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Theoretical and experimental comparative analyse on the hydrodynamic resistance of a racing sailboat

机译:赛车帆船流体动力学性能的理论与实验对比分析

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The large appendages have a very important influence on the hydrodynamic resistance of the sailboats. In this paper, a comparative analyse of the theoretical and experimental results was performed, related to the hydrodynamic resistance of a racing sailboat having an overall length of 12.8 m. The theoretical approach was performed based on the method proposed by Larson and Eliasson. In order to compute the residuary resistance it was used the formulations based on Delft systematic yacht series. The estimation of the resistance components, including the keel, rudder and additional weight influence was carried out based on a computer code in Java language. The experimental model tests have been carried out in the Towing Tank of the Naval Architecture Faculty of 'Dunarea de Jos' University of Galati. A 1/10 scaled model with appendages was used for experimental investigations. The level of accuracy of the theoretical prediction was evaluated based on comparative theoretical/experimental diagrams. It was found that the influence of the large appendages is very important and an optimisation procedure becomes mandatory. Moreover, the theoretical methods specific to the preliminary design stage must be improved in order to increase the level of accuracy of hydrodynamic resistance predictions.
机译:大附属物对帆船的流体动力学阻力非常重要的影响。在本文中,一个比较的理论和实验结果的分析进行,涉及到赛车的流体动力学阻力帆船具有12.8米的总长度。基于由拉尔森和埃利亚松提出的方法进行的理论方法。为了计算剩余阻力,它是用于基于系统的代尔夫特游艇系列的配方。电阻成分,包括龙骨,舵和额外重量的影响的估计是基于在Java语言中的计算机代码来进行。实验模型试验已经在加拉茨的“Dunarea德乔斯”大学海军建筑系的拖曳水池中进行的。用于实验研究与附件的1/10比例模型。理论预测的精度水平进行评价基于比较理论/实验的图。结果发现,大附件的影响是非常重要的一个优化过程变成强制性的。此外,理论方法特有的初步设计阶段必须以增加流体动力学阻力预测的准确度的水平来改善。

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