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Application of a hybrid Boussinesq-panel model for motion predictions of a moored Sevan-floater in finite water depth

机译:混合Boussinesq-panel模型在有限水深下系泊Sevan漂浮物运动预测中的应用

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This paper presents the applications of an efficient hybrid time-domain simulation model for predicting moored Sevan-floater motions in irregular waves and finite water depth. The irregular incident waves are modeled by the extended Boussinesq equations, which can capture wave-wave interactions and the low-frequency long waves accurately in finite and shallow water depth. By imposing the incident wave kinematics on the surface of the floater, a panel model based on Rankine source method is applied for the calculation of wave forces and corresponding floater motions. The contributions from low-frequency components in incident waves as well as their diffraction effects are included in the wave force calculations. Validation of the irregular waves simulated by the present numerical model are performed against experimental data. Then, the simulated moored floater motions are compared with model test results and results based on Newman's approximation. The general good agreements with experimental results demonstrate the present model can be used as an alternative for this problem while Newman's approximation shows non-conservative results.
机译:本文介绍了一种有效的混合时域仿真模型在预测不规则波浪和有限水深中的系泊塞万-浮子运动中的应用。用扩展的Boussinesq方程对不规则入射波进行建模,可以在有限和浅水深度中准确地捕获波-波相互作用和低频长波。通过在浮子表面上施加入射波运动学,将基于兰金源方法的面板模型应用于波浪力和相应的浮子运动的计算。波浪力计算中包括入射波中低频分量的贡献及其衍射效应。针对实验数据对由当前数值模型模拟的不规则波进行验证。然后,将模拟的系泊浮筒运动与模型测试结果以及基于纽曼近似的结果进行比较。与实验结果的总体良好一致性表明,当纽曼近似显示非保守结果时,本模型可以用作该问题的替代方案。

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