Sediment delivery across multiple spatio-temporal scales in an agriculture watershed of the Chinese Loess Plateau

被引:0
作者
Ming-guo Zheng
Run-kui Li
Ji-jun He
Ming Cui
机构
[1] Chinese Academic of Sciences,Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences & Natural Resources Research
[2] University of Chinese Academy of Sciences,College of Resources and Environment
[3] Capital Normal University,Base of the State Laboratory of Urban Environmental Processes and Digital Modeling
[4] Chinese Academy of Forestry,Institute of Desertification Studies
来源
Journal of Mountain Science | 2015年 / 12卷
关键词
Sediment delivery ratio; Spatial scale; Soil erosion; Sediment yield; Loess Plateau;
D O I
暂无
中图分类号
学科分类号
摘要
There is a consensus that sediment delivery ratio in the Chinese Loess Plateau is close to 1 at the inter-annual timescale. However, little information is available about the sediment delivery at finer timescales. We evaluated the sediment delivery from plots to watersheds at the event or intra-annual, annual, and inter-annual timescales within the Wudinghe river basin, a 30,261 km2 basin in the Loess Plateau. We calculated the ratio of sediment output to sediment input and presented the temporal change of the channel morphology to determine whether sediment deposition occurs. Although a single flood event frequently has a sediment yield exceeding 10,000 t km−2, sediment deposition rarely occurs except during some small runoff events (sediment yield < 5000 t km−2) or dry years (sediment yield < 10,000 t km−2) when moving from slopes up to the main channels of the Wudinghe River. This observation suggests a sediment delivery ratio close to 1 even at the event or intra-annual and the annual timescales, but not necessarily at the interannual timescale. Such a high sediment delivery ratio can be related to hyper-concentrated flows, which have very strong sediment transport capacity even at low flow strength. Because hyper-concentrated flows are well-developed in the whole Loess Plateau, a sediment delivery ratio close to 1 below the interannual timescale possibly remains true for other rivers in the Loess Plateau.
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页码:1241 / 1253
页数:12
相关论文
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