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Spatial variability of soil hydraulic properties on a steep slope in the loess plateau of China

机译:黄土高原陡坡土壤水力特性的空间变异性

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The understanding of the structure of the spatial variability of soil surface hydraulic properties on steep slopes is important for modeling infiltration and runoff processes. The objective of this study was to investigate the spatial variability of these properties on a steep slope of the Loess Plateau in northwest China. A 9600 m2 area was systematically sampled in a grid of 106 points spaced 10 m x 10 m. Hydraulic properties were determined with a disc infiltrometer under multiple pressure heads (-15, -9, -6, -3, 0 cm) at each sample point. Classical and geo-statistical methods were used for data analysis. The results indicated that the variation of Gardner's a and hydraulic conductivities at all applied pressure heads was moderate and the heterogeneity for hydraulic conductivities increased as the applied pressure head increased. Along the slope, hydraulic conductivities generally decreased downwards, while the Gardner's a fluctuated slightly. The Gardner's a of the shaded aspect of the slope was greater than that of the sunny aspect. The hydraulic conductivities of the shaded aspect were greater at higher pressure heads as compared to the sunny aspect, but lower than those of the sunny aspect at lower pressure heads. Correlation analysis showed a negative correlation between hydraulic conductivity and soil organic matter and clay (
机译:理解陡坡上土壤表面水力特性的空间变异性结构对于模拟入渗和径流过程非常重要。本研究的目的是调查中国西北黄土高原陡坡上这些性质的空间变异性。在10个x 10 m的106个点的网格中系统地采样了9600 m2的区域。在每个采样点的多个压力头(-15,-9,-6,-3、0 cm)下,使用圆盘式渗透仪测定水力学性能。古典和地统计学方法用于数据分析。结果表明,在所有施加的压头上,Gardner a和水力传导率的变化是中等的,并且随着施加的压头的增加,水力传导率的非均质性也增加了。沿着斜坡,水力传导率通常会下降,而Gardner的水力传导率则略有波动。斜坡阴影部分的Gardner大于晴天部分。与晴天相比,阴影部分的水力传导率在高压头处更高,但在低压头时则低于晴天。相关分析表明,水力传导率与土壤有机质和粘土之间呈负相关(

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