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A Numerical Study to Predict Added Resistance of Ships in Irregular Waves

机译:一种数字研究,以预测船舶在不规则波中的增加电阻

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Fuel oil consumption of ships has been of great interest because of reinforced environmental regulations. The estimation of fuel consumption requires calculating the added resistance in actual irregular waves. However, most relevant research remains in regular waves because a nonlinear interaction in irregular waves is hard to include in numerical computation. In this paper, the added resistance in an irregular head sea has been investigated using Reynolds-averaged Navier-Stokes-based computational fluid dynamics. The results were compared with those from model tests conducted in Samsung Ship Model Basin. In the simulation, the irregular waves were generated by the linear superposition of a number of incoming wave components. Because the computation times are highly increased when a large number of waves are used, the total time window was divided into a number of partitions, and irregular waves were continuously generated by overlapping the neighboring windows. Three degrees of freedom were considered for the ship's motion: heave, pitch, and surge. Motion responses from the computation show fairly good agreement with those from the model test. In addition, the simulation predicts the added resistance at a similar level of accuracy to the experiment. The stepwise analysis is made, and key findings are discussed.
机译:由于加强环境法规,船舶的燃料油耗具有很大的兴趣。燃料消耗的估计需要计算实际不规则波中的附加电阻。然而,大多数相关的研究仍然是常规波,因为不规则波的非线性相互作用难以包括在数值计算中。在本文中,研究了使用基于Reynolds-Isperged的基于Navier-Stokes的计算流体动力学来研究了不规则头海中的抗性。将结果与三星船模型盆中的模型试验相提并论。在模拟中,通过许多输入波部件的线性叠加产生不规则波。因为当使用大量波时计算时间大大增加,所以总时间窗口被划分为多个分区,并且通过重叠相邻窗口连续生成不规则的波。船舶运动考虑了三次自由:升起,俯仰和浪涌。来自计算的运动响应显示与模型测试中的相当愉快。此外,模拟预测了对实验类似的准确度水平的附加电阻。进行逐步分析,并讨论了关键发现。

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