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Effects of the Stirred Tank's Design on Power Consumption and Mixing Time in Liquid Phase

机译:搅拌槽设计对液相电耗和混合时间的影响

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The influence of the stirrer type and of the geometrical parameters of both tank bottom, impeller diameter, draft tube and geometry of the tank bottom) on power consumption and mixing time in liquid phase under turbulent regime conditions (Re > 10~4) have been stuided. Different types of agitators have been used, namely Rushton turbine, 45 deg ptiched-blade turbine, MIXEL TT and TTP proellers and 1-stage or 2-stage EKATO-INTERMIG propellers. All these stirrers were tested with the same power consumption per unit mass of liquid. On the basis of measured power consumption per unit mass, which is required to achieve the same degree of mixing, the results obtained in the present work show that the TTP propeller is the most efficient in liquid phase. Recommendations on the optimum geometric configuration have been made for each type of stirrer.
机译:在湍流条件下(Re> 10〜4),搅拌器的类型以及罐底的几何参数,叶轮直径,引流管和罐底的几何形状对液相中的功率消耗和混合时间的影响研究。已经使用了不同类型的搅拌器,即Rushton涡轮,45度桨叶式涡轮,MIXEL TT和TTP螺旋桨以及1级或2级EKATO-INTERMIG螺旋桨。所有这些搅拌器均以每单位质量液体的功率消耗进行了测试。根据达到相同混合度所需的每单位质量的测量功率消耗,本工作获得的结果表明,TTP螺旋桨在液相中效率最高。对于每种类型的搅拌器,都提出了最佳几何构型的建议。

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