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Statistical and scaling properties of remotely-sensed soil moisture in two contrasting domains in the North American monsoon region

机译:北美季风区两个对比域中遥感土壤水分的统计和尺度性质

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Characterizing soil moisture (θ) variability is important for inferring high-resolution information from coarse estimates provided by remote sensors. In this study, we analyze the spatial variability and scale invariance of high-resolution θ estimates collected in two contrasting semiarid areas, Arizona (AZ) and Sonora (SON), during the Soil Moisture Experiment - North American Monsoon in 2004 (SMEX04-NAME). Results reveal that as the mean θ condition (<θ>) becomes drier, the spatial standard deviation becomes smaller in both domains. The coefficient of variation of 8 decreases with <θ> in SON, but does not display a clear tendency with <θ> in AZ. We also found the presence of scale invariance and multifractality in the range of support scales from 51.2 km to 0.8 km for all soil moisture fields in the two regions. The multifractal properties of θ are clearly linked to <θ> in SON, while the relation is affected by more dispersion in AZ. We argue this is due to differences in the dynamic (rainfall) and static (vegetation) controls on θ in the two domains.
机译:表征土壤湿度(θ)的变异性对于从遥感器提供的粗略估计中推断高分辨率信息非常重要。在这项研究中,我们分析了2004年北美季风的土壤湿度实验(SMEX04-NAME)在两个相反的半干旱地区亚利桑那州(AZ)和索诺拉(SON)收集的高分辨率θ估计值的空间变异性和尺度不变性)。结果表明,随着平均θ条件(<θ>)变干,两个域中的空间标准偏差都变小。 8的变异系数随SON中的<θ>减小,但随着AZ中的<θ>并没有明显的趋势。我们还发现,在两个地区的所有土壤湿度场中,支持尺度范围从51.2 km到0.8 km都存在尺度不变性和多重分形性。 θ的多重分形特性与SON中的<θ>明显相关,而该关系受AZ中更多分散影响。我们认为这是由于两个域中θ的动态(降雨)和静态(植被)控制的差异造成的。

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