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Technical Note: Field-Scale Surface Soil Moisture Patterns and Their Relationship to Topographic Indices

机译:技术说明:田间尺度的表层土壤水分模式及其与地形指数的关系

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Understanding variability patterns in soil moisture is critical for determining an optimal sampling scheme both in space and in time, as well as for determining optimal management zones for agricultural applications that involve moisture status. In this study, distributed near-surface gravimetric soil moisture samples were collected across a 3.3 ha field in central Illinois for ten dates in the summer of 2002, along with dense elevation data. Temporal stability and consistency of the moisture patterns were analyzed in order to determine a suitable grid size for mapping and management, as well as to investigate relationships between moisture patterns and topographic and soil property influences. Variogram analysis of surface moisture data revealed that the geospatial characteristics of the soil moisture patterns are similar from one date to another, which may allow for a single, rather than temporally variable, variogram to describe the spatial structure. For this field, a maximum cell size of 10 m was found to be appropriate for soil moisture studies on most of the sampling occasions. This could indicate an appropriate scale for precision farming operations or for intensive ground sampling. While some areas had consistent behavior with respect to field mean moisture content, no conclusive relationships between the overall patterns in the moisture data and the topographic and soil indices were identified. There were, however, some small but significant correlations between these two sets of data, particularly plan and tangential curvature, and also slopes. In areas of convergent flow, moisture content exhibited a slight tendency to be wetter than average. There also seemed to be a small influence of scale on the relationship between moisture patterns and topographic curvatures
机译:了解土壤水分的变异性模式对于确定空间和时间方面的最佳采样方案以及确定涉及水分状态的农业应用的最佳管理区至关重要。在这项研究中,从2002年夏季开始,在伊利诺伊州中部一个3.3公顷的田地中收集了近地表重力土壤湿度样本,共十个日期,并附有密集的海拔数据。分析了湿度模式的时间稳定性和一致性,以便确定用于制图和管理的合适网格大小,并研究湿度模式与地形和土壤特性影响之间的关系。对表面水分数据的方差分析表明,从一个日期到另一个日期,土壤湿度模式的地理空间特征是相似的,这可能允许使用一个单一的而不是随时间变化的变异图来描述空间结构。对于该领域,在大多数采样情况下,发现最大单元大小为10 m适于土壤湿度研究。这可能表明适用于精确农业操作或密集地面采样的规模。尽管某些区域在田间平均含水量方面表现出一致的行为,但并未确定含水量数据中的总体模式与地形和土壤指数之间的结论性关系。但是,这两套数据之间存在一些小而重要的相关性,尤其是平面曲率和切向曲率以及坡度。在会聚的区域,水分含量略高于平均水平。规模似乎对湿度模式和地形曲率之间的关系影响很小

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