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Identifying sediment sources from the inter-gully area and gully area in a small watershed in the Loess Hilly Region of China

机译:黄土丘陵区小流域沟壑区和沟壑区的泥沙源识别

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摘要

Understanding the sediment source is very significant for erosion control in small watersheds. On the Loess Plateau of China, over 110 thousands of check dams were constructed in the past 60 years, which played an important role in controlling soil loss and also kept much information of erosion and sediment yield in the past. The objective of this investigation is to identify the sediment source by the Cs-137 tracing method in a small watershed in the Loess Hilly Region of China. Fifty-five sampling sites were selected from the watershed (44 from the inter-gully area, 7 from the gully sides and 4 from the reference sites), and a total of 114 soil samples were collected from three sediment profile cores at the Sidizui watershed check dam constructed in 1959. Based on the erosion rate from the inter-gully area by the Cs-137 models, and the total erosion amount deposited in the check dam since 1963, the relative contributions of sediment from the inter-gully area and gully area were estimated during 1963-2013. By comparing the difference of Cs-137 activities of surface soils from the check dam (deposited in the 2011-2013 flood events), the inter-gully and gully areas, the relative contributions of sediment derived from the two source areas to the flood sediment during recent years (2011-2013) were estimated by a simple mixing model. Results showed that the erosion rate from the inter-gully area was about 3054 t/km(2) a during 1963-2013, and the relative contributions of sediment from the inter-gully area and gully area were estimated to be 27 and 73%, respectively. The sediment from the inter-gully area was about 20% of the total sediment yield amount to the 2011-2013 floods, and from the gully area it was about 80%. The relative contribution of sediment from the inter-gully or gully area was not a fixed value in the watershed. Both of the inter-gully erosion and gully erosion should be simultaneously controlled, and more erosion control measures on the gully area should be taken in the subsequent watershed management in order to reduce the erosion amount in this region.
机译:了解沉积物来源对于小流域的侵蚀控制非常重要。在过去的60年中,中国黄土高原上建造了11万多座止水坝,在控制土壤流失方面发挥了重要作用,并且在过去还保留了许多侵蚀和沉积物产量信息。这项调查的目的是通过Cs-137示踪法确定中国黄土丘陵区一个小流域的沉积物来源。从流域中选择了55个采样点(沟间区域为44个,沟壑侧为7个,参考点为4个),并从西迪祖河流域的三个沉积物剖面核心收集了114个土壤样本1959年修建的大坝。基于Cs-137模型对沟间区域的侵蚀速率,以及1963年以来在大坝中沉积的总侵蚀量,沟间区域和沟渠的沉积物相对贡献面积估计在1963-2013年期间。通过比较检查坝(沉积在2011-2013年洪水事件中),沟壑间和沟壑区的表层土壤Cs-137活性的差异,两个源区产生的沉积物对洪水沉积物的相对贡献通过简单的混合模型估算了最近几年(2011-2013年)的收入。结果表明,1963-2013年间沟壑区的侵蚀速率约为3054 t / km(2)a,沟壑区和沟壑区的沉积物相对贡献估计分别为27%和73% , 分别。到2011-2013年洪水,来自沟间地区的沉积物约占总沉积物产量的20%,而来自沟壑地区的沉积物约占总产量的80%。来自流域间或流域区域的沉积物的相对贡献在流域中不是固定值。沟间侵蚀和沟渠侵蚀应同时控制,在随后的流域管理中应在沟壑区采取更多的侵蚀控制措施,以减少该地区的侵蚀量。

著录项

  • 来源
    《Environmental earth sciences》 |2017年第22期|776.1-776.11|共11页
  • 作者单位

    Minist Water Resources, Yellow River Inst Hydraul Res, Key Lab Soil & Water Loss Proc & Control Loess Pl, Zhengzhou 450003, Henan, Peoples R China;

    Minist Water Resources, Yellow River Inst Hydraul Res, Key Lab Soil & Water Loss Proc & Control Loess Pl, Zhengzhou 450003, Henan, Peoples R China;

    Yellow River Conservancy Commiss, Suide Expt Stn Soil & Water Conservat, Suide 718000, Shaanxi, Peoples R China;

    Minist Water Resources, Yellow River Inst Hydraul Res, Key Lab Soil & Water Loss Proc & Control Loess Pl, Zhengzhou 450003, Henan, Peoples R China;

    Minist Water Resources, Yellow River Inst Hydraul Res, Key Lab Soil & Water Loss Proc & Control Loess Pl, Zhengzhou 450003, Henan, Peoples R China;

    Minist Water Resources, Yellow River Inst Hydraul Res, Key Lab Soil & Water Loss Proc & Control Loess Pl, Zhengzhou 450003, Henan, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sediment source; Inter-gully area; Gully area; Check dam; Cs-137; Loess Hilly Region;

    机译:泥沙源;沟壑区;沟壑区;检查坝;Cs-137;黄土丘陵区;

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