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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Effect of eccentricity on laminar mixing In vessel stirred by double turbine impellers
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Effect of eccentricity on laminar mixing In vessel stirred by double turbine impellers

机译:偏心率对双涡轮叶轮搅拌容器内层流混合的影响

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摘要

Laminar mixing is often conducted in industrial processes, for example in polymerization reactors or in biotechno-logical processes. The laminar flow conditions caused problems of inefficient mixing due to some mixing anomalies like occurrence of the isolated mixing regions (IMR), segregation or compartmentalization phenomena. In this paper, flow visualization experiments are used to examine the size, positions and structure of the IMR regions as a function of Reynolds number and eccentricity ratio in the vessel equipped with double turbine impellers. It was found that the eccentricity brings deformation and reduction of the IMR volume. Moreover another benefit of using eccentrically located impeller systems is an improvement of axial flow. Two types of IMR regions are found: undulated IMR (UIMR) and ribbon-like IMR (RIMR). The structure of IMR depends on the eccentricity ratio defined as EfR. At the low eccentricity values the structure of single filament wrapped around core of the IMR is found. Additionally, the IMR region is inclined to the impeller plane.
机译:层流混合通常在工业过程中进行,例如在聚合反应器中或在生物技术过程中。层流条件由于一些混合异常(例如发生孤立混合区域(IMR),分离或分隔现象)而导致混合效率低下的问题。在本文中,流动可视化实验被用来检查IMR区域的大小,位置和结构,该区域是装有双涡轮叶轮的容器中雷诺数和偏心率的函数。发现偏心率导致IMR体积的变形和减小。此外,使用偏心定位的叶轮系统的另一个好处是轴向流的改善。发现了两种类型的IMR区域:起伏IMR(UIMR)和带状IMR(RIMR)。 IMR的结构取决于定义为EfR的偏心率。在低偏心率值处,发现缠绕在IMR纤芯周围的单丝结构。另外,IMR区域相对于叶轮平面倾斜。

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