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首页> 外文期刊>Water resources research >Characterization of the Pore Structure of Porous Media Using non-Newtonian Fluids
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Characterization of the Pore Structure of Porous Media Using non-Newtonian Fluids

机译:使用非牛顿流体表征多孔介质的孔隙结构

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摘要

We demonstrate a simple, cheap method for pore size characterization of porous media that generates a distribution of pore radii for improved flow and transport modeling. The new method for pore structure characterization utilizes recent theoretical developments in non-Newtonian fluids. Numerical evaluations and validations with synthetic porous media showed potential for obtaining a distribution of effective pore radii and their contribution to total flow only by complementing water with non-Newtonian fluids in saturated infiltration experiments. To demonstrate this ability on real sands, a series of one-dimensional column experiments was conducted with varying porous medium packings, including Accusands and a polydisperse sand/glass bead mixture. For each packing, distilled water and varying concentrations of guar and xanthan gum were injected over a range of flow rates and pressure gradients. The model-generated pore radii were compared with pore radius distributions measured by X-ray microcomputed tomography (mu CT), with results demonstrating good agreement between the model and mu CT data. Simulations of saturated water flow and drainage curves using model-generated pore radii compared favorably to experimental data, with errors typically between 2% and 10% for single-phase flow and approaching the error of the mu CT measured radius distributions for the drainage curves.Plain Language Summary Knowledge of pore sizes of porous materials is critical to modeling water flow in the environment. Most pore size measurement methods are expensive and require collecting samples of a limited size for laboratory analysis, thus possibly disturbing the pore structure. Our method shows promise as a simple, cheap approach to measure pore sizes directly in the field. The method involves flowing food-grade fluids that exhibit specific flow properties (non-Newtonian fluids) through soils and using the results as input for the model that provides a pore size distribution. We tested the method on four sands, conducting flow experiments with water and six different non-Newtonian fluids. Model results showed good agreement with direct X-ray measurements of the sands. We also used the pore sizes produced by the model to calculate the flow of water through the sands and compared these results with experimental data. We obtained excellent agreement, with errors on the order of 2-10% for water flow and approaching the error obtained using the X-ray results for the drainage of the material. These results indicate that this simple method provides results nearly as accurate as much more expensive and invasive methods and shows promise for use in the field.
机译:我们演示了一种用于多孔介质孔径表征的简单,廉价的方法,该方法可生成孔半径分布,以改善流动和传输模型。用于孔隙结构表征的新方法利用了非牛顿流体的最新理论发展。合成多孔介质的数值评估和验证表明,只有通过在饱和渗透实验中用非牛顿流体补充水,才能获得有效孔隙半径的分布及其对总流量的贡献。为了证明在真正的沙子上具有这种能力,使用了多种多孔介质填料(包括Accusands和多分散性沙子/玻璃珠混合物)进行了一系列一维柱实验。对于每种填料,在一定的流速和压力梯度范围内注入蒸馏水和各种浓度的瓜尔胶和黄原胶。将模型生成的孔半径与X射线微计算机断层扫描(mu CT)测量的孔半径分布进行比较,结果表明模型与mu CT数据之间具有很好的一致性。使用模型生成的孔半径模拟的饱和水流和排水曲线与实验数据相比具有优势,单相流的误差通常在2%到10%之间,并且接近mu CT测量的排水曲线半径分布的误差。朴素的语言摘要多孔材料孔径的知识对于模拟环境中的水流至关重要。大多数孔径测量方法很昂贵,并且需要收集有限尺寸的样本以进行实验室分析,因此可能会干扰孔径结构。我们的方法显示了一种有望在现场直接测量孔径的简单,廉价的方法的前景。该方法涉及使具有特定流动特性的食品级流体(非牛顿流体)流经土壤,并将结果用作提供孔径分布的模型的输入。我们在四种沙子上测试了该方法,并用水和六种不同的非牛顿流体进行了流动实验。模型结果与直接对沙子进行X射线测量显示出良好的一致性。我们还使用该模型产生的孔径来计算水流过沙子的流量,并将这些结果与实验数据进行比较。我们获得了极好的协议,水流的误差在2-10%的数量级,并且接近使用X射线结果进行材料排水所获得的误差。这些结果表明,这种简单的方法所提供的结果几乎与更昂贵且更具侵入性的方法一样准确,并显示了在该领域中使用的希望。

著录项

  • 来源
    《Water resources research》 |2019年第8期|7182-7195|共14页
  • 作者单位

    Calif State Univ Northridge Dept Geol Sci Northridge CA 91330 USA;

    Univ Calif Davis Dept Land Air & Water Resources Davis CA 95616 USA;

    Univ N Carolina Dept Environm Sci & Engn Chapel Hill NC 27515 USA;

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  • 正文语种 eng
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