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Geostatistical analysis of soil moisture variability on Da Nangou catchment of the loess plateau, China

机译:黄土高原大南沟流域土壤水分变异的地统计学分析

摘要

To achieve a better understanding of environmental issues related to soil erosion, flooding, and solute transport, it is necessary to understand the variability of soil moisture under different climatic and geological conditions and at different spatio-temporal scales. Moisture patterns based on five depths (0-5, 15-20, 25-30, 45-50, and 70-75 cm) were determined in the Da Nangou catchment of the loess plateau of China from May to September 1999. Spatial structure of profile-averaged and layer-averaged soil moisture was analysed using semivariograms. The results indicated that soil moisture exhibits changing spatial dependence with time and depth. For profile-averaged soil moisture, high sills [4.6-14 %(v/v)(2)] and high ranges (135-160 m) were observed during dry conditions. The sills [2.6-6.3 (%v/v)(2)] and ranges (140 m) were small during wet conditions. However, soil moisture was described by linear semivariograms without a sill following a significant rain event. For layer-averaged soil moisture, the sills increased with depth, but not for the ranges. The nuggets tended to increase with higher sills. This analysis provides insights into the variability of soil moisture on a large scale and interpolation strategies for extrapolating point measurements across the catchment.
机译:为了更好地理解与土壤侵蚀,洪水和溶质运移相关的环境问题,有必要了解不同气候和地质条件下以及时空尺度下土壤水分的变化。 1999年5月至9月,在中国黄土高原大南沟流域确定了基于5个深度(0-5、15-20、25-30、45-50和70-75厘米)的湿度模式。空间结构使用半变异函数分析了剖面平均和层平均土壤水分的分布。结果表明,土壤水分表现出随时间和深度变化的空间依赖性。对于剖面平均土壤湿度,在干燥条件下观察到高基石[4.6-14%(v / v)(2)]和高范围(135-160 m)。在潮湿条件下,门槛[2.6-6.3(%v / v)(2)]和范围(140 m)小。但是,土壤湿度是通过线性半变异函数描述的,在发生重大降雨之后没有任何基石。对于层平均土壤湿度,门槛随着深度增加而增加,但不随深度增加。更高的门槛,金块趋于增加。该分析为深入了解土壤水分的变化提供了见解,并提供了插值策略,用于在流域内外推点测量。

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