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Saturated areas through the lens: 1. Spatio-temporal variability of surface saturation documented through thermal infrared imagery

机译:透过镜头的饱和区域:1.通过热红外图像记录的表面饱和度的时空变化

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Surface saturated areas are key features in generating run-off. A detailed characterization of the expansion and contraction of surface saturation in riparian zones and its connectivity to the stream is fundamental to improve our understanding of the spatial and temporal variability of streamflow generation processes. In this first contribution of a series of two papers, we used ground-based thermal infrared imagery for characterizing riparian surface saturation seasonal dynamics of seven different riparian areas in the Weierbach catchment (0.42 km(2)), a small forested catchment in Luxembourg. We collected biweekly panoramic images of the seven areas over a period of 2 years. We identified the extension of saturation in each collected panoramic image (i.e., percentage of pixels corresponding to saturated surfaces in each riparian area) to generate time series of surface saturation. Riparian surface saturation in all areas was seasonally variable, and its dynamics were in accordance with lower hillslope groundwater level fluctuations. Surface saturation in the different areas related to catchment outlet discharge through power law relationships. Differences in these relationships for different areas could be associated with the location of the areas along the stream network and to a possible influence of local riparian morphology on the development of surface saturation, suggesting a certain degree of intracatchment heterogeneity. This study paves the way for a subsequent investigation of the spatio-temporal variability of streamflow generation in the catchment, presented in our second contribution.
机译:表面饱和区域是产生径流的关键特征。对河岸带表面饱和度的膨胀和收缩及其与河流的连通性的详细描述,是增进我们对河流水流产生过程时空变化的理解的基础。在两篇论文的第一篇贡献中,我们使用了基于地面的红外热像仪来表征位于卢森堡的一个小型森林流域魏尔巴赫流域(0.42 km(2))中七个不同河岸区域的河岸表面饱和度季节动态。我们在两年的时间内每两周收集了七个区域的全景图像。我们在每个收集的全景图像中确定了饱和度的扩展(即与每个河岸区域中的饱和表面相对应的像素百分比)以生成表面饱和度的时间序列。所有地区的河岸地表饱和度是季节性变化的,其动态与较低的山坡地下水位波动一致。通过幂律关系,与集水口排放有关的不同区域的表面饱和度。这些关系对于不同区域的差异可能与沿河网的区域位置有关,也可能与局部河岸形态对地表饱和度发展的可能影响有关,表明集水区内部存在一定程度的异质性。这项研究为后续研究集水区水流产生的时空变化铺平了道路,这是我们的第二篇论文。

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