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A multidimensional, generalized coupled Markov chain model for surface and subsurface characterization

机译:用于表面和亚表面表征的多维广义耦合马尔可夫链模型

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摘要

This paper develops a Markov chain-based geostatistical model for multidimensional field predictions of the categorical attributes. An efficient conditional probability equation that considers directional asymmetry was derived, and a computational algorithm was devised with numerical code. The developed model was applied to two-dimensional case studies and compared with the representative conventional sequential indicator simulation (SIS) model. On the basis of engaged comparisons with the SIS model, it was concluded that this new model performs as well as or better than the SIS model, especially for lithologic predictions and structural estimations for the case studies with sparse sampled data, which is more or less realistic. The model was also applied to a three-dimensional case and validated by its plausible results. It is expected that the developed Markov chain-based geostatistical model will become a sound option for multidimensional subsurface predictions in cases when the heterogeneities and uncertainties in the media properties are an important issue.
机译:本文针对分类属性的多维场预测,开发了基于马尔可夫链的地统计模型。推导了一个有效的考虑方向不对称性的条件概率方程,并用数字代码设计了一种计算算法。将开发的模型应用于二维案例研究,并与代表性的常规顺序指示器模拟(SIS)模型进行比较。根据与SIS模型的参与比较,得出的结论是,该新模型的性能与SIS模型相同或更好,特别是对于稀疏采样数据的案例研究的岩性预测和结构估计而言,或多或少现实的。该模型还应用于三维案例,并通过其合理的结果进行了验证。在介质特性的异质性和不确定性是重要问题的情况下,可以预期,基于马尔可夫链的地统计模型将成为多维地下预测的合理选择。

著录项

  • 来源
    《Water resources research》 |2010年第11期|p.W11509.1-W11509.15|共15页
  • 作者

    Eungyu Park;

  • 作者单位

    Department of Geology, Kyungpook National University,Daegu, 702-701, South Korea;

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  • 正文语种 eng
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