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URANS SIMULATION OF ONR TUMBLEHOME PARAMETRIC ROLLING IN REGULAR HEAD WAVES

机译:常规头波中的ONR圆鼓形参量滚动的URANS模拟

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In this paper, an in-house CFD code HUST-Ship is used for the numerical simulation of parametric rolling phenomena of ONR Tumblehome in regular head wave. Preliminary resistance and roll decay simulations at Fr=0.2 were carried out and compared with existed INSEAN experimental data. Following, three DOFs' ship motions in regular head wave with an initial roll angle of30 degrees was calculated to examine the possibility of occurrence of parametric rolling. Finally, a simulation without initial roll disturbance was performed to investigate its influence to the steady roll amplitude. By conducting fast Fourier transform of the time history of motions, forces and moments, the characteristics are analyzed and co-related with wave frequency. Results can be concluded that the in-house code has the ability to perform the parametric rolling simulation, and that the final steady roll amplitude is not affected by the initial disturbance. In addition, heave and pitch motions are dominantly affected by wave characteristic, roll frequency is about half that of wave, and that forces and moments in x direction exhibit high-order non-linearity.
机译:本文使用内部CFD代码HUST-Ship对ONR Tumblehome在常规头波中的参数滚动现象进行数值模拟。在Fr = 0.2时进行了初步的电阻和滚动衰减模拟,并与现有的INSEAN实验数据进行了比较。随后,计算了三个自由度在规则的头波中的船舶运动,初始侧倾角为30度,以检查发生参数侧倾的可能性。最后,进行了没有初始侧倾干扰的仿真,以研究其对稳定侧倾幅度的影响。通过对运动,力和力矩的时间历程进行快速傅立叶变换,可以分析这些特性并将其与波频率关联起来。结果可以得出结论,内部代码具有执行参数滚动仿真的能力,并且最终的稳定滚动幅度不受初始干扰的影响。此外,升沉和俯仰运动主要受波浪特性的影响,侧倾频率约为波浪的一半,并且x方向上的力和力矩表现出高阶非线性。

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