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Measurements of hydrodynamic forces, surface pressure, and wake for obliquely towed tanker model and uncertainty analysis for CFD validation

机译:斜拖油船模型的水动力,表面压力和尾迹的测量以及用于CFD验证的不确定性分析

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This article presents hydrodynamic forces and moments, surface pressures, estimated side force distributions, and wakes under oblique towing conditions for a practical tanker model (model KVLCC2M), which was designed by the Korea Research Institute of Ships and Ocean Engineering (KRISO). Ship offset data is readily available and can be obtained from the Internet. The model ship has no appendages and no rudder. Trim and sinkage were adjusted to zero in the static condition and the model ship was constrained against any motion. Although the drift angle β was primarily set to 0°, 6°, and 12°, other settings were used in some experiments. All experimental results were processed using uncertainty analysis. The uncertainty analyzing method follows the ANSI/ASME Performance Test Code (PTC19.1-1985) and the AIAA Standard S-071-1995. Only a few error components were considered here and they were empirically chosen because they had a heavy weighting when used in the uncertainty calculation. The results of these towing tank experiments will contribute to the development of computational fluid dynamics (CFD) research in ship hydrodynamics.
机译:本文介绍了由韩国船舶与海洋工程研究所(KRISO)设计的实际油轮模型(型号KVLCC2M)在斜向拖曳条件下的流体动力和力矩,表面压力,估计的侧向力分布以及尾迹。船舶抵销数据随时可用,并可从Internet获得。模型船没有附件,也没有舵。在静态条件下,修剪和下沉被调整为零,并且模型船被约束为不能运动。尽管漂移角β主要设置为0°,6°和12°,但在某些实验中使用了其他设置。所有实验结果均使用不确定性分析进行处理。不确定度分析方法遵循ANSI / ASME性能测试代码(PTC19.1-1985)和AIAA标准S-071-1995。这里只考虑了一些误差分量,因此根据经验选择它们,因为在不确定性计算中使用权重很大。这些拖曳舱实验的结果将有助于船舶流体动力学中计算流体动力学(CFD)研究的发展。

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