系数CB = 0.56-0.82,FRoude Number FN = 0.20-0.40的船只。获得的灯泡尺寸仅接近最佳。本文提出了一种新的方法,从使用KRACHT图表的初始灯泡的设计开始,使用KRACHT图表与任何块系数或FROUDE数,然后调整该初始灯泡的大小,以基于多个灯泡来定义最佳灯泡大小的大小 - 无需功率降低的函数,以及计算流体动力学(CFD)分析和代理模型的组合解决方案。本研究应用于渔船粮农组织75,该渔船已经进行了模型测试,并用于最近设计越南的钢渔船。获得的定量结果表明了与理论和实践相同的趋势,减少了船舶所需的权力约14%。

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