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首页> 外文期刊>Journal of Hydrology >Topsoil moisture patterns on arid hillsides - Micro-scale mapping by thermal infrared images
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Topsoil moisture patterns on arid hillsides - Micro-scale mapping by thermal infrared images

机译:干旱山坡上的表层土壤水分模式-通过红外热像进行的微尺度制图

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摘要

In and hillsides the topsoil moisture is a key factor in understanding environmental processes such as overland flow generation and soil-plant interactions. The reported research focused on the effects of hillside aspect and micro-topography on the spatial distribution of topsoil moisture on the shrub microenvironment scale, and on the diminution pattern of the moisture content after rain events. Data were acquired by close-range thermal infrared (TIR) imaging and processed with a model in which spatially consecutive TIR data are converted into soil moisture values and high-resolution maps. The results indicate a dynamic pattern of topsoil moisture in shrub microenvironments on and hillsides. The pattern consists of a moist patch that is spatially associated with the shrub canopy projection. The changes in the spatial characteristics over time depend upon the micro-topography and the hillside aspect, north (N) or south (S). The main differences are in the soil moisture content (N > S), its rates of change (S > N), the size of the moist patch relative to the shrub canopy projection (N > S), and in the displacement of the moist patch relative to the shrub canopy projection (downslope on N and upslope on S). The results may provide a better understanding of the time variation of surface water resources on the shrub scale, and also of surface water redistribution during rainfall. (c) 2006 Elsevier B.V. All rights reserved.
机译:在山坡中和山坡上,表土的水分是理解环境过程(如陆上水流产生和土壤与植物相互作用)的关键因素。报道的研究集中在坡面和微观地形对灌木微环境尺度上表层土壤水分空间分布的影响,以及降雨事件后水分含量的减少模式上。通过近距离热红外(TIR)成像获取数据,并使用将空间连续TIR数据转换为土壤湿度值和高分辨率地图的模型进行处理。结果表明在山坡和坡地的灌木微环境中表土水分的动态变化。该图案由在空间上与灌木冠层投影相关联的潮湿补丁组成。空间特征随时间的变化取决于微观地形和北部(N)或南部(S)的山坡特征。主要区别在于土壤水分含量(N> S),其变化率(S> N),相对于灌木冠层投影的湿斑面积(N> S)和湿润度的位移相对于灌木冠层投影的补丁(N处为下坡,S处为上坡)。结果可以更好地了解灌木尺度上地表水资源的时间变化以及降雨过程中地表水的重新分配。 (c)2006 Elsevier B.V.保留所有权利。

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