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Optimization of Ship Hull Lines of Bulbous Bow by Using CFD Approach

机译:用CFD方法优化球形弓的船体线

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The proposal of this investigation is the optimization design of bulbous bow-lines for a container vessel. The results of wave-making coefficients and relative data of wave-making field both from computation based on Green function method and Michell integral method are provided for 7 different designs of bulbous bow lines respectively in this paper. According to the minimum energy from the sample of average wave-making energy for each design of bulbous bow-lines, which is to be objective function in this computation, the geometric parameters for optimization lines of bulbous bow can be determined. Adopting CFD method, it is respectively calculated that the average wave energy change with the ahead extendable length of bulbous bow, the height above the baseline of bulbous bow and the transverse area of the bulbous bow at fore pole. By above three change curves, the optimization shape of the bulbous bow is gained. The resistance components and the wave-field for wave-making for ship hull by using CFD method have been validated based on corresponding model test results. Therefore, the optimized bulbous bow-lines can be used in the ship design practice.
机译:本调查的提议是集装箱容器的球茎弓线的优化设计。从基于绿色函数方法和MICHELL积分方法的计算的波形系数和波动场的相对数据的结果分别用于分别在本文中分别提供7种不同的球根弓线设计。根据来自平均波浪能量样本的最小能量,用于每个设计的球形弓线的每个设计,这在该计算中是目标函数,可以确定球形弓的优化线的几何参数。采用CFD方法,分别计算平均波能量随着球茎弓的前方可伸展长度,球根弓的基线上方的高度和前极的球根弓的横向区域。通过上述三种变化曲线,获得了球形弓的优化形状。通过使用CFD方法的船舶船体波动的电阻分量和波场已经基于相应的模型测试结果验证。因此,优化的球形弓线可以用于船舶设计实践中。

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