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Geometric Features and Fractal Nature of Soil Analyzed by X-Ray Microtomography Image Processing

机译:X射线显微镜图像处理分析土壤的几何特征和分形性质

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摘要

One of the most basic topics in soil mechanics is the geometrical features of the particles and the soil arrangement. Although these features are of high relevance, many definitions and processes used to evaluate them are not as precise as they could be. The conventional laboratory tests can require a certain amount of effort and lack objectivity. Also, the geometrical properties are important to understand the physical phenomena that occur in the medium and characterize the soil. Thus, this study presents several image processing algorithms and mathematical formulations to analyze sandy material through microtomography. These algorithms are capable of generating supervised information about the characterization process of soil morphology by using mathematical definitions. The algorithms are capable of generating the grain-size distribution, the soil tortuosity, the void ratio, and the sphericity of grains. Moreover, this work considers the fractal nature of the soil using non-Euclidean approaches for a broader comprehension of the soil geometric properties.
机译:土壤力学中最基本的主题之一是颗粒的几何特征和土壤排列。虽然这些特征具有高相关性,但用于评估它们的许多定义和过程并不像它们一样精确。传统的实验室测试可能需要一定的努力和缺乏客观性。而且,几何特性对于了解培养基中发生的物理现象并表征土壤。因此,该研究呈现了几种图像处理算法和数学制剂,以通过微微图谱分析沙质材料。这些算法能够通过使用数学定义来产生有关土壤形态学的特征过程的监督信息。该算法能够产生晶粒尺寸分布,土壤曲折,空隙率和谷物的球形。此外,这项工作考虑了使用非欧几里德方法进行土壤的分形性,以更广泛地理解土壤几何特性。

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