Do Pores Exist?—Foundational Issues in Pore Structural Characterisation

Sean P. Rigby
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Abstract

This work reviews a range of fundamental theoretical considerations in pore structural characterisation. The pore concept is essential for providing a better understanding of physical processes arising within porous media than purely phenomenological approaches. The notion of a pore structure is found to be independently valid and invariant during theory change concerning said physical processes, even for structural models obtained via indirect methods. While imaging methods provide a more direct characterisation of porous solids, there is often a surfeit of information beyond that which can be wielded with current computing power to predict processes sufficiently accurately. Unfortunately, the pore network model extraction methods cannot decide in advance the level of simplification necessary to obtain the optimum minimal idealisation for a given physical process. Pore network models can be obtained with differing geometrical and topological properties, but similar mass transfer rates, for reasons that are often not clear. In contrast, the ‘pore-sifting’ strategy aims to explicitly identify the key feature of the void space that controls a mass transport process of interest.
孔隙是否存在?--孔隙结构表征的基础问题
这项工作回顾了孔隙结构表征的一系列基本理论考虑。与纯粹的现象学方法相比,孔隙概念对于更好地理解多孔介质中产生的物理过程至关重要。研究发现,孔隙结构的概念在有关上述物理过程的理论变化过程中是独立有效和不变的,即使对于通过间接方法获得的结构模型也是如此。虽然成像方法可以更直接地描述多孔固体的特征,但往往存在大量信息,而这些信息超出了目前的计算能力所能提供的范围,因此无法充分准确地预测过程。遗憾的是,孔隙网络模型提取方法无法事先确定必要的简化程度,以获得特定物理过程的最佳最小理想化。孔隙网络模型可以具有不同的几何和拓扑特性,但传质速率相似,原因往往不清楚。相比之下,"孔隙筛选 "策略旨在明确确定控制相关质量传输过程的空隙空间的关键特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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