有限水深两层流体中二维月池的波衍射

Xingyu Song, Xin Xu, Xinshu Zhang, Y. You
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引用次数: 1

摘要

本文采用区域分解和特征函数匹配方法研究了有限水深下两层流体中二维月池的波衍射问题。推导了零频率下波浪激励力、自由面和内波高度的计算公式。通过重复计算截断阶的递增值来评估数值收敛性。通过将极限情况与单层流体情况进行比较,验证了该模型的有效性,结果令人满意。虽然共振频率附近的波浪激励力和自由表面波高度估计过高,但活塞模共振频率预测较好。选择了两种不同月池宽度的典型构型,分别在自由表面和内波模式下进行了计算。结果表明,内波模态下的波浪激励力、自由面波和内波高程均比自由面波模态下小得多。此外,随着入射波频率的增加,内波模式下的波激振力迅速衰减至零。对于宽度较小的月池,只能观察到活塞型共振。在自由表面和内波模式下识别的活塞模共振频率相同。在水平和垂直波激振力中也可以观察到活塞模共振的特征。在活塞模共振频率附近,波激振力达到局部最大值。结果表明,随着月池宽度的增大,活塞模共振频率减小。与活塞模共振相比,非对称晃动模共振和对称晃动模共振交替出现的频率更高。此外,还将预测的晃动模共振频率与简单近似公式估计的频率进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On Wave Diffraction of a Two-Dimensional Moonpool in a Two-Layer Fluid in Finite Water Depth
This paper studies the wave diffraction of a two-dimensional moonpool in a two-layer fluid in finite water depth by using a domain decomposition scheme and an eigenfunction matching method. The formulae of the wave exciting forces, the free surface and internal wave elevations at zero-frequency are derived. Numerical convergence has been assessed by repeating the computations for increasing values of the truncation orders. The present model has been validated by comparing a limiting case with a single-layer fluid case and the comparisons are in general satisfactory. Although the wave exciting forces and free surface wave elevations around resonance frequency are overestimated, the piston mode resonance frequency is well predicted. Two typical configurations with different moonpool widths are selected for computations in both free surface and internal wave modes. It is found that, the wave exciting forces, free surface and internal wave elevations in internal wave mode are much smaller than those in free surface wave mode. In addition, the wave exciting forces in internal wave mode attenuate to zero quickly as incident wave frequency increases. For moonpool with small width, only piston mode resonance can be observed. The piston mode resonance frequencies identified in free surface and internal wave modes are the same. The characteristics of piston mode resonance can also be observed in the horizontal and vertical wave exciting forces. Around the piston mode resonance frequency, the wave exciting forces reach their local maximums. It is revealed that, as moonpool width increases, the piston mode resonance frequency decreases. Meanwhile, it shows that more asymmetric and symmetric sloshing mode resonances appear alternately and occur at higher frequencies than the piston mode resonance. Moreover, the predicted sloshing mode resonance frequencies are compared with those estimated by a simple approximate formula.
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