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Transport pathways within percolating pore space networks of granular materials

机译:灰色材料渗透孔隙空间网络中的运输途径

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Granular media can be regarded as a mixture of two components: grains and the material filling the voids or pores between the grains. Pore properties give rise to a range of applications such as modelling ground water flow, carbon capture and sequestration. The grains within a dense granular material respond to deformation (e.g., shearing or compression) by rearranging to create local zones of compression and zones of dilatation (i.e., regions of high pore space). Descriptions of the deformation are typically focused on analysis of the solid skeleton via topology of physical contact networks of grains but an alternative perspective is to consider network representations of the evolving anisotropic pore space. We demonstrate how to construct pore space networks that express the local size of voids about a grain through network edge weights. We investigate sectors of the loading history when a percolating giant component of the pore space network exists. At these states the grains are in a configuration more prone to the efficient transport of material (e.g., fluid flow, mineral/gas deposits). These pathways can be found through examination of the weighted shortest paths percolating the boundaries of the material. In particular, network weights biased towards large void space results in efficient percolating pathways traversing the shear band in the direction of principal stress within a 2D granular assembly subject to high strains.
机译:粒状介质可以被认为是两种组分的混合物:谷物和填充晶粒之间的空隙或孔的材料。孔隙性能产生一系列应用,如建模水流量,碳捕获和封存。密集粒状材料内的晶粒通过重新排列来响应变形(例如,剪切或压缩),以产生局部的压缩和扩张区域(即,高孔隙区域的区域)。变形的描述通常集中于通过谷物的物理接触网络的拓扑分析固体骨架,而是替代的视角是考虑演化各向异性孔隙空间的网络表示。我们展示了如何构建通过网络边缘权重表达谷物的局部大小的孔隙空间网络。当孔隙空间网络的渗透巨大分量存在时,我们调查装载历史的扇区。在这些状态下,晶粒在构造中更容易出现有效的材料传输(例如,流体流动,矿物/气体沉积物)。可以通过检查渗透材料边界的加权最短路径来找到这些途径。特别地,朝向大空隙空间偏置的网络权重导致有效的渗透途径,其沿着经过高菌株的2D粒状组件内的主应力方向横穿剪切带。

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