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CFD modelling of pump-around jet mixing tanks: a reliable model for overall mixing time prediction

机译:泵送喷射混合罐的CFD建模:整体混合时间预测的可靠模型

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摘要

Over the past two decades or so, computational fluid dynamics (CFD) has been employed to predict overall mixing times inside jet mixing tanks instead of non-universal mixing time correlations obtained by experiments. However, the numerical methods for jet mixing tank simulations were not clearly tested and the discretization errors of the previous CFD models were not assessed. So, in this paper, the suitable turbulence model and numerical methods for pump-around jet mixing tank simulations were investigated. Further, the discretization errors of the present CFD models were estimated with the help of grid convergence index (GCI). The results revealed that the realizable k-epsilon model, SIMPLE, second order upwind, and first order implicit were proper turbulence model and numerical methods for pump-around jet mixing tank simulations. From GCI analyses, the maximum discretization uncertainty in overall mixing time of the present CFD models was about +/- 0.08s.
机译:在过去的二十年中,已经采用了计算流体动力学(CFD)来预测喷射混合罐内的整体混合时间,而不是通过实验获得的非普遍混合时间相关性。 然而,没有明确测试喷射混合罐模拟的数值方法,并且未评估先前的CFD模型的离散化误差。 因此,在本文中,研究了泵送射流混合罐模拟的合适湍流模型和数值方法。 此外,借助网格收敛指数(GCI)估计了本CFD模型的离散化误差。 结果表明,可实现的K-EPSILON模型,简单,二阶UPWIND和一阶隐含是泵送喷射混合罐模拟的适当湍流模型和数值方法。 从GCI分析中,目前CFD模型的整体混合时间中的最大离散化不确定性约为+/- 0.08s。

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