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Scaling the Dependency of Soil Penetration Resistance on Water Content and Bulk Density of Different Soils

机译:衡量土壤渗透阻力对不同土壤水分和容重的依赖性

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摘要

Although soil cone penetrometers have been used for decades to assess soil mechanical strength and evaluate soil compaction, the strong dependency of the penetration resistance (PR) on soil water content and soil type makes it difficult to compare field data that vary in space and time because of soil spatial variability, variable weather conditions, and implementation of varying soil and crop management practices. In this study we introduce and evaluate a procedure to normalize and scale PR data measured with a dynamic soil cone penetrometer in six Brazilian soil profiles having different soil textures. Data covered a wide range of water contents taken during both dry and wet seasons. Correlations between PR and measured volumetric water content (theta(v)) and bulk density (rho(b)) data often display exponential type relationships that are known to depend on such soil properties as texture, mineralogy, and organic matter (OM) content. However, expressing theta(v) and rho(b) as a function of scaled water contents and bulk densities significant reduced the influence of soil type and allowed a parameterization independent of soil texture. The obtained regression equation produced much lower root mean square deviation (RMSD) values for our dataset as compared to previously published equations for PR using pedotransfer function approaches. The proposed scaling approach seems very promising and should be tested and expanded to other classes of soils and databases.
机译:尽管土壤锥渗计已经使用了数十年来评估土壤机械强度和评估土壤压实度,但是渗透阻力(PR)对土壤含水量和土壤类型的强烈依赖性使得难以比较时空变化的田间数据,因为土壤空间变异性,天气条件的变化以及不同土壤和作物管理方法的实施情况。在这项研究中,我们介绍并评估了一种程序,该程序可以对六个具有不同土壤质地的巴西土壤剖面中的动态土壤锥透仪测量的PR数据进行标准化和缩放。数据涵盖了在干燥和潮湿季节采集的大量水分。 PR与测得的体积水含量(theta(v))和堆积密度(rho(b))数据之间的相关性通常显示指数类型关系,已知这些关系取决于土壤性质,例如质地,矿物学和有机质(OM)含量。但是,将theta(v)和rho(b)表示为缩放的水含量和堆积密度的函数,可以显着减少土壤类型的影响,并可以进行与土壤质地无关的参数设置。与先前使用pedotransfer函数方法发布的PR方程相比,所获得的回归方程为我们的数据集产生了更低的均方根偏差(RMSD)值。提议的缩放方法似乎很有希望,应该进行测试并将其扩展到其他类别的土壤和数据库。

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