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A Numerical Analysis of Fluid Flow Around Circular and Square Cylinders

机译:圆形和方形圆柱体周围流体流动的数值分析

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Fluid flow around bluff bodies such as circular and rectangular (square) cross-sections is a fundamental fluid mechanics problem and has been a popular focus of research for many years. Several engineering applications-including offshore structures, bridge piers, and pipelines-can be modeled as cylinders. This study numerically investigated the flow field around cylinders of the same characteristic length under identical flow conditions ranging from laminar (Reynolds number [Re] = 2) to turbulent (Re = 4 x 10(6)). Two-dimensional simulation analyses were performed using the shear stress transport k-omega turbulence closure model and commercial software. Simulation results showed good agreement with the literature. Cylinder shape was found to significantly affect the flow field. Under the same initial flow conditions, wake downstream of the square cylinder was found to be much more turbulent than that of the circular one. In addition, as Re increased, the turbulence of the wake flow increased and its length downstream of the cylinders increased.
机译:围绕钝体(例如圆形和矩形(正方形)横截面)的流体流动是一个基本的流体力学问题,并且多年来一直是研究的重点。可以将一些工程应用程序(包括海上结构,桥墩和管道)建模为圆柱体。这项研究对从层流(雷诺数[Re] = 2)到湍流(Re = 4 x 10(6))的相同流动条件下具有相同特征长度的圆柱体周围的流场进行了数值研究。使用剪切应力传输k-ω湍流闭合模型和商业软件进行了二维模拟分析。仿真结果与文献表明吻合良好。发现圆柱体形状会显着影响流场。在相同的初始流量条件下,发现方筒下游的尾流比圆形尾流的湍流要大得多。另外,随着Re的增加,尾流的湍流增加,并且其在汽缸下游的长度增加。

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