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About the connectivity of dual-scale media based on micro-structure based regional analysis of NMR flow propagators

机译:基于基于微结构的NMR流动传播器区域分析的双尺度介质的连通性

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The characterisation of heterogeneous porous media at multiple length scales typically requires the classification of structure at some scale to allow the calculation of effective transport properties at a scale relevant for macroscopic description. While such a classification may be derived from various imaging methods, a shortcoming is often the simultaneous characterisation of the connectivity between regions representing different microstructure. In this work we combine NMR based flow propagators with the simulations performed on corresponding reconstructed structure, and relate the NMR measurements to their simulated global and local representations to study fluid transport locally and the exchange between micro- and macro-porous regions. This is achieved by carrying out detailed lattice Boltzmann simulations and random walk method to track the dis-placements of tracers in each kind of region. Using Euclidean distance maps (EDT) we analyse the fluid invasion to regions of different scale and relate it to the connectivity of the system. We demonstrate that numerical simulation has great flexibility in providing additional sensitivity to the inference of region-region connectivity.
机译:在多个长度尺度上表征非均质多孔介质通常需要在一定尺度上对结构进行分类,以允许在与宏观描述有关的尺度上计算有效传输性质。尽管这种分类可以从各种成像方法中得出,但是缺点通常是同时表征了代表不同微结构的区域之间的连通性。在这项工作中,我们将基于NMR的流动传播器与在相应的重构结构上进行的模拟相结合,并将NMR测量值与其模拟的全局和局部表示相关联,以研究局部的流体传输以及微孔和大孔区域之间的交换。这是通过执行详细的格子Boltzmann模拟和随机游走方法来跟踪每种区域中示踪剂的位移来实现的。使用欧几里得距离图(EDT),我们分析了流体向不同尺度区域的侵入,并将其与系统的连通性联系起来。我们证明,数值模拟在提供对区域-区域连接性推断的额外敏感性方面具有很大的灵活性。

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