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Investigation of Twin-Screw Naval Ships Maneuverability Behavior

机译:双螺杆海军舰艇操纵性能研究

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摘要

The problem of ship maneuverability has currently reached a significant consideration, both for merchant ships, with the adoption of IMO standards, and naval ships, with the production of various documents by NATO Specialist Teams. In literature, many works regarding maneuverability of single-screw slow/medium speed ships are present, while a lack of information about twin-screw ships (cruise ships, Ro/Ro ferries, megayachts, naval vessels) exists. These ships are usually characterized by different hull forms and more complex stern configuration because of the presence of appendages such as skegs, shaft lines, and brackets, which can strongly affect maneuverability behavior. In this work various prediction methods, namely statistical regressions, system identification, and RANSE, are investigated to evaluate twin-screw naval vessels maneuverability behavior. Results of this analysis clearly evidence importance of stern appendages influence on maneuverability capabilities of this type of ship (including also nonlinear effects resulting from hull/appendage interactions).
机译:目前,无论是对于采用IMO标准的商船,还是对于由北约专家组制作各种文件的海军舰船,船舶机动性问题都已得到广泛考虑。在文献中,存在许多有关单螺杆低速/中速船的可操纵性的工作,而缺乏关于双螺杆船(巡航船,滚装船/渡轮,大型游艇,军舰)的信息。这些船通常以不同的船体形式和更复杂的船尾构造为特征,这是因为存在附肢,例如sk钉,轴系和托架,这些附肢会严重影响机动性。在这项工作中,研究了各种预测方法,即统计回归,系统识别和RANSE,以评估双螺杆海军舰艇的可操纵性行为。该分析结果清楚地表明,尾部附件对这种类型的船舶的可操纵性影响的重要性(还包括船体/附件相互作用产生的非线性影响)。

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