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Novel CFD-based full-scale resistance prediction for large medium-speed catamarans

机译:基于CFD的新型中型双体船全尺寸阻力预测

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A novel CFD-based approach is presented that is used in conjunction with model test experiments to predict ship resistance at full-scale Reynolds and Froude numbers. It relies on verification using model scale experiments, including an agreement of integrated shear force with established model-ship correlation lines at model and full-scale, and includes surface roughness effects. One major advantage of the method is that the geometric dimensions of the CFD modelling remain at model scale. CFD simulation results were successfully verified considering the drag of two different catamarans at 1:22 and 1:50 model scale. Furthermore, it is shown that an identical near-wall mesh resolution can be used for both model and full-scale simulations without compromising the accuracy of the shear force component. At full-scale the deviation of resistance between CFD prediction, model test extrapolation and full-scale measurements was less than 5% at Fr = 0.40 and 0.43, showing good agreement For a novel 130 m catamaran it is shown that variations in full-scale drag for a smooth hull were as low as 5% when comparing extrapolated model scale experiments and CFD predictions. However, at such large Reynolds numbers CFD predictions for correlation and roughness allowance were significantly higher compared to estimates proposed in ITTC guidelines. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种基于CFD的新颖方法,该方法可与模型测试实验结合使用,以预测满量程雷诺数和弗洛德数的船舶阻力。它依赖于使用模型比例试验进行验证,包括在模型和满比例下综合剪切力与已建立的模型-船相关线的协议,并包括表面粗糙度效应。该方法的一个主要优点是CFD建模的几何尺寸保持在模型比例上。考虑到两个不同的双体船在1:22和1:50模型比例下的阻力,CFD模拟结果已成功验证。此外,还表明,在不影响剪力分量精度的情况下,相同的近壁网格分辨率可用于模型和全尺寸模拟。在满量程下,在Fr = 0.40和0.43时,CFD预测,模型测试外推和满量程测量之间的电阻偏差小于5%,这显示出良好的一致性对于新型130 m双体船,它显示了满量程的变化比较外推模型规模实验和CFD预测时,光滑船体的阻力低至5%。但是,在如此大的雷诺数下,与ITTC指南中提出的估计值相比,相关性和粗糙度余量的CFD预测值要高得多。 (C)2015 Elsevier Ltd.保留所有权利。

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