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On the rig dock tuning of large sail yachts

机译:在大型风帆游艇的钻机码头调试中

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Dock tuning is a crucial stage in the rig service life and in the sailing management. Such operation is necessary for safety and structural stability reasons. The applied pretension has the purpose to increase the stiffness of the whole rig, reducing large displacements caused by aerodynamic and inertial loads. Furthermore, since the rig is aimed at supporting sails, its deformation significantly affects aerodynamic performances, so that dock tuning has also a relevant impact on the propulsion, especially in racing. However, the complexity of the problem and the peculiarities of each different system are the causes of the lack of specific dock tuning procedures in rules and guidelines of Classification societies.The present work, developed in collaboration with the Italian shipyard Perini Navi S.p.A., consists in the validation of a dock tuning numerical procedure adopting a Finite Element Method (FEM) applied to a 67 m long mast. A detailed comparison with real-scale experimental results has been carried out, highlighting the importance of a reliable modelling to accurately predict the non-linear behaviour of the structure. Technical guidelines for dock tuning simulation of large rigs are also provided for the first time in open literature, to the best of the authors' knowledge.
机译:码头调试是钻机使用寿命和航行管理中的关键阶段。出于安全和结构稳定性的原因,这种操作是必需的。施加的预紧力旨在增加整个钻机的刚度,减少由空气动力和惯性载荷引起的大位移。此外,由于该钻机旨在支撑风帆,因此其变形会显着影响空气动力性能,因此,码头调整对推进力也有重要影响,尤其是在赛车中。然而,问题的复杂性和每个不同系统的特性是导致船级社的规则和准则中缺乏特定的码头调整程序的原因。与意大利造船厂Perini Navi SpA合作开发的当前工作包括:验证了对67 m长的桅杆采用有限元方法(FEM)进行的码头调整数值程序的有效性。已与实际实验结果进行了详细比较,突出了可靠建模对准确预测结构非线性行为的重要性。据作者所知,也首次在开放文献中提供了大型钻机码头调校模拟的技术指南。

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