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Estimation of hydraulic conductivities using higher-order MRF-based stochastic joint inversion of hydrogeophysical measurements

机译:使用基于水力地球物理测量的基于MRF的高阶随机联合反演来估算水力传导率

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摘要

Stochastic imaging provides geologically realistic solutions to aquifer uncertainty quantification problems. Higher-order statistics for representing complex priors in stochastic-imaging problems are typically borrowed from training images, which may bias outcomes if the training images are unrepresentative of the desired structures. A Markov random field (MRF)-based stochastic-imaging algorithm, the spatial statistics of which are adaptively inferred directly from hydrogeophysical measurements without training images, is presented. For convenience of implementation, MRF models are commonly specified with pairwise interactions, limiting their ability to model complex architectures. MRF model specifications involving higher-order interactions are considered here. In the proposed algorithm, the lithologic structure of the aquifer and the hydraulic conductivities within the identified lithologies are simultaneously estimated in confor-mance to data-unconditioned and data-conditioned higher-order statistics while honoring the hydrogeophysical data sets. High reconstruction accuracy rates with nonsmooth, geologically realistic aquifer heterogeneities are reported in a hypothetical trinary hydrofacies aquifer characterization problem with various combinations of concentration and electrical-resistivity conditionings, illustrating the value of the different data types.
机译:随机成像为含水层不确定性量化问题提供了地质上可行的解决方案。通常从训练图像中借用用于表示随机成像问题中的复杂先验的高阶统计量,如果训练图像不能代表所需的结构,则可能会使结果产生偏差。提出了一种基于马尔可夫随机场(MRF)的随机成像算法,该算法的空间统计量可直接从水文地球物理测量值中进行自适应推断而无需训练图像。为了便于实现,MRF模型通常指定为成对交互,从而限制了它们对复杂体系结构建模的能力。此处考虑了涉及高阶交互的MRF模型规范。在提出的算法中,根据数据无条件和数据条件的高阶统计量,同时尊重水文地球物理数据集,同时估计含水层的岩性结构和识别出的岩性中的水力传导率。在假设的三元水相含水层表征问题中,采用浓度和电阻率条件的各种组合,报告了具有非光滑,地质上现实的含水层非均质性的高重建精度,该数据说明了不同数据类型的价值。

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  • 来源
    《The Leading Edge》 |2016年第9期|776778-780782-785|共8页
  • 作者

    Erasmus Kofi Oware;

  • 作者单位

    Department of Geology, SUNY at Buffalo;

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  • 原文格式 PDF
  • 正文语种 eng
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