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Vibration analysis of super-yachts: Validation of the Holden Method and estimation of the structural damping

机译:超级游艇的振动分析:验证Holden方法和结构阻尼的估计

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摘要

The hull excitation generated by marine propellers constitutes one of the most significant vibration sources affecting comfort on passenger ships. Consequently, the evaluation of the propeller-generated excitation through reliable numerical tools during the preliminary stage of ship design is fundamental. The Holden Method (HM) is an empirical tool utilized to calculate the propeller-induced pressure distribution on a ship hull. The present paper validates the HM, which is applied to a twin-screw, 54-m super-yacht. Finite Element Analysis (FEA) is used to benchmark the HM numerical predictions against a set of full-scale vibration measures. The outcomes show that the magnitude of the propeller-induced dynamic excitation predicted by the HM is overestimated. Thereafter, the calibrated propeller-induced forces and the diesel engine excitation are applied to the FE model to perform a series of forced vibration analyses and estimate the global structural damping coefficient of the super-yacht. The study highlights the necessity of developing new empirical methodologies, analogous to the HM, to be applied to modern small luxury vessels.
机译:海洋螺旋桨产生的船体激励构成了影响乘客船上舒适性的最重要的振动源之一。因此,通过在船舶设计的初步阶段期间通过可靠的数值工具评估螺旋桨产生的激励是基本的。 Holden方法(HM)是用于计算船船体上的螺旋桨感应压力分布的经验工具。本文验证了HM,其应用于双螺钉,54米超级游艇。有限元分析(FEA)用于基于一组全尺度振动措施对HM数值预测进行基准。结果表明,HM预测的螺旋桨诱导的动态激励的大小被高估了。此后,将校准的螺旋桨感应的力和柴油发动机激发应用于Fe模型,以执行一系列强制振动分析并估计超级游艇的全局结构阻尼系数。该研究突出了开发新的经验方法,类似于HM的必要性,以适用于现代小型奢侈船只。

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