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首页> 外文期刊>Agricultural Water Management >Assessing soil water content variability through active heat distributed fiber optic temperature sensing
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Assessing soil water content variability through active heat distributed fiber optic temperature sensing

机译:通过主动热分布式光学温度传感评估土壤含水量变异性

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摘要

Soil spatial variability is a key point for the sustainable water management in agriculture. Fractal techniques provide proper tools to analyze soil spatial variability searching for statistical self-similarity patterns among different scales. Although they have been extensively applied to study the soil properties variability, its applicability for the soil water content (SWC) distribution is complicated because requires many data difficult to obtain with the typical point soil water sensors. Recently, a fiber optic distributed temperature sensor has been used to measure soil thermal properties which relate to SWC. These sensors provide large amount of data with high spatial and temporal resolution, thus filling the gap of point soil water sensors. In the present work, soil temperature was measured with a Distributed Temperature Sensing (DTS) and SWC was estimated by different fitting functions which have been studied with focus on spatial variability.
机译:土壤空间变异性是农业可持续水资源管理的关键。 分形技术提供适当的工具,用于分析不同尺度之间统计自相似模式的土壤空间变异性。 尽管它们已被广泛应用于研究土壤性质的变化,但其对土壤含水量(SWC)分布的适用性是复杂的,因为需要许多难以获得典型点土壤水传感器的数据。 近来,光纤分布式温度传感器已用于测量与SWC相关的土壤热性能。 这些传感器提供具有高空间和时间分辨率的大量数据,从而填充点土壤水传感器的间隙。 在本作本作中,用分布式温度感测(DTS)测量土壤温度,并通过不同的配件函数估计SWC,这些功能估计,这些功能已经专注于空间可变性。

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