Experimental and Numerical Study on the Characteristics of Free Surface Waves by the Movement of a Circular Cylinder-Shaped Submerged Body in a Single Fluid Layer

Jun-Beom Kim, Eun-hong Min, W. Koo
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Abstract

Analyzing the interactions of free surface waves caused by a submerged-body movement is important as a fundamental study of submerged-body motion. In this study, a two-dimensional mini-towing tank was used to tow an underwater body for analyzing the generation and propagation characteristics of free surface waves. The magnitude of the maximum wave height generated by the underwater body motion increased with the body velocity at shallow submerged depths but did not increase further when the generated wave steepness corresponded to a breaking wave condition. Long-period waves were generated in the forward direction as the body moved initially, and then short-period waves were measured when the body moved at a constant velocity. In numerical simulations based on potential flow, the fluid pressure changes caused by the submerged-body motion were implemented, and the maximum wave height was accurately predicted; however, the complex physical phenomena caused by fluid viscosity and wave breaking in the downstream direction were difficult to implement. This research provides a fundamental understanding of the changes in the free surface caused by a moving underwater body.
单流体层中圆柱体运动时自由表面波特性的实验与数值研究
分析由潜体运动引起的自由表面波的相互作用是研究潜体运动的重要基础。本文采用二维微型拖曳槽对水下物体进行拖曳,分析了自由表面波的产生和传播特性。在浅水深处,水下体运动所产生的最大波高的大小随体速的增加而增加,但当产生的波陡对应于破浪条件时,最大波高的大小没有进一步增加。在物体初始运动时向前产生长周期波,在物体匀速运动时测量短周期波。在基于势流的数值模拟中,实现了潜体运动引起的流体压力变化,准确预测了最大波高;但由于流体黏度和下游方向的破波引起的复杂物理现象难以实现。本研究对水下运动体引起的自由表面变化有了基本的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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