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Exploration of empirical relationship between surface soil temperature and surface soil moisture over two catchments of contrasting climates and land covers

机译:在两个气候和土地覆盖形成对比的流域,地表温度和地表水分之间的经验关系探索

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摘要

Soil moisture plays a very important role in hydrological processes. It has been found in many studies that the surface soil moisture (SSM) is highly related to the diurnal change of the surface soil temperature (∆SST) at the same soil depth. However, some studies contradict this common belief with findings of a much stronger correlation between the SSM and the SST. In order to investigate this further, we have carried out for the first time a comparative assessment of the in-situ measured SST and ΔSST for SSM estimations, over two catchments with contrasting climate types and land uses (i.e. one in the UK and the other in Australia). In both catchments, the time point for the highest relationship between the SST and the SSM is explored. As a result, it is found the SST is more suitable to monitor the variability of the SSM than the ΔSST in both catchments. Moreover the proposed seasonal-based classification method further improves the SSM simulation results in both catchments, with a superior performance observed in the UK catchment (NSE = 0.900 and RMSE = 0.030). In the Australian catchment, a relatively weaker correlation is observed and some potential reasons are explained. The potential applications of the findings for remote sensing soil moisture retrievals are also discussed.
机译:土壤水分在水文过程中起着非常重要的作用。在许多研究中发现,在相同土壤深度下,地表土壤水分(SSM)与地表土壤温度(∆SST)的日变化高度相关。但是,一些研究与SSM和SST之间的相关性强得多的发现相矛盾。为了对此进行进一步调查,我们首次对两个集水区的气候类型和土地利用形成了对比(即一个在英国,另一个在另一个地区),比较了实地测量的SST和ΔSST以进行SSM估算的比较评估。在澳大利亚)。在两个流域中,都探索了SST和SSM之间最高关系的时间点。结果,发现在两个流域中,SST比ΔSST更适合监视SSM的变化。此外,建议的基于季节的分类方法进一步改善了两个流域的SSM模拟结果,在英国流域(NSE = 0.900和RMSE = 0.030)中观察到了优异的性能。在澳大利亚流域,相关性相对较弱,并解释了一些潜在原因。还讨论了研究结果在遥感土壤水分反演中的潜在应用。

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