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首页> 外文期刊>Water resources research >Representative elementary volume estimation for porosity,moisture saturation, and air-water interfacial areas in unsaturated porous media: Data quality implications
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Representative elementary volume estimation for porosity,moisture saturation, and air-water interfacial areas in unsaturated porous media: Data quality implications

机译:非饱和多孔介质中孔隙度,水分饱和度和气-水界面面积的代表性基本体积估算:数据质量的影响

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摘要

Achieving a representative elementary volume (REV) has become a de facto criterion for demonstrating the quality of uCT measurements in porous media systems. However, the data quality implications of an REV requirement have not been previously examined. In this work, deterministic REVs for porosity, moisture saturation {Sw), and air-water interfacial area (A/) were estimated using a set of 49 μCT images of eight unsaturated homogeneous porous media with heterogeneity in moisture distributions present in varying degrees. Estimated porosity REVs were <8 mm3 for all cases, smaller than typical uCT image sizes (~100 mm~3). Estimated S_W and A_I REVs were <55 mm~3 for cases with homogeneous moisture distributions but could not be estimated for cases with heterogeneous moisture distributions, due to the absence of a distinct "REV plateau" within the maximum imaged volume. Conventionally, S_W and A_I data from such non-REV cases would be excluded. The implications of excluding data on the basis of REV were examined by comparing A_I-S_W data measured on image windows of increasing size against the expected linear A_I-S_W relationship. At measurement scales exceeding porosity REV, random fluctuations in A_I-S_W data were excluded, even for cases containing heterogeneous moisture distributions. In contrast, requiring measurement scales to exceed S_W and A_I REV appeared overly restrictive and resulted in visible loss of reliable A_I-S_W data. We attribute these findings to overestimation of REVs due to inherently problematic estimation of deterministic REVs in real systems. Implications of these findings for ensuring uCT data quality and the efficient use of uCT data are discussed.
机译:获得代表性的基本体积(REV)已成为证明多孔介质系统中uCT测量质量的事实上的标准。但是,以前没有检查过REV要求对数据质量的影响。在这项工作中,使用一组49μCT图像对八个不饱和均质多孔介质进行了估算,确定了孔隙度,水分饱和度(Sw)和空气-水界面面积(A /)的确定性REV,且水分分布存在不同程度的不均匀性。在所有情况下,估计的孔隙度REV <8 mm3,小于典型的uCT图像尺寸(〜100 mm〜3)。对于水分分布均匀的情况,估计的S_W和A_I REVs <55 mm〜3,但是对于水分分布不均匀的情况,由于在最大成像体积内没有明显的“ REV平稳期”,因此无法估算。按照惯例,将排除此类非REV案例中的S_W和A_I数据。通过将在增大尺寸的图像窗口上测得的A_I-S_W数据与预期的线性A_I-S_W关系进行比较,研究了基于REV排除数据的含义。在超过孔隙度REV的测量尺度上,即使对于包含非均匀水分分布的情况,也排除了A_I-S_W数据的随机波动。相反,要求测量范围超过S_W和A_I REV似乎过于严格,导致可靠A_I-S_W数据的可见损失。我们将这些发现归因于REVs的高估,这是由于实际系统中确定性REVs固有的问题估计。讨论了这些发现对确保uCT数据质量和有效使用uCT数据的意义。

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  • 来源
    《Water resources research》 |2011年第7期|p.W07513.1-W07513.12|共12页
  • 作者单位

    Program for Environmental Studies and Department of Chemistry and Biochemistry, Middlebury College, Middlebury, Vermont, USA;

    Program for Environmental Studies and Department of Chemistry and Biochemistry, Middlebury College, Middlebury, Vermont, USA;

    Department of Computer Science, Middlebury College, Middlebury,Vermont, USA;

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