首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Trinarization of μX-ray CT images of partially saturated sand at different water-retention states using a region growing method
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Trinarization of μX-ray CT images of partially saturated sand at different water-retention states using a region growing method

机译:使用区域生长法在不同保水状态下部分饱和砂土的μX射线CT图像三重化

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The trinarization of micro-computed tomography (CT) images for partially saturated soils at different water-retention states has been performed to clearly identify the three phases, i.e., the soil particles, the pore water and the pore air. We have proposed a trinarization technique for partially saturated soils whose histograms of the gray values for the three phases overlap each other. The segmentation method used in this study is the region growing method that ensures the spatial continuity of the phases extracted by the segmentation. Micro CT images of a dense sand specimen during the wetting process in a water retention test have been obtained. It has been found that the trinarization of the CT images in a high pore saturation regime provides reasonable results, while that in a low pore saturation regime overestimates the local void ratio. This is because the gray values of the mixels of the soil particle phase and the air phase, due to the partial volume effect, are similar to those of the water phase. It is necessary, therefore, to validate the trinarization results, by a comparison with the test results, because it is difficult to theoretically evaluate the partial volume effect. The correction of the tolerance value for the low pore saturation case with validation has provided better trinarization results. Through the trinarized CT images, the form of the existing pore water at different water-retention states has been discussed.
机译:已经对处于不同保水状态的部分饱和土壤进行了微计算机断层扫描(CT)图像的三层分析,以清楚地识别出三个阶段,即土壤颗粒,孔隙水和孔隙空气。我们提出了一种针对部分饱和土壤的三层分析技术,该土壤的三相灰度值的直方图相互重叠。本研究中使用的分割方法是区域增长方法,可确保通过分割提取的相的空间连续性。在保水试验中,在润湿过程中获得了致密砂岩样品的Micro CT图像。已经发现,在高孔隙饱和度状态下CT图像的三层化提供了合理的结果,而在低孔隙饱和度状态下CT图像的三叉化过高了局部空隙率。这是因为由于部分体积效应,土壤颗粒相和空气相的混合灰度的灰度值与水相相似。因此,有必要通过与测试结果进行比较来验证三叉戟结果,因为理论上难以评估部分体积效应。通过验证对低孔饱和度情况下的公差值进行校正,可以提供更好的三分类结果。通过三层CT图像,讨论了在不同保水状态下存在的孔隙水的形式。

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