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Computational investigations and grid refinement study of 3D transient flow in a cylindrical tank using OpenFOAM

机译:使用OpenFoam在圆柱罐中3D瞬态流动的计算研究和网格细化研究

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The study of physic fluid for a liquid draining inside a tank is easily accessible using numerical simulation. However, numerical simulation is expensive when the liquid draining involves the multi-phase problem. Since an accurate numerical simulation can be obtained if a proper method for error estimation is accomplished, this paper provides systematic assessment of error estimation due to grid convergence error using OpenFOAM. OpenFOAM is an open source CFD-toolbox and it is well-known among the researchers and institutions because of its free applications and ready to use. In this study, three types of grid resolution are used: coarse, medium and fine grids. Grid Convergence Index (GCI) is applied to estimate the error due to the grid sensitivity. A monotonic convergence condition is obtained in this study that shows the grid convergence error has been progressively reduced. The fine grid has the GCI value below 1%. The extrapolated value from Richardson Extrapolation is in the range of the GCI obtained.
机译:使用数值模拟,易于访问罐内液体的物理液的研究。然而,当液体排水涉及多相问题时,数值模拟是昂贵的。由于可以获得准确的数值模拟如果完成了正确的误差估计方法,因此由于使用OpenFoam的网格收敛误差,因此提供了对误差估计的系统评估。 OpenFoam是一个开源CFD-Toolbox,它在研究人员和机构中都是众所周知的,因为其免费应用并准备使用。在本研究中,使用了三种类型的网格分辨率:粗,中等和细网。应用网格收敛索引(GCI)应用于估计由于电网敏感性而导致的错误。在该研究中获得了单调会聚条件,示出了网格收敛误差已经逐渐减少。细网格的GCI值低于1%。从Richardson外推的外推价值在获得的GCI的范围内。

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