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Imaging and image-based fluid transport modeling at the pore scale in geological materials: A practical introduction to the current state-of-the-art

机译:地质材料孔隙尺度下的成像和基于图像的流体传输建模:当前最新技术的实用介绍

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摘要

Fluid flow and mass transport in geological materials are crucial in diverse Earth science applications. To fully understand the behavior of geological materials in this context, the pore scale properties of these materials have to be investigated and related to effective material properties. Imaging techniques are becoming ever more valuable tools to characterize the microstructure (especially in three dimensions), while numerical models to calculate transport properties based on experimental images of the microstructure are quickly maturing. The results of image-based modeling studies depend crucially on both the employed model and the quality of the pore space image on which the model runs. Given the technicality and the cross-disciplinary nature of this matter, this review aims to provide a practical and accessible introduction to both the experimental and numerical state-of-the-art, intended for students and researchers with backgrounds in experimental geo-sciences or computational sciences alike. (C) 2016 Elsevier B.V. All rights reserved.
机译:地质材料中的流体流动和传质在多种地球科学应用中至关重要。为了充分了解地质材料在这种情况下的行为,必须研究这些材料的孔隙尺度特性,并与有效的材料特性相关。成像技术正在成为表征微结构(尤其是三维)的更有价值的工具,而基于微结构实验图像计算传输特性的数值模型正在迅速成熟。基于图像的建模研究的结果主要取决于所采用的模型和运行该模型的孔隙空间图像的质量。鉴于此问题的技术性和跨学科性质,本综述旨在为实验和数字技术的最新发展提供实用且易于访问的介绍,以供具有实验地球科学或科学背景的学生和研究人员使用。计算科学一样。 (C)2016 Elsevier B.V.保留所有权利。

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