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The application of eccentric rotating cylinder apparatus for the improved study of particle coagulation

机译:偏心旋转筒装置在改进颗粒凝结研究中的应用

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摘要

Concentric rotating cylinder and turbulent mixing devices have been frequently used in studying mixing and particle coagulation. However, these apparatus develop simple laminar flow (concentric rotating cylinders) or do not have well-defined flow (turbulent mixing devices). In this work, the eccentric rotating cylinder apparatus was investigated to find applicability for the improved study of coagulation based on the modified analytical solution of Ballal and Rivlin. Various eccentricity ratios, rotation speeds and viscosities were simulated to obtain optimum operating conditions. Inertial forces working on the fluid increased as the eccentricity ratio and rotation speed increase. As inertial forces increase, the eddy developed in wide clearance was more skewed in the direction of rotation. Both root-mean-square velocity gradient and average principal strain-rate, were increased by increasing eccentricity ratio. avaerage principal strain-rate were linearly increased as rotation speed increases, which suggested that average prinipal strain-rate can properly represent mixing intensity. Comparison of average principal strain-rate and RMS velocity gradient revealed that RMS velocity gradient overestimated mixing intensity and its error increased as eccentricity ratio increases. This study showed that the eccentric rotating cylinder apparatus has a non-uniform velocity distribution with well-defined fluid dynamics. Therefore, the eccentric rotating cylinder apparatus can be applicable as a model flocculator. However, in order to achieve reliable model predictability, the fluid Reynolds number must be below 200.
机译:同心旋转圆筒和湍流混合装置已经常用于研究混合和颗粒凝结。然而,这些设备产生简单的层流(同心旋转的圆柱体)或没有明确定义的流(湍流混合装置)。在这项工作中,对偏心旋转圆筒装置进行了研究,以找到基于改进的Ballal和Rivlin解析溶液的改进的混凝研究的适用性。模拟了各种偏心率,转速和粘度,以获得最佳工作条件。随着离心率和转速的增加,作用在流体上的惯性力也增加。随着惯性力的增加,在大间隙中产生的涡流在旋转方向上更加偏斜。均方根速度梯度和平均主应变率均通过增加偏心率而增加。随旋转速度的增加,平均主应变率呈线性增加,这表明平均主应变率可以恰当地表示混合强度。平均主应变率和RMS速度梯度的比较表明,RMS速度梯度高估了混合强度,其误差随着偏心率的增加而增加。这项研究表明,偏心旋转圆柱体装置具有不均匀的速度分布,并且具有明确的流体动力学。因此,偏心旋转筒装置可以用作模型絮凝器。但是,为了获得可靠的模型可预测性,流体雷诺数必须低于200。

著录项

  • 作者

    Lee Chun Woo;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 en_US
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