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Electromagnetic induction mapping at varied soil moisture reveals field-scale soil textural patterns and gravel lenses

机译:各种土壤水分的电磁感应映射揭示了场尺度的土壤纹理图案和砾石镜头

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摘要

Knowledge of the spatial distribution of soil textural properties is important for determining soil moisture storage and soil hydraulic transport properties. Capturing field heterogeneity without exhaustive sampling and costly sample analysis is difficult. Our objective was to employ electromagnetic induction (EMI) mapping in low apparent electrical conductivity (ECa) soils at varying soil water contents to capture time invariant properties such as soil texture. Georeferenced ECa measurements were taken using a ground conductivity meter on six different days where volumetric water content (θv) varied from 0.11 to 0.23. The 50 m × 50 m field included a subsurface gravelly patch in an otherwise homogeneous silt-loam alluvial soil. Ordinary block kriging predicted ECa at unsampled areas to produce 1-m resolution maps. Temporal stability analysis was used to divide the field into three distinct ECa regions. Subsequent ground-truthing confirmed the lowest conductivity region correlated with coarse textured soil parent materials associated with a former high-energy alluvial depositional area. Combining maps using temporal stability analysis gives the clearest image of the textural difference. These maps could be informative for modeling, experimental design, sensor placement and targeted zone management strategies in soil science, ecology, hydrology, and agricultural applications.
机译:了解土壤质地特性的空间分布对于确定土壤水分存储和土壤水力传输特性非常重要。很难在不进行详尽采样和昂贵的样本分析的情况下捕获场异质性。我们的目标是在土壤水含量不同的情况下,在低表观电导率(ECa)的土壤中采用电磁感应(EMI)映射,以捕获随时间变化的特性,例如土壤质地。使用地面电导率仪在六个不同的天进行地理参考ECa测量,其中体积水含量(θv)从0.11到0.23不等。 50 m×50 m的田地在原本是均质的粉壤土-冲积土壤中包括一个地下砾石斑块。普通块克里金法在非采样区域预测ECa,以生成1-m分辨率的图。使用时间稳定性分析将该领域划分为三个不同的ECa区域。随后的地面证实,最低的电导率区域与粗糙的质感土壤母体材料有关,后者与以前的高能冲积沉积区域有关。使用时间稳定性分析来组合地图,可以得到最清晰的纹理差异图像。这些地图可为土壤科学,生态学,水文学和农业应用中的建模,实验设计,传感器放置和目标区域管理策略提供参考。

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