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System identification of coupled heave-pitch motion of ships with forward speed in random ocean waves

机译:随机海浪中船体前倾-俯仰运动耦合的系统辨识

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摘要

Ship dynamics in ocean waves involve frequency-dependent added mass and radiation damping which can be estimated either by potential theory-based calculations or by experiments. With uniform forward speed, the added mass and damping matrices become asymmetric. In this paper, we attempt to use a system identification approach, specifically the reverse multiple input-single output (R-MISO) method, for coupled heave-pitch response (two degrees of freedom) of a ship moving with uniform forward speed in random ocean waves. The system mass matrix has both frequency-independent and frequency-dependent components, whereas its damping matrix has only frequency-dependent components. The frequency-dependent components of the mass and damping matrices are asymmetric. The excitation force and moment due to linear monochromatic waves which act on the system are assumed to be known and can be either calculated or obtained from experiments. For numerical illustration, a ship whose hydrodynamic behaviour has been computed by strip theory has been considered. The motion, as well as the loading, is simulated assuming Pierson-Moskowitz spectrum in conjunction with response amplitude operators from the strip theory code, and these results are analysed by the R-MISO method yielding frequency-dependent asymmetric coupled added mass and radiation damping coefficients satisfactorily.
机译:海浪中的船舶动力学涉及与频率有关的附加质量和辐射阻尼,可以通过基于潜在理论的计算或通过实验来估算。在一致的前进速度下,增加的质量和阻尼矩阵变得不对称。在本文中,我们尝试使用系统识别方法,特别是反向多输入单输出(R-MISO)方法,对随机以一致的前进速度移动的船舶的升沉-俯仰响应(两个自由度)进行耦合海浪。系统质量矩阵同时具有频率无关和频率相关的分量,而其阻尼矩阵仅具有频率相关的分量。质量和阻尼矩阵的频率相关分量是不对称的。假定作用在系统上的线性单色波引起的激励力和力矩是已知的,可以通过计算或从实验中获得。为了进行数值说明,已经考虑了通过条带理论计算出其水动力行为的船舶。假设运动和载荷是在假设Pierson-Moskowitz谱以及带状理论代码中的响应幅度算符的情况下进行仿真的,并且通过R-MISO方法分析了这些结果,得出了频率相关的非对称耦合附加质量和辐射阻尼系数令人满意。

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