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Thermal modeling of two-dimensional periodic fractal patterns, an application to nanoporous media

机译:二维周期性分形图案的热建模,在纳米多孔介质中的应用

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摘要

Periodic patterns built with elementary Von Koch snowflakes have been found to be a good structural representation of nanoporous media (like monolithic silica aerogels) concerning the characterization of heat conduction. These geometries allow the modeling of different pore sizes, fractality and isotropy of the complex structure. A numerical model has been used to determine the effective thermal conductivity as a function of two parameters: density and tortuosity. The results—which match with an analytical model presented in the literature—are compared to simple periodic and random fractal geometries.
机译:已经发现,以基本的冯·科赫(Von Koch)雪花制成的周期性图案是纳米多孔介质(如整体式二氧化硅气凝胶)关于热传导特性的良好结构表示。这些几何形状允许对复杂结构的不同孔径,分形和各向同性进行建模。数值模型已被用来确定有效导热系数,这是两个参数的函数:密度和曲折度。将结果(与文献中提供的分析模型相匹配)与简单的周期性和随机分形几何进行比较。

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