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首页> 外文期刊>Hydrology and Earth System Sciences >A new perspective on the spatio-temporal variability of soil moisture: Temporal dynamics versus time-invariant contributions
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A new perspective on the spatio-temporal variability of soil moisture: Temporal dynamics versus time-invariant contributions

机译:土壤水分时空变化的新观点:时间动态与时不变的贡献

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摘要

Knowledge about the spatio-temporal variability of soil moisture is essential to understand and predict processes in climate science and hydrology. A significant body of literature exists on the characterization of the spatial variability and the rank stability (also called temporal stability) of absolute soil moisture. Yet previous studies were generally based on short-term measurement campaigns and did not distinguish the respective contributions of time-varying and time-invariant components to these quantities. In this study, we investigate this issue using measurements from 14 grassland sites of the SwissSMEX soil moisture network (spatial extent of approx. 150 × 210 km) over the time period May 2010 to July 2011. We thereby decompose the spatial variance of absolute soil moisture over time in contributions from the spatial variance of the mean soil moisture at all sites (which is time-invariant), and components that vary over time and are related to soil moisture dynamics. These include the spatial variance of the temporal soil moisture anomalies at all sites and the covariance between the site anomalies to the spatial mean at a given time step and those for the temporal mean values. The analysis demonstrates that the time-invariant term contributes 50-160% (on average 94%) of the spatial soil moisture variance at any point in time, while the covariance term generally contributes negatively to the spatial variance. On the other hand, the spatial variance of the temporal anomalies, which is overall most relevant for climate and hydrological applications because it is related to soil moisture dynamics, is relatively limited and constitutes at most 2-30% (on average 9%) of the total variance. Nonetheless, this term is not negligible compared to the temporal anomalies of the spatial mean. These results suggest that a large fraction of the spatial variability of soil moisture assessed from short-term campaign may be time-invariant if other regions present a similar behavior. Moreover, we find that the rank (or temporal) stability concept, when applied to absolute soil moisture at the sites, mostly characterizes the time-invariant patterns. Indeed, sites that best represent the mean soil moisture dynamics of the network are not the same as those that best reflect mean soil moisture at any point in time. Overall, this study shows that conclusions derived from the analysis of the spatio-temporal variability of absolute soil moisture need not generally apply to temporal soil moisture anomalies, and hence to soil moisture dynamics.
机译:了解土壤湿度的时空变化对于了解和预测气候科学和水文学过程至关重要。关于绝对土壤湿度的空间变异性和秩稳定性(也称为时间稳定性)的表征,存在大量的文献。然而,先前的研究通常基于短期测量活动,并且没有区分时变和时不变分量对这些数量的各自贡献。在本研究中,我们使用2010年5月至2011年7月期间SwissSMEX土壤水分网络的14个草地站点(空间范围约150×210 km)的测量值调查了此问题。从而分解了绝对土壤的空间变化随时间变化的水分,这是由所有地点的平均土壤水分的空间变化(随时间变化)以及随时间变化并与土壤水分动态相关的成分造成的。这些包括在所有地点的时间土壤湿度异常的空间变化,以及在给定的时间步长处的空间异常与空间平均值之间的协方差与时间平均值之间的协方差。分析表明,时不变项在任何时间点都贡献了空间土壤水分变化的50-160%(平均94%),而协方差项通常对空间变化有负面影响。另一方面,由于时间异常的空间变化与土壤水分动态有关,因此总体上与气候和水文应用最相关,而时间异常的空间变化相对有限,最多占时间的2-30%(平均9%)总方差。但是,与空间均值的时间异常相比,该术语不可忽略。这些结果表明,如果其他地区表现出相似的行为,则从短期运动评估​​的土壤水分空间变异的很大一部分可能是时不变的。此外,我们发现,等级(或时间)稳定性概念在应用于站点的绝对土壤湿度时,主要代表了时不变模式。实际上,最能代表网络平均土壤湿度动态的站点与能最佳反映任何时间点平均土壤湿度的站点并不相同。总体而言,这项研究表明,从绝对土壤水分的时空变化分析得出的结论通常不需要适用于时间土壤水分异常,因此不适用于土壤水分动力学。

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