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Time-domain calculation of moored ship motions in nonlinear waves

机译:非线性波浪中系泊船舶运动的时域计算

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Numerical modelling of moored ship behaviour in a harbour requires an accurate description of the harbour geometry and bathymetry for a correspondingly accurate determination of the associated wave phenomena diffraction, refraction and reflection. On a smaller scale an accurate description of the 3D shape of the ship is required to determine the wave forces on the ship. These requirements are difficult to combine in a single model, so that a combination of a Boussinesq-type wave model with a time-domain panel model is developed and described in this paper. With this approach it is possible to determine the wave forces on a moored ship including the contributions of second-order waves and harbour oscillations and second-order drift forces. The model is validated against model tests for the wave forces due to a passing ship and further results are presented for a ship in irregular short-crested waves.
机译:对港口中停泊的船舶行为进行数值建模需要对港口的几何形状和水深进行准确描述,以相应准确地确定相关的波现象的衍射,折射和反射。在较小的比例上,需要精确描述船的3D形状以确定船上的波浪力。这些要求很难在单个模型中组合,因此本文开发并描述了Boussinesq型波动模型与时域面板模型的组合。通过这种方法,可以确定系泊船上的波浪力,包括二阶波浪和港口振荡以及二阶漂移力的贡献。该模型已通过模型测试验证,以验证由于过往船只引起的波浪力,并为不规则短波波浪船提供了进一步的结果。

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