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Interpretation of multi-scale permeability data through an information theory perspective

机译:通过信息理论观点解释多尺度渗透数据

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We employ elements of information theory to quantify (i)?the information content related to data collected at given measurement scales within the same porous medium domain and (ii)?the relationships among information contents of datasets associated with differing scales. We focus on gas permeability data collected over Berea Sandstone and Topopah Spring Tuff blocks, considering four measurement scales. We quantify the way information is shared across these scales through (i)?the Shannon entropy of the data associated with each support scale, (ii)?mutual information shared between data taken at increasing support scales, and (iii)?multivariate mutual information shared within triplets of datasets, each associated with a given scale. We also assess the level of uniqueness, redundancy and synergy (rendering, i.e., information partitioning) of information content that the data associated with the intermediate and largest scales provide with respect to the information embedded in the data collected at the smallest support scale in a triplet. Highlights. Information theory allows characterization of the information content of permeability data related to differing measurement scales. An increase in the measurement scale is associated with quantifiable loss of information about permeability. Redundant, unique and synergetic contributions of information are evaluated for triplets of permeability datasets, each taken at a given scale.
机译:我们采用信息理论的元素来量化(i)?与在同一多孔介质域的给定测量尺度上收集的数据相关的信息内容和(ii)?与不同比例相关联的数据集的信息内容之间的关系。考虑到四个测量尺度,我们专注于收集的燃气渗透性数据和顶孔弹簧凝固块。我们量化信息的方式通过(i)横跨这些尺度(i)?与每个支持标度相关的数据的Shannon熵(ii)?在增加支撑尺度上拍摄的数据之间共享的互信息,(iii)?多变量互信息在数据集三胞胎中共享,每个都与给定比例相关联。我们还评估信息内容的唯一性,冗余和协同效应(渲染,即信息分区)的唯一性,冗余和协同级别(渲染,即信息分区),其与中间和最大尺度相关联的数据提供关于以最小的支持尺度收集的数据嵌入的数据提供的信息三胞。强调。信息理论允许表征与不同测量尺度相关的渗透性数据的信息内容。测量标度的增加与可渗透性的可量化信息丢失相关。对信息的多重,信息的冗余,独特和协同贡献进行评估,用于渗透性数据集的三胞胎,每个数据集每次以给定的比例拍摄。

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