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THE FRACTAL FEATURES OF SALT-OUT CRYSTAL SURFACE IN LIQUID-SOLID TWO-PHASE FLOW

机译:液体固体两相流中盐晶面的分形特征

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On the effects of molecule diffusion, force diffusion, turbulent diffusion and other diffusion formats, the irregular shapes of salt-out liquid-solid phases interface can not be described via conventional Euclid Geometry. In order to quantitate the influence between surface intensity of salt-out crystal and flow configuration in pipeline, on the condition of other parameters fixed, X-ray diffraction apparatus, scanning electron microscopy (SEM) photographs and self-edited programs have been utilized to analyze and calculate in this paper based on the results of five times sampling experiments, acquiring the rule that fractal dimension of salt-out crystal surface in green liquid in pipe-flow varies with time. Results indicate that different rules of fractal dimension varying with time correspond to different material because of distinct surface activation energy and roughness.The configuration and velocity of crystal heterogeneous nucleation are affected directly by surface activation energy.Diverse surface activation energy and roughness also influence the induction period of crystal significantly.
机译:在分子扩散的影响,力扩散,湍流扩散和其他扩散形式,盐输出液体固相界面的不规则形状不能通过常规的欧氏几何描述描述。为了定量在管道中的盐水晶体和流动配置之间的影响之间的影响,在其他参数固定的情况下,X射线衍射装置,扫描电子显微镜(SEM)照片和自编辑程序已经被利用到本文根据五次采样实验的结果分析和计算,获取规则,即在管道流动中的绿色液体中的盐水晶体表面的分形尺寸随时间而变化。结果表明,由于不同的表面活化能量和粗糙度,不同随时间变化的分形尺寸的不同规则对应于不同的材料。晶体异质成核的构造和速度直接受到表面活化能的影响。Diversee表面活化能量和粗糙度也影响诱导晶体的微晶显着。

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