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Dynamically Scaled Model Experiment of a Mooring Cable

机译:系泊缆索的动态缩放模型实验

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The dynamic response of mooring cables for marine structures is scale-dependent, and perfect dynamic similitude between full-scale prototypes and small-scale physical model tests is difficult to achieve. The best possible scaling is here sought by means of a specific set of dimensionless parameters, and the model accuracy is also evaluated by two alternative sets of dimensionless parameters. A special feature of the presented experiment is that a chain was scaled to have correct propagation celerity for longitudinal elastic waves, thus providing perfect geometrical and dynamic scaling in vacuum, which is unique. The scaling error due to incorrect Reynolds number seemed to be of minor importance. The 33 m experimental chain could then be considered a scaled 76 mm stud chain with the length 1240 m, i.e. , at the length scale of 1:37.6. Due to the correct elastic scale, the physical model was able to reproduce the effect of snatch loads giving rise to tensional shock waves propagating along the cable. The results from the experiment were used to validate the newly developed cable-dynamics code, MooDy, which utilises a discontinuous Galerkin FEM formulation. The validation of MooDy proved to be successful for the presented experiments. The experimental data is made available here for validation of other numerical codes by publishing digitised time series of two of the experiments.
机译:用于海洋结构的系泊缆索的动力响应与尺度有关,并且难以实现完整尺度的原型与小规模物理模型测试之间的完美动态相似性。在此,通过一组特定的无量纲参数来寻求最佳的缩放比例,并且还通过两个可选的无量纲参数集来评估模型的准确性。本实验的一个特殊功能是,对链进行了缩放,以具有针对纵向弹性波的正确传播速度,从而在真空中提供了完美的几何和动态缩放,这是独一无二的。由于雷诺数不正确而导致的缩放错误似乎次要。然后可以将33 m的实验链视为长度为1240 m(即比例尺为1:37.6)的比例缩放的76 mm螺柱链。由于具有正确的弹性比例,因此物理模型能够重现抓取载荷的影响,从而引起沿电缆传播的张力冲击波。实验的结果用于验证新开发的电缆动力学代码MooDy,该代码利用了不连续的Galerkin FEM公式。 MooDy的验证被证明对所提出的实验是成功的。通过发布其中两个实验的数字化时间序列,可以在此处提供实验数据以验证其他数字代码。

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