中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Spatial variability of soil hydraulic conductivity and runoff generation types in a small mountainous catchment

文献类型:期刊论文

作者Yang, Yong; Chen, Ren-sheng; Song, Yao-xuan; Han, Chun-tan; Liu, Zhang-wen; Liu, Jun-feng
刊名JOURNAL OF MOUNTAIN SCIENCE
出版日期2020
卷号17期号:11页码:2724-2741
ISSN号1672-6316
关键词Saturated hydraulic conductivity Rock fragment Land cover Runoff generation Mountain catchment
DOI10.1007/s11629-020-6258-1
文献子类Article
英文摘要As an important soil property, saturated hydraulic conductivity (Ks) controls many hydrological processes, such as runoff generation types, soil moisture storage and water movement. Because of the extremely harsh natural environmental conditions and soil containing a significant fraction of gravel fragments in high-elevation mountainous catchments, the measurement data of K-s and other soil properties are seriously lacking, which leads to poor understanding on its hydrological processes and water cycle. In this study, the vertical variation (0-150 cm) of K-s and other soil properties from 38 soil profiles were measured under five different land cover types (alpine barren, forest, marshy meadow, alpine shrub and alpine meadow) in a small catchment in Qilian Mountains, northwestern China. A typical characteristic of soil in mountainous areas is widespread presence of rock and gravel, and the results showed that the more rock and gravel in the soil, the higher K-s and bulk density and the lower the soil capillary porosity, field water capacity and total porosity. The K-s of the lower layer with rock and gravel (18.49 +/- 10.22 mm center dot min(-1)) was significantly higher than that of the upper layer with relatively fine textured soil (0.18 +/- 0.18 mm-min(-1)). The order of values of the K-s in different land cover types was alpine barren, forest, alpine shrub, marshy meadow and alpine meadow, and the values of the K-s in the alpine barren were significantly higher than those of other land covers. Most rainfall events in the research catchment had low rain intensity (<0.04 mm center dot min(-1)), and deep percolation (DP) was the dominant runoff generation type. When the rainfall intensity increased (0.11 mm center dot min(-1)), subsurface stormflow (SSF) appeared in the alpine meadow. Infiltration excess overland flow (IOF), SSF and DP existed simultaneously only when the rainfall intensity was extremely high (1.91 mm center dot min(-1)). IOF and SSF were almost never appeared in the alpine barren because of high K-s. The alpine barren was the main runoff-contributed area in the mountainous catchment because of high K-s and low water-holding capacity, and the alpine shrub and meadow showed more ecological functions such as natural water storage and replenishment pool than contribution of runoff.
电子版国际标准刊号1993-0321
语种英语
WOS记录号WOS:000588716900009
源URL[http://ir.imde.ac.cn/handle/131551/50639]  
专题Journal of Mountain Science_Journal of Mountain Science-2020_Vol17 No.11
推荐引用方式
GB/T 7714
Yang, Yong,Chen, Ren-sheng,Song, Yao-xuan,et al. Spatial variability of soil hydraulic conductivity and runoff generation types in a small mountainous catchment[J]. JOURNAL OF MOUNTAIN SCIENCE,2020,17(11):2724-2741.
APA Yang, Yong,Chen, Ren-sheng,Song, Yao-xuan,Han, Chun-tan,Liu, Zhang-wen,&Liu, Jun-feng.(2020).Spatial variability of soil hydraulic conductivity and runoff generation types in a small mountainous catchment.JOURNAL OF MOUNTAIN SCIENCE,17(11),2724-2741.
MLA Yang, Yong,et al."Spatial variability of soil hydraulic conductivity and runoff generation types in a small mountainous catchment".JOURNAL OF MOUNTAIN SCIENCE 17.11(2020):2724-2741.

入库方式: OAI收割

来源:成都山地灾害与环境研究所

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