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A study on the effect of flat plate friction resistance on speed performance prediction of full scale

机译:平板摩擦阻力对满量程转速性能影响的研究

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ABSTRACT Flat plate friction lines have been used in the process to estimate speed performance of full-scale ships in model tests. The results of the previous studies showed considerable differences in determining form factors depending on changes in plate friction lines and Reynolds numbers. These differences had a great influence on estimation of speed performance of full-scale ships. This study was conducted in two parts. In the first part, the scale effect of the form factor depending on change in the Reynolds number was studied based on CFD, in connection with three kinds of friction resistance curves: the ITTC-1957, the curve proposed by Grigson (1993; 1996), and the curve developed by Katsui et al. (2005). In the second part, change in the form factor by three kinds of friction resistance curves was investtigated based on model tests, and then the brake power and the revolution that were finally determined by expansion processes of full-scale ships. When three kinds of friction resistance curves were applied to each kind of ships, these were investigated: differences between resistance and self-propulsion components induced in the expansion processes of full-scale ships, correlation of effects between these components, and tendency of each kind of ships. Finally, what friction resistance curve was well consistent with results of test operation was examined per each kind of ships.
机译:摘要在该模型测试中,已使用平板摩擦线来估算全尺寸船舶的速度性能。先前研究的结果表明,根据板摩擦线和雷诺数的变化,确定形状系数时存在很大差异。这些差异对全尺寸船舶的速度性能估计有很大的影响。这项研究分为两个部分。在第一部分中,基于CFD研究了取决于雷诺数变化的形状因数的比例效应,并结合了三种摩擦阻力曲线:ITTC-1957,Grigson(1993; 1996)提出的曲线,由Katsui等人开发的曲线。 (2005)。在第二部分中,基于模型试验研究了由三种摩擦阻力曲线引起的外形变化,然后由全尺寸船舶的膨胀过程最终确定了制动功率和转速。当将三种摩擦阻力曲线应用于每种船舶时,进行了研究:在全尺寸船舶的膨胀过程中引起的阻力和自推进分量之间的差异,这些分量之间的作用相关性以及每种趋势的船。最后,对每种船舶检查了什么样的摩擦阻力曲线与试验结果完全一致。

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