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Spatial scale dependence of sediment dynamics in a gullied rolling loess region on the Loess Plateau in China

机译:黄土高原黄土丘陵沟壑区底泥动力学空间尺度相关性

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摘要

Sediment dynamics is still imperfectly understood, especially at spatial scale in the highly erodible region of the Loess Plateau, and few studies have been heretofore conducted. Using 5-year continuous water and sediment records, three plots and three basins in the gullied rolling loess region were selected and sediment dynamics at spatial scale was studied. Results showed that the floods, where the peak discharge (Qp) did not come earlier than the sediment peak, were predominant in slope zones, occupying >90 and >70% of the total for the Mao slope and for the Entire slope, respectively. However, in basins, most of the sediment peaks (Cp) lagged behind Qp, implying that slope zone was the main origin of sediment. More than 50% of the events presented clockwise hysteresis loops in the Mao slope area, while almost all the events had anticlockwise hysteresis loops in basins. This can be attributed to less occurring frequency of hyperconcentrated flow, as well as its instability in slope zones, compared to those in the basins. Within these contexts, gravitational erosion made the highest sediment concentration (Q in Tuanshangou basin and median developing status of C-discharge (C-Q) relationships in the Entire slope area. This study provides insights into the protection of slope surface and disruption of the development of hyperconcentrated flow to reduce soil loss.
机译:泥沙动力学仍然不完善,特别是在黄土高原高度易蚀区域的空间尺度上,迄今进行的研究很少。利用5年连续的水沙记录,在黄土丘陵沟壑区选择了3个样地和3个盆地,研究了空间尺度上的沉积动力学。结果表明,洪水的峰值流量(Qp)不早于泥沙峰,主要发生在斜坡区,毛坡和整个坡度分别占洪水总量的> 90%和> 70%。但是,在盆地中,大多数沉积物峰(Cp)都落后于Qp,这表明斜坡带是沉积物的主要来源。毛斜坡地区超过50%的事件呈顺时针方向的磁滞回线,而盆地中几乎所有事件都具有逆时针的磁滞回线。与盆地相比,这可以归因于高浓度流的发生频率较低,以及其在斜坡带的不稳定性。在这种情况下,重力侵蚀使团聚区的沉积物浓度最高(Q值最大),整个斜坡区的C流量(CQ)关系处于中位发展状态。本研究为保护坡面和破坏开发提供了见识。高浓度流可减少土壤流失。

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  • 来源
    《Environmental Geology》 |2011年第3期|p.693-705|共13页
  • 作者单位

    Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences,All Datun Road, Anwai, Chaoyang District,Beijing 100101, China;

    College of Water Conservancy and Civil Engineering,China Agricultural University, Beijing 100083, China;

    Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences,All Datun Road, Anwai, Chaoyang District,Beijing 100101, China;

    Guangdong Institute of Eco-environment and Soil Science,Guangdong 510650, China;

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

    spatial scale; sediment dynamics; sediment peak; peak discharge; hysteresis loop; hyperconcentrated flow;

    机译:空间尺度;泥沙动力学;泥沙峰;峰值放电;磁滞回线;超浓缩流;

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