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Effective transport properties of random composites: Continuum calculations versus mapping to a network

机译:随机复合材料的有效传输特性:连续体计算与映射到网络

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摘要

The effective transport properties and percolation of continuum composites have commonly been studied using discrete models, i.e., by mapping the continuum to a lattice or network. In this study we instead directly solve the continuum transport equations for composite microstructures both analytically and numerically, and we extract the continuum percolation threshold and scaling exponents for the two-dimensional square tile system. We especially focus on the role of corner contacts on flux flow and further show that mapping such “random checkerboard” systems to a network leads to a spurious secondary percolation threshold and causes shifts in the critical scaling exponents of the effective transport properties.
机译:通常已经使用离散模型,即通过将连续体映射到晶格或网络来研究连续体复合物的有效传输性质和渗透。在本研究中,我们直接通过解析和数值方法直接求解了复合材料微结构的连续体输运方程,并提取了二维正方形瓷砖系统的连续体渗透阈值和缩放指数。我们特别关注角接触在通量流上的作用,并进一步表明,将此类“随机棋盘”系统映射到网络会导致虚假的二次渗透阈值,并导致有效传输特性的关键缩放指数发生变化。

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