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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >DIRECT PREDICTION OF STRUCTURE AND PERMEABILITY OF FLOCCULATED STRUCTURES AND SEDIMENTS USING 3D TOMOGRAPHIC IMAGING
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DIRECT PREDICTION OF STRUCTURE AND PERMEABILITY OF FLOCCULATED STRUCTURES AND SEDIMENTS USING 3D TOMOGRAPHIC IMAGING

机译:直接的结构和渗透率的预测絮凝的结构和使用3 d沉积物层析成像

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摘要

3D visualizations of the microstructure of flocculated particulates and sediments using optical confocal laser microscopy and high resolution X-ray microtomography methods are described.Data obtained from in situ measurements should enable direct computation of the properties of solids assembly (shape,size,contact area) and their permeability to fluids.A specific application relating to the formation of silica aggregates is described from which the behaviour of sediments containing these materials can be predicted on the basis of a bench-top test and the use of a Lattice Boltzmann simulation.It is proposed that the method can potentially be used to predict trends such as the filtration behaviour of porous structures under different states of compression.This offers a significant benefit in assisting the formulation design of flocculated materials pertinent to a number of industrial sectors wishing to design optimal filtration or relevant operations.
机译:微观结构的三维可视化絮凝的颗粒物和沉积物光学激光共焦显微镜和高分辨率x射线microtomography方法描述。应该使直接计算的固体的性质组装(形状、大小、接触区)和液体的渗透。应用程序与硅的形成聚合行为的描述包含这些材料可以的沉积物测试和预测的基础上进行桌面工作用晶格玻尔兹曼的模拟。提出的方法可以被使用预测趋势等过滤多孔结构在不同的行为的压缩。在协助的配方设计中获益絮凝的材料相关的数量工业部门希望设计优化过滤或相关操作。

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