Numerical Investigation of Motion Response of the Tanker at Varying Vertical Center of Gravities

Van Thuan Mai, Thi Loan Mai, Hyeong-Kyu Yoon
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Abstract

The vertical center of gravity (VCG) has a significant impact on the roll motion response of a surface ship, particularly oil tankers based on the oil level in the tanker after discharging oil at several stations or positional changes, such as changes in the superstructure and deck structure. This study examined the motion response of the Korea very large crude carrier 2 (KVLCC2) at various VCGs, especially roll motion when the VCG changed. The potential theory in the Ansys AQWA program was used as a numerical simulation method to calculate the motion response. On the other hand, the calculations obtained through potential theory overestimated the roll amplitudes during resonance and lacked precision. Therefore, roll damping is a necessary parameter that accounts for the viscosity effect by performing an experimental roll decay. The roll decay test estimated the roll damping coefficients for various VCGs using Froude’s method. The motion response of the ship in regular waves was evaluated for various VCGs using the estimated roll-damping coefficients. In addition, the reliability of the numerical simulation in motion response was verified with those of the experiment method reported elsewhere. The simulation results showed that the responses of the surge, sway, heave, pitch, and yaw motion were not affected by changing the VCG, but the natural frequency and magnitude of the peak value of the roll motion response varied with the VCG.
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不同垂直重心下油轮运动响应的数值研究
垂直重心(VCG)对水面舰艇(尤其是油轮)的滚动运动响应有很大影响,这取决于油轮在多个站点卸油后的油位或位置变化,如上层建筑和甲板结构的变化。本研究考察了韩国超大型原油运输船 2 号(KVLCC2)在不同 VCG 下的运动响应,尤其是 VCG 变化时的翻滚运动。研究采用 Ansys AQWA 程序中的势理论作为数值模拟方法来计算运动响应。另一方面,通过势理论获得的计算结果高估了共振时的滚动振幅,缺乏精确性。因此,滚动阻尼是通过进行滚动衰减实验来考虑粘滞效应的一个必要参数。滚动衰减试验采用弗劳德方法估算了不同 VCG 的滚动阻尼系数。利用估算出的滚动阻尼系数评估了各种 VCG 在规则波浪中的运动响应。此外,运动响应数值模拟的可靠性与其他地方报道的实验方法进行了验证。模拟结果表明,浪涌、摇摆、倾斜、俯仰和偏航运动响应不受改变 VCG 的影响,但滚动运动响应的固有频率和峰值大小随 VCG 的变化而变化。
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