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Morphological functions to quantify three-dimensional tomograms of macropore structure in a vineyard soil with two different management regimes

机译:形态学功能用于量化两种不同管理方式的葡萄园土壤中大孔结构的三维断层图

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摘要

Soil tomography and morphological functions built over Minkowski functionals were used to describe the impact on pore structure of two soil management practices in a Mediterranean vineyard. Soil structure controls important physical and biological processes in soil-plant-microbial systems. Those processes are dominated by the geometry of soil pore structure, and a correct model of this geometry is critical for understanding them. Soil tomography has been shown to provide rich three-dimensional digital information on soil pore geometry. Recently, mathematical morphological techniques have been proposed as powerful tools to analyze and quantify the geometrical features of porous media. Minkowski functionals and morphological functions built over Minkowski functionals provide computationally efficient means to measure four fundamental geometrical features of three-dimensional geometrical objects, that is, volume, boundary surface, mean boundary surface curvature, and connectivity. We used the threshold and the dilation and erosion of three-dimensional images to generate morphological functions and explore the evolution of Minkowski functionals as the threshold and as the degree of dilation and erosion changes. We analyzed the three-dimensional geometry of soil pore space with X-ray computed tomography (CT) of intact soil columns from a Spanish Mediterranean vineyard by using two different management practices (conventional tillage versus permanent cover crop of resident vegetation). Our results suggested that morphological functions built over Minkowski functionals provide promising tools to characterize soil macropore structure and that the evolution of morphological features with dilation and erosion is more informative as an indicator of structure than moving threshold for both soil managements studied. © Soil Science Society of America 5585 Guilford Rd., Madison, WI 53711 USA. All rights reserved.
机译:建立在Minkowski泛函上的土壤层析成像和形态学函数用于描述地中海葡萄园中两种土壤管理实践对孔隙结构的影响。土壤结构控制着土壤-植物-微生物系统中重要的物理和生物过程。这些过程以土壤孔隙结构的几何形状为主导,正确的几何形状模型对于理解它们至关重要。已显示土壤层析成像技术可提供有关土壤孔隙几何形状的丰富的三维数字信息。近来,数学形态学技术已被提出作为分析和量化多孔介质的几何特征的有力工具。 Minkowski泛函和建立在Minkowski泛函上的形态函数为计算三维几何对象的四个基本几何特征(即体积,边界曲面,平均边界曲面曲率和连通性)提供了有效的计算手段。我们使用阈值以及三维图像的膨胀和腐蚀来生成形态函数,并探索Minkowski函数的演化,将其作为阈值以及膨胀和腐蚀程度的变化。我们使用两种不同的管理方法(常规耕作与常驻植被的永久覆盖作物),通过西班牙地中海葡萄园完整土壤柱的X射线计算机断层扫描(CT)分析了土壤孔隙空间的三维几何形状。我们的研究结果表明,建立在Minkowski泛函上的形态学功能为表征土壤大孔结构提供了有前途的工具,并且对于这两种土壤管理方法而言,具有扩张和侵蚀作用的形态学特征作为结构的指标比移动阈值更具指导意义。 ©美国土壤科学学会5585 Guilford Rd。,Madison,WI 53711美国。版权所有。

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