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Conservative Models: Parametric Entropy vs. Temporal Entropy in Outcomes

机译:保守模型:结果中的参数熵与时间熵

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摘要

The geologic architecture in aquifer systems affects the behavior of fluid flow and the dispersion of mass. The spatial distribution and connectivity of higher-permeability facies play an important role. Models that represent this geologic structure have reduced entropy in the spatial distribution of permeability relative to models without structure. The literature shows that the stochastic model with the greatest variance in the distribution of predictions (i.e., the most conservative model) will not simply be the model representing maximum disorder in the permeability field. This principle is further explored using the Shannon entropy as a single metric to quantify and compare model parametric spatial disorder to the temporal distribution of mass residence times in model predictions. The principle is most pronounced when geologic structure manifests as preferential-flow pathways through the system via connected high-permeability sediments. As per percolation theory, at certain volume fractions the full connectivity of the high-permeability sediments will not be represented unless the model is three-dimensional. At these volume fractions, two-dimensional models can profoundly underrepresent the entropy in the real, three-dimensional, aquifer system. Thus to be conservative, stochastic models must be three-dimensional and include geologic structure.
机译:含水层系统中的地质构造会影响流体的行为和质量扩散。高渗透相的空间分布和连通性起着重要作用。相对于没有结构的模型,表示这种地质结构的模型在渗透率的空间分布上具有减小的熵。文献表明,在预测分布中具有最大方差的随机模型(即最保守的模型)将不只是代表渗透率领域中最大无序的模型。使用Shannon熵作为单一度量标准来进一步探索该原理,以量化模型参量空间无序并将其与模型预测中质量停留时间的时间分布进行比较。当地质结构表现为通过相连的高渗透性沉积物通过系统的优先流动路径时,该原理最为明显。根据渗流理论,除非模型是三维的,否则在某些体积分数下,高渗透性沉积物的完全连通性将无法表示。在这些体积分数下,二维模型可能会严重不足以表示真实的三维含水层系统中的熵。因此,为了保守起见,随机模型必须是三维的,并且必须包括地质结构。

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  • 来源
    《Ground water》 |2012年第2期|p.199-206|共8页
  • 作者单位

    Department of Earth and Environmental Sciences, Wright State University, 3640 Coin. Glenn Hwy., Dayton, OH 45435;

    Department of Earth and Environmental Sciences, Wright State University, 3640 Coin. Glenn Hwy., Dayton, OH 45435;

    Department of Earth and Environmental Sciences, Wright State University, 3640 Coin. Glenn Hwy., Dayton, OH 45435;

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