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Repeated electromagnetic induction measurements for mapping soil moisture at the field scale: validation with data from a wireless soil moisture monitoring network

机译:反复电磁感应测量在现场规模上映射土壤湿度:验证无线土壤湿度监测网络的数据

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Electromagnetic induction?(EMI) measurements are widely used for soil mapping, as they allow fast and relatively low-cost surveys of soil apparent electrical conductivity?(ECa). Although the use of non-invasive EMI for imaging spatial soil properties is very attractive, the dependence of ECa on several factors challenges any interpretation with respect to individual soil properties or states such as soil moisture?(θ). The major aim of this study was to further investigate the potential of repeated EMI measurements to map?θ, with particular focus on the temporal variability of the spatial patterns of ECa and?θ. To this end, we compared repeated EMI measurements with high-resolution θ?data from a wireless soil moisture and soil temperature monitoring network for an extensively managed hillslope area for which soil properties and θ?dynamics are known. For the investigated site, (i)?ECa showed small temporal variations whereas θ?varied from very dry to almost saturation, (ii)?temporal changes of the spatial pattern of ECa differed from those of the spatial pattern of?θ, and (iii)?the ECaθ relationship varied with time. Results suggest that (i)?depending upon site characteristics, stable soil properties can be the major control of ECa measured with EMI, and (ii)?for soils with low clay content, the influence of?θ on ECa may be confounded by changes of the electrical conductivity of the soil solution. Further, this study discusses the complex interplay between factors controlling ECa and?θ, and the use of EMI-based ECa data with respect to hydrological applications.
机译:电磁感应α(EMI)测量广泛用于土壤映射,因为它们允许土壤表观电导率的快速且相对低成本的调查?(ECA)。虽然使用非侵入式EMI进行成像空间土壤性质非常有吸引力,但ECA对几个因素的依赖性挑战了对各种土壤性质或土壤水分(θ)等各种土壤性质或州的任何解释。(θ)。本研究的主要目的是进一步研究重复的EMI测量对映射映射的电位θθθ,特别侧重于ECA的空间模式的时间可变性和θθ。为此,我们将重复的EMI测量与高分辨率θ进行比较了来自无线土壤湿度和土壤温度监测网络的数据,用于广泛管理的山坡区域,其中土壤属性和θ?动力学是已知的。对于调查的网站,(i)?ECA显示出小的时间变化,而θ变化,从非常干燥到几乎饱和度,(ii)?ECA的空间模式的时间变化与θθ的空间模式的空间模式不同。( III)?ECAθ关系随时间而变化。结果表明(i)?根据现场特征,稳定的土壤特性可以是用EMI测量的ECA的主要控制,(II)?对于粘土含量低的土壤,Δθ对ECA的影响可能会被变化混淆土壤溶液的电导率。此外,该研究讨论了控制ECA和θ的因子之间的复杂相互作用,以及关于水文应用的基于EMI的ECA数据的使用。

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