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Time-domain numerical research of the hydrodynamic characteristics of a trimaran in calm water and regular waves

机译:三角帆在平静水中和规则波浪中的水动力特性的时域数值研究

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摘要

As a special type of high-speed vessel, the hydrodynamic performance of trimanran is not yet fully understood and is still under investigation. In this paper, a viscous method is established based on RANS to study the resistance in calm water, added resistance and motion response in head waves of various wave amplitudes. Results from numerical simulation show satisfactory agreement with the experimental data. In addition, the effect of hull attitude on resistance in calm water and the effect of wave amplitude on added resistance, as well as motion response are analysed. The results show that the resistance of the trimaran in calm water is significantly influenced by the hull attitude at high speed, however, this resistance could be underestimated if the ship attitude is ignored because of the miscalculation of the free surface and the resistance of outriggers. It is found that the added resistance induced by the center hull composes the dominant part of the total added resistance and the non-dimensional value of added resistance is decreased with wave amplitude, while the influence of wave amplitude on the non-dimensional results of heave and pitch motion is not significant.
机译:作为一种特殊类型的高速船,trimanran的水动力性能尚未得到充分了解,并且仍在研究中。本文建立了一种基于RANS的粘性方法,研究了平静水中的阻力,各种波幅的头波的附加阻力和运动响应。数值模拟结果与实验数据吻合良好。此外,还分析了船体姿态对平静水中阻力的影响以及波浪幅度对附加阻力以及运动响应的影响。结果表明,在高速航行中,三体船在平静水中的阻力受船体姿态的显着影响,但是,由于自由表面的计算错误和支腿的阻力,如果忽略船体姿态,该阻力可能会被低估。发现由中心船体引起的附加阻力构成了总附加阻力的主要部分,附加阻力的无量纲值随着波幅的增加而减小,而波幅对升沉无量纲结果的影响俯仰运动并不重要。

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