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Filling of Irregular Channels with Round Cross-Section: Modeling Aspects to Study the Properties of Porous Materials

机译:用圆形横截面填充不规则通道:建模方面研究多孔材料的性质

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摘要

The filling of channels in porous media with particles of a material can be interpreted in a first approximation as a packing of spheres in cylindrical recipients. Numerous studies on micro- and nanoscopic scales show that they are, as a rule, not ideal cylinders. In this paper, the channels, which have an irregular shape and a circular cross-section, as well as the packing algorithms are investigated. Five patterns of channel shapes are detected to represent any irregular porous structures. A novel heuristic packing algorithm for monosized spheres and different irregularities is proposed. It begins with an initial configuration based on an fcc unit cell and the subsequent densification of the obtained structure by shaking and gravity procedures. A verification of the algorithm was carried out for nine sinusoidal axisymmetric channels with different Dmin/Dmax ratio by MATLAB® simulations, reaching a packing fraction of at least 0.67 (for sphere diameters of 5%Dmin or less), superior to a random close packing density. The maximum packing fraction was 73.01% for a channel with a ratio of Dmin/Dmax = 0.1 and a sphere size of 5%Dmin. For sphere diameters of 50%Dmin or larger, it was possible to increase the packing factor after applying shaking and gravity movements.
机译:与材料的颗粒多孔介质通道的填充可以在第一近似中被解释为在圆筒状的收件人球体的填料。在微观和纳米尺度大量研究表明,他们是,作为一项规则,不理想的气瓶。在本文中,该信道,其具有不规则的形状和圆形横截面,以及填料的算法进行了研究。被检测通道形状的五个图案来表示任何不规则的多孔结构。为单一尺寸的球体和不同的不规则性的新型启发式包装算法。它开始于基于FCC装置小区和通过摇动和重力程序所获得的结构的随后的致密化的初始配置。该算法的验证是由MATLAB®模拟进行具有不同的Dmin / Dmax的比率9个正弦轴对称信道,达到至少0.67的填充分数(对于5%的球的直径的Dmin或更小),优于随机密堆积密度。的最大敛集率为73.01%用的Dmin的比率的信道/ Dmax的= 0.1和5%的Dmin的球体尺寸。对于50%的Dmin或更大的球的直径,有可能施加摇动和重力的运动后,以增加填充因子。

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