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Changes in fractal dimension during aggregation

机译:聚集过程中分形维数的变化

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Experiments were performed to evaluate temporal changes in the fractal dimension of aggregates formed during flocculation of an initially monodisperse suspension of latex microspheres. Particle size distributions and aggregate geometrical information at different mixing times were obtained using a non-intrusive optical sampling and digital image analysis technique, under variable conditions of mixing speed, coagulant (alum) dose and particle concentration. Pixel resolution required to determine aggregate size and geometric measures including the fractal dimension is discussed and a quantitative measure of accuracy is developed. The two-dimensional fractal dimension was found to range from 1.94 to 1.48, corresponding to aggregates that are either relatively compact or loosely structured, respectively. Changes in fractal dimension are explained using a conceptual model, which describes changes in fractal dimension associated with aggregate growth and changes in aggregate structure. For aggregation of an initially monodisperse suspension, the fractal dimension was found to decrease over time in the initial stages of floc formation.
机译:进行实验以评估在最初的单分散乳胶微球悬浮液絮凝过程中形成的聚集体的分形维数的时间变化。使用非侵入式光学采样和数字图像分析技术,在可变的混合速度,凝结剂(剂量)和颗粒浓度条件下,获得了不同混合时间的粒度分布和总体几何信息。讨论了确定聚合大小和包括分形维数在内的几何度量所需的像素分辨率,并开发了精度的定量度量。发现二维分形维数在1.94到1.48之间,分别对应于相对紧凑或结构松散的聚集体。使用概念模型解释了分形维数的变化,该模型描述了与骨料生长和骨料结构变化相关的分形维数的变化。对于最初的单分散悬浮液的聚集,发现在絮凝物形成的初始阶段,分形维数随时间减小。

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