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An experimentally validated and parameterized periodic unit-cell reconstruction of open-cell foams

机译:经过实验验证和参数化的开孔泡沫的周期性晶胞重构

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摘要

The physical behavior of open-cell foams depends on their microscopic structure. An open-cell geometrical model is proposed, which can serve as the basis for a future macroscopic analysis. The strut geometry is of particular interest, as it is reported to have substantial influence on the occurring thermo-hydraulic and mechanical phenomena. Axial strut size variation, as well as the porosity dependence of shape is quantified and included in a geometrical model. The foam is generated by placing the struts on an elongated tetrakaidecahedron. The required input parameters for the model are two cell dimensions, corresponding to the mean transverse and conjugate diameters of the ellipse encompassing a cell, and the strut cross-sectional surface area at its midpoint between two nodes. The foam geometry is generated iteratively, as porosity is used as validation. A high resolution micro-computed tomography scan is performed to measure the three parameters, the resulting porosity and surface-to-volume ratio. This allows to validate the model. The predictions are found to be within measurement accuracy. A numerical implementation of the model in the preprocessor of a commercial CFD package is demonstrated.
机译:开孔泡沫的物理性能取决于其微观结构。提出了一种开孔几何模型,可以作为未来宏观分析的基础。支柱的几何形状特别受关注,因为据报道,它对发生的热工和机械现象具有重大影响。量化轴向支杆尺寸变化以及形状的孔隙率依赖性,并将其包括在几何模型中。泡沫是通过将支杆放置在细长的四面十二面体上产生的。模型所需的输入参数是两个像元尺寸,对应于包围一个像元的椭圆的平均横向直径和共轭直径,以及在两个节点之间的中点处的支撑杆横截面面积。泡沫几何形状是迭代生成的,因为孔隙率被用作验证。进行高分辨率显微计算机断层扫描,以测量三个参数,即孔隙率和表面体积比。这允许验证模型。发现这些预测在测量精度之内。演示了该模型在商用CFD软件包预处理器中的数值实现。

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  • 来源
    《Journal of Applied Physics》 |2011年第10期|p.413-422|共10页
  • 作者单位

    Department of Flow, Heat and Combustion Mechanics, Ghent University, Sint-Pietersnieuwstraat 41,9000 Ghent, Belgium,NV Bekaert SA, Bekaertstraat I, 8500 Zwevegem, Belgium;

    Department of Flow, Heat and Combustion Mechanics, Ghent University, Sint-Pietersnieuwstraat 41,9000 Ghent, Belgium,Delft University of Technology, Department Radiation, Radionuclides & Reactors, Mekelweg 15,2629 JB Delft, The Netherlands;

    Department of Flow, Heat and Combustion Mechanics, Ghent University, Sint-Pietersnieuwstraat 41,9000 Ghent, Belgium;

    Department of Flow, Heat and Combustion Mechanics, Ghent University, Sint-Pietersnieuwstraat 41,9000 Ghent, Belgium;

    Department of Flow, Heat and Combustion Mechanics, Ghent University, Sint-Pietersnieuwstraat 41,9000 Ghent, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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