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Spatio-temporal variability and temporal stability of water contents distributed within soil profiles at a hillslope scale

机译:坡面尺度土壤剖面内含水量的时空变异性和时间稳定性

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摘要

Information about soil water content (SWC) within soil profiles in terms of its spatio-temporal variability and temporal stability is crucial when selecting appropriate soil water management practices. However, detailed profile distribution features for related indices are not clear on the Chinese Loess Plateau. This study aimed to investigate the depth dependency of spatio-temporal variability and temporal stability of SWC at the hillslope scale using an intensive sampling strategy for both horizontal and vertical directions as well as over time. The SWCs at 20 depths within 0-300 cm soil profiles were measured on 20 occasions between July 2008 and October 2010 at 91 locations on a hillslope on the Loess Plateau, China. Results showed that although the profile distributions of investigated statistical parameters differed greatly, they were all depth dependent. Based on both the spatio-temporal variability and the temporal stability characteristics using eight indices, the studied soil profile (0-300 cm) could be divided into three soil layers, i.e., 0-60, 60-160 and 160-300 cm, with a characteristic feature of "irregularly changing", "regularly changing", and "relatively constant", respectively. The deepest rainwater replenishment depth was approximately 160 cm. Therefore, choosing 200 cm as the sampling depth would be sufficient in similar areas. Such findings are useful for designing an optimal strategy for sampling and management of profile soil moisture. (C) 2015 Elsevier B.V. All rights reserved.
机译:在选择合适的土壤水管理方法时,关于土壤剖面内土壤水分含量(SWC)的时空变化和时间稳定性方面的信息至关重要。但是,在黄土高原地区,相关指数的详细分布特征尚不清楚。这项研究的目的是在水平和垂直方向以及时间上采用密集采样策略,研究山坡尺度上西南海岸时空变化和时间稳定性的深度依赖性。在2008年7月至2010年10月之间,在中国黄土高原的一个山坡上的91个位置,对20个深度在20-深度处的SWC进行了20次测量。结果表明,尽管所研究的统计参数的轮廓分布差异很大,但它们都与深度有关。根据时空变化和时空稳定性特征,使用八个指标,将研究的土壤剖面(0-300 cm)分为三个土壤层,即0-60、60-160和160-300 cm,具有“不规则变化”,“规则变化”和“相对恒定”的特征。最深的雨水补给深度约为160厘米。因此,在类似区域选择200 cm作为采样深度就足够了。这些发现对于设计用于采样和管理剖面土壤水分的最佳策略很有用。 (C)2015 Elsevier B.V.保留所有权利。

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