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A Model for the Determination of Mixing Time for Viscous Systems in a Stirrer Pot by Statistical Regression of Response Surface Analysis Employing Central Composite Design Methodology

机译:响应面分析统计回归采用中央复合设计方法测定搅拌器孔中粘性系统混合时间的模型

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摘要

Mixing is a significant unit operation in process industry, which has an important role in enhancing the rate of reaction in homogeneous or even in multiphase reactions. Mixing can increase the rate of transport processes that may reduce the processing time by several folds to obtain a product of desirable quality. The principal requirement for such achievements is the homogeneous state of the bulk fluid that is subjected to a pre-designed condition of mixing or agitation. In the present study, model equations for calculating mixing time as a function of relative volume of tracer slug to the volume of liquid bulk, relative viscosity of the liquid bulk and impeller speed of the agitator have been developed based on two fundamental model configurations. They are the following: (1) a quadratic model, based on statistical data processing and (2) a power law model using logarithmic least square method. The first model category offered higher accuracy in predicting the mixing time. Also, an effort has been made to relate mixing time against Reynolds number obtained during mixing. These locuses have shown: (1) a saturation characteristic of mixing time beyond an upper limit within the investigated range of Reynolds number, and (2) a breakage or change in slope in the transition region between laminar and turbulent flow regime.
机译:混合是工艺业的重要单元操作,在提高均匀甚至在多相反应中的反应速率方面具有重要作用。混合可以增加可以减少处理时间的运输过程的速率,以获得所需质量的产品。这种成果的主要要求是散装液的均匀状态,其受到预先设计的混合或搅拌的状态。在本研究中,基于两个基本模型配置,开发了用于计算作为液体体积的示踪剂块的相对体积的混合时间的模型方程,并且搅拌的液体体积的相对粘度和搅拌器的叶轮速度。它们如下:(1)基于统计数据处理的二次模型和使用对数最小二乘法的电力法模型。第一个型号类别在预测混合时间方面提供更高的准确性。而且,已经努力将混合时间与在混合期间获得的雷诺数相关。这些基因座已经显示出:(1)混合时间的饱和度特性超出了雷诺数的上限之外的上限,并且(2)层和湍流流动状态之间的过渡区域中的斜率破裂或变化。

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