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Numerical solution for a ship-wave problem in a two-layer fluid using a double-model linearised interface condition

机译:使用双模型线性化界面条件的两层流体中船浪问题的数值解

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摘要

Ship performance in shallow water where the rigid bottom is covered by a mud layer is a crucial topic to be investigated. In such muddy areas, a two-layer fluid is stratified according to the properties of the sediments. The water-mud interface behaves similar to a sheet on which the internal waves propagate after the ship's passage. Therefore, for safe navigation, it is necessary to clearly understand the influence of the internal waves on the ship's hydrodynamic force characteristics. In this study, the steady wave-making problem of a ship in a two-layer fluid was solved using the Rankine source panel method. The boundary value problem was formulated using a newly proposed double-model linearised interface condition. After the present method was validated via a comparison with results of a Wigley hull solved by the author's existing method, it was applied to solve the ship-wave problem of KVLCC2. The unique changes in wave-making resistance, sinkage and trim according to the ship's speed and two-layer fluid conditions were evaluated.
机译:刚性底部被泥层覆盖的浅水船舶性能是一个至关重要的研究课题。在这种泥泞的地区,根据沉积物的性质将两层流体分层。水泥界面的行为类似于在船通过后内部波在其上传播的薄片。因此,为了安全航行,必须清楚地了解内波对船舶流体动力特性的影响。在这项研究中,使用朗金源面板法解决了船舶在两层流体中的稳定波形成问题。边值问题是使用新提出的双模型线性化界面条件制定的。通过与作者现有方法解决的Wigley船体的结果进行比较验证了本方法后,将其用于解决KVLCC2的船浪问题。根据船舶的速度和两层流体条件,评估了造波阻力,下沉和纵倾的独特变化。

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