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首页> 外文期刊>Jordan Journal of Mechanical and Industrial Engineering >CFD Simulations of Drag and Separation Flow Around Ellipsoids
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CFD Simulations of Drag and Separation Flow Around Ellipsoids

机译:椭球周围的阻力和分离流的CFD模拟

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Computational fluid dynamics (CFD) simulations are carried out for incompressible fluid flow around ellipsoid in laminar steady axisymmetric regime (20 ≤ Re ≤ 200). The ratio of the major to the minor axis of the ellipsoid are ranged over a/b = 0.5 to 2. A commercial finite volume package FLUENT was used to analyze and visualize the nature of the flow around ellipsoids of different axis ratio. The simulation results are presented in terms of skin friction coefficient, separation angles and drag coefficient. It was found that the total drag coefficient around the ellipsoid is strongly governed by the axis ratio as well as the Reynolds number. It was observed that the Reynolds number at which the separation first occur increase with axis ratio. Separation angels and drag coefficient for special case of a sphere (AR = 1) was found to be in good agreement with previous experimental results and with the standard drag curve. The present study has established that commerciallyavailable software like FLUENT can provide a reasonable good solution of complicated flow structures including flow with separation.
机译:在层流稳定轴对称状态(20≤Re≤200)下,针对椭圆体周围不可压缩流体进行了计算流体动力学(CFD)模拟。椭球的长轴与短轴之比在a / b = 0.5到2的范围内。使用商用有限体积软件包FLUENT分析和可视化围绕不同轴比的椭球的流动性质。根据皮肤摩擦系数,分离角和阻力系数给出了仿真结果。已经发现,椭球周围的总阻力系数受轴比和雷诺数的影响很大。观察到分离首次发生的雷诺数随轴比增加。发现球体特殊情况(AR = 1)的分离角度和阻力系数与先前的实验结果和标准阻力曲线非常吻合。本研究已经确定,诸如FLUENT之类的可商购软件可以为复杂的流动结构(包括分离流动)提供合理的良好解决方案。

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