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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >TRANSIENT HYDRODYNAMICS AND FREE SURFACE CAPTURE OF AN UNDEi-BAFFLED STIRREP TANSC PUWNC STOPPBNC
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TRANSIENT HYDRODYNAMICS AND FREE SURFACE CAPTURE OF AN UNDEi-BAFFLED STIRREP TANSC PUWNC STOPPBNC

机译:不饱和的斯特雷普·坦斯·普恩斯·普瓦克·斯托潘克的瞬态水力动力学和自由表面捕获

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摘要

The transient hydrodynamics and the free surface shape have been numerically predicted by CFD for an under-baffled agitated vessel during the stopping phase of the agitator, including the inertial period after the agitator has completely stopped. The simulations were carried out in a fully transient manner using a gas/liquid inhomogeneous two phase flow model coupled with a k-s turbulence model. The time dependence of the system studied reveals that the history of the fluid evolution during the impeller slowing phase determines the instantaneous results, implying that the resulting hydrodynamics cannot be determined via a classical steady-state approach. The numerical prediction of the free surface shape during stopping is in agreement with experimental data.
机译:CFD已在搅拌器停止阶段(包括搅拌器完全停止后的惯性时间段)内对折流板不足的搅拌容器进行了瞬态流体动力学和自由表面形状的数值预测。使用气/液非均匀两相流模型和k-s湍流模型以完全瞬态的方式进行了模拟。所研究系统的时间依赖性表明,叶轮减速阶段流体演化的历史决定了瞬时结果,这意味着无法通过经典的稳态方法确定所产生的流体动力学。停止过程中自由表面形状的数值预测与实验数据一致。

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