Hydrodynamics on Circular Cylinder Close to a Wall: Effects From Wall Boundary Layers

F. Tong, Liang Cheng, H. An, T. Griffiths
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Abstract

We present a study on the hydrodynamics of a circular cylinder close to a wall, which is an idealized representative of subsea pipelines and cables used in both offshore oil and gas and marine renewable energy industries. This research utilizes Computational Fluid Dynamics (CFD) modeling method to investigate the influences of the boundary layer turbulence and the cylinder-to-floor distance on hydrodynamic forces. A significant jump in hydrodynamic forces is observed over the range of Reynolds number that coincides with boundary layer transition from laminar to turbulence. This transition gives rise to a drop in the size of the thickness of the boundary layer at the location of the cylinder. The force jump is also characterised by a pressure increase on the upwind surface of the cylinder, while the pressure decreases on the leeward surface.
靠近壁面圆柱的流体力学:壁面边界层的影响
我们提出了一项关于靠近墙壁的圆柱体的流体动力学研究,它是海上油气和海洋可再生能源工业中使用的海底管道和电缆的理想代表。本研究利用计算流体动力学(CFD)建模方法研究了边界层湍流度和柱面距离对水动力的影响。在雷诺数范围内,随着边界层从层流到湍流的转变,观察到水动力的显著跳跃。这种转变使圆柱体所在位置的边界层厚度减小。力跳变的另一个特征是气缸迎风面压力增大,而背风面压力减小。
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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