Interaction between the free surface and the vortical structures developed in a turbulent flow around a cylinder

N. Tanase, D. Broboană, C. Balan
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Abstract

The study and modeling of flow configuration around a cylinder is a benchmark CFD problem in fluid mechanics; the applications are multiple, from micro-fluidics to hydrology, from fluid-structure interaction to geophysics. The present paper is concerned with a particular motion related to this topic: the interaction between the free surface and the immersed cylinder in an open channel turbulent flow. The study is focused to the investigations of the vortical structures developed around the cylinder and their dependence on the distance from the free surface. Numerical simulations in 2D configurations are performed with VOF code and k-ε turbulent models. The calculations of the free surface and the direct flow visualizations disclose a good correlation. The results emphasis the major influence on the flow dynamics of the vorticity transport from the free surface to the cylinder. The locations of the critical points on the immersed surface are determined and the flow rate distribution around cylinder is computed.
在围绕圆柱体的湍流中,自由表面与旋涡结构之间的相互作用
圆柱绕流形态的研究与建模是流体力学中的一个基准CFD问题;应用是多方面的,从微流体学到水文学,从流固相互作用到地球物理学。本文研究了与此主题有关的一种特殊运动:明渠湍流中自由表面与浸入筒体之间的相互作用。重点研究了圆柱周围形成的涡状结构及其与自由表面距离的关系。利用VOF代码和k-ε湍流模型对二维构型进行了数值模拟。自由表面的计算和直接流动的可视化显示出良好的相关性。结果强调了从自由表面到圆柱的涡量传递对流动动力学的主要影响。确定了沉面上的临界点位置,计算了圆柱周围的流量分布。
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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