首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part M. Journal of Engineering for the Maritime Environment >The influence of the centre bow and wet-deck geometry on motions of wave-piercing catamarans
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The influence of the centre bow and wet-deck geometry on motions of wave-piercing catamarans

机译:中心弓和湿甲板几何对波刺穿偏美筏运动的影响

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摘要

The effects of tunnel height and centre bow length on the motions of a 112-m wave-piercer catamaran with an above-water centre bow were investigated through model tests. Five alternative centre bow configurations were considered, and multiple series of model tests were conducted in regular head sea waves. The results showed that both heave and pitch increased over a wide range of wave encounter frequency as the wet-deck height of the catamaran model increased. However, increasing the length of the centre bow showed an increase in the pitch but a decrease in the heave for a limited range of wave encounter frequency near the heave and pitch resonance frequencies of the catamaran model. The positions of minimum vertical displacement were found to be aft of the longitudinal centre of gravity, between 20% and 38% of the overall length from the transom. Increase in the wet-deck height and consequently the archway clearance between the main hulls and centre bow also resulted in an increase in the vertical displacement relative to the undisturbed water surface in the centre bow area. The results also indicated the vulnerability to wet-deck slamming for the different bow and wet-deck designs.
机译:通过模型试验研究了隧道高度和中心弓长对112米波锥体双体船的运动的运动的影响。考虑了五种替代中心弓形配置,并在常规头海浪中进行多系列模型测试。结果表明,随着双体载模型的湿式甲板高度增加,均匀和间距都在多种波遇频率上增加。然而,增加中心弓的长度显示间距的增加,但是升降的升降范围的降低,用于靠近双体模型的升降谐振频率的有限波遇频率。发现最小垂直位移的位置是纵向重心的后方,在横梁的总长度的20%和38%之间。因此,湿甲板高度增加,因此主船体和中心弓之间的拱门间隙也导致垂直位移相对于中心弓区域的未受干扰水表面增加。结果还表明对不同弓和湿甲板设计的湿甲板的脆弱性。

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