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Prediction of Ship Turning Maneuvers in Constant Wind and Regular Waves

机译:恒定风速和规则波浪中船舶转向操纵的预测

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A ship usually performs maneuvers under the influence of external forces and moments, such as wind, waves, and current. Therefore, it is important to understand the maneuvering behavior of ships under the action of external forces. This paper discusses the turning maneuvers of an Indonesian roro ferry under the combined influence of constant wind and regular waves using the mathematical modelling group (MMG). The ship’s position relative to the wave trough is added to the original MMG model to estimate the exciting forces and moment induced by the waves. The results of a numerical simulation show that the effect of wave height on turning ability is more significant for a small wavelength; this effect decreases as the wavelength increases. The effect of wavelength on the sway force and yaw moment is more significant compared with its effect on the surge force. The ship’s initial position relative to the wave trough does not have a significant effect on the turning characteristic and it can be neglected for the present study’s subject ship. Overall, the results of the present work compare well with published data.
机译:船舶通常在外力和力矩(例如风,浪和水流)的影响下进行操纵。因此,了解船舶在外力作用下的操纵行为很重要。本文使用数学建模组(MMG),讨论了在恒定风和规则波共同作用下印尼滚装渡船的转向动作。该船相对于波谷的位置被添加到原始MMG模型中,以估计由波引起的激振力和力矩。数值模拟结果表明,波高对小波长的转向能力影响更大;随着波长的增加,这种影响减弱。波长对摇摆力和偏航力矩的影响与其对喘振力的影响相比更为重要。该船相对于波谷的初始位置不会对转向特性产生重大影响,对于本研究的目标船,可以忽略不计。总体而言,当前工作的结果与已发布的数据相比较很好。

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