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首页> 外文期刊>Water Science and Technology >Changes in the two-dimensional and perimeter-based fractal dimensions of kaolinite flocs during flocculation: a simple experimental study
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Changes in the two-dimensional and perimeter-based fractal dimensions of kaolinite flocs during flocculation: a simple experimental study

机译:絮凝过程中高岭土絮凝物的二维和周边分形尺寸的变化:简单的实验研究

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In this study, Couette flow experiments were performed to estimate the temporal evolution of the 2D and perimeter-based fractal dimension values of kaolinite flocs during flocculation. The fractal dimensions were calculated based on the projected surface area, perimeter length and length of the longest axis of the flocs as determined by sampling observation and an image-processing system. The 2D fractal dimension, which relates the longest axis length and projected surface area of flocs, was found to decrease with the flocculation time, corresponding to the production of some porous flocs from the flow shear. This fractal dimension finally reached a steady state, which resulted from a dynamic equilibrium among the floc growth, floc breakage and floc restructuring. The perimeter-based fractal dimension, which characterizes the relationship between the projected surface area and the perimeter of flocs, increases with flocculation time because the flow shear increases the collisions among the primary particles, and some irregular flocs are formed. The perimeter-based fractal dimension reaches a steady level because of the balance among floc aggregation, breakage and restructuring. In addition, a stronger turbulent flow shear makes the steady state of fractal dimensions occur early during flocculation.
机译:在该研究中,进行Couette流程实验以估计絮凝期间高岭石絮凝物的2D和周长基于周边的分形尺寸值​​的时间演变。根据采样观察和图像处理系统确定的,基于絮凝物的突出表面区域,周长长度和长度的最长轴的长度和长度来计算分形尺寸。涉及絮凝物的最长轴长度和投影表面区域的2D分形尺寸以减小絮凝时间,对应于来自流量剪切的一些多孔絮凝物的产生。该分形尺寸最终达到稳定状态,这是由于絮凝,絮凝和絮凝物调整的动态均衡引起。基于周边的分形尺寸,其表征了突出的表面积和絮状型周边之间的关系,随着流动剪切增加了初级粒子之间的碰撞而增加,并且形成了一些不规则的絮状物。由于絮凝聚集,破损和重组之间的平衡,基于周边的分形维数达到稳定水平。此外,较强的湍流剪切使得絮凝期间早期发生分形尺寸的稳定状态。

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