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Catchment-scale variability of absolute versus temporal anomaly soil moisture: Time-invariant part not always plays the leading role

机译:绝对和时间异常土壤水分的汇水规模变化:时不变部分并不总是起主导作用

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Recently, the characterization of soil moisture spatiotemporal variability is recommended to consider temporal soil moisture anomalies because of their distinctive behaviors with absolute soil moisture and their importance in hydrological applications. Here we characterized soil moisture spatiotemporal variability in the Yuanzegou catchment (0.58 km(2)) on the Loess Plateau of China, considering both absolute soil moisture and temporal anomalies. The dataset contained soil moisture observations in the 0-80 cm between 2009 and 2011 at 78 sampling locations. The spatial variance of time-invariant temporal means was shown to be the primary contributor (61.7-76.2%) to the total variance but the magnitude of this contribution was much lower than observed in large-scale studies. The seasonal variation in contribution can be attributed into differences in soil wetness conditions; lower contribution was found at intermediate wetness for spatial variances of temporal mean and temporal anomalies. Furthermore, the upward-convex relationship between spatial variance and spatial means of absolute soil moisture was mainly characterized by the covariance of temporal mean and temporal anomalies. Time stability of absolute soil moisture and its components were analyzed by using both the "accuracy" metric mean relative difference (MRD) and the "precision" metric variance of relative difference (VRD). As MRD was considered, time stability of absolute soil moisture primarily characterized time-invariant patterns. However, as VRD was used, the time stability of absolute soil moisture characterized only a small part of time-invariant or -variant pattern. (C) 2015 Elsevier B.V. All rights reserved.
机译:最近,建议对土壤水分时空变化特征进行描述,以考虑土壤水分的时空异常,因为它们具有绝对土壤水分的独特行为及其在水文应用中的重要性。在这里,我们同时考虑了绝对土壤湿度和时间异常,对中国黄土高原元泽沟流域(0.58 km(2))的土壤水分时空变化进行了表征。该数据集包含2009年至2011年之间在78个采样点的0-80厘米土壤湿度观测值。时不变的时间均值的空间方差被证明是总方差的主要贡献者(61.7-76.2%),但这种贡献的幅度远低于大规模研究中观察到的。贡献的季节变化可归因于土壤湿度条件的差异;在中等湿度下,时间平均值和时间异常的空间变化的贡献较小。此外,空间方差与土壤绝对水分空间均值之间的向上凸关系主要表现为时间均值与时间异常的协方差。通过使用“精确度”度量平均相对差(MRD)和“精确”度量相对差(VRD)来分析绝对土壤水分及其成分的时间稳定性。考虑到MRD,绝对土壤湿度的时间稳定性主要表征时间不变模式。但是,由于使用了VRD,绝对土壤湿度的时间稳定性仅表征了时变或时变模式的一小部分。 (C)2015 Elsevier B.V.保留所有权利。

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