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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Numerical simulation of liquid-liquid turbulent flow in a stirred tank with an explicit algebraic stress model
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Numerical simulation of liquid-liquid turbulent flow in a stirred tank with an explicit algebraic stress model

机译:带有显式代数应力模型的搅拌槽内液液湍流的数值模拟

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摘要

A two-phase explicit algebraic stress model (EASM) is employed to simulate liquid-liquid turbulent flow in stirred tanks based on an Eulerian-Eulerian approach. This model is validated by comparing with the reported experimental data and other predicted results by the k-ε model. Mean and fluctuating velocities and the distribution of the dispersed phase holdups are predicted and discussed. The results show that the EASM can give a reasonable description of the liquid-liquid flow in stirred tanks. However, the present two-phase EASM shows moderate improvement comparing with the k-ε model.
机译:基于欧拉-欧拉方法,采用两阶段显式代数应力模型(EASM)模拟搅拌槽中的液-液湍流。通过与报告的实验数据和k-ε模型的其他预测结果进行比较来验证该模型。预测并讨论了平均速度和波动速度以及分散相的保持率的分布。结果表明,EASM可以合理描述搅拌釜中的液-液流动。然而,与k-ε模型相比,目前的两阶段EASM表现出中等程度的改进。

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