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首页> 外文期刊>Journal of soil & sediments >Changes in particle size distribution of suspended sediment affected by gravity erosion: a field study on steep loess slopes
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Changes in particle size distribution of suspended sediment affected by gravity erosion: a field study on steep loess slopes

机译:受重力侵蚀影响的悬浮泥沙粒径分布变化:黄土陡坡的田间研究

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摘要

Purpose Gravity erosion (mass movement) generates an enormous volume of sediments on steep slopes throughout the world, yet its effect on the particle size distribution of suspended sediments (PSDSS) remains poorly understood. The objective of this study is to quantify the effects of gravity erosion on soil loss, especially the changes of particle size distribution of the suspended sediment. Materials and methods In this study, experiments were conducted in a field mobile laboratory in which mass movements were triggered on steep slopes under simulated rainfall. During the experiments, water-sediment samples were collected in polyethylene bottles directly from the gully and channel flows before and during the mass movements. The volumes of each mass failure during and 20 min after the rainfalls were measured by a topography meter. The particle fractions of the samples were analyzed by combining the sieving and photoelectric sedimentometer techniques. A suite of indexes such as median sediment size (d(50)), sediment heterogeneity (H), fractal dimension (D), and enrichment/dilution ratio (R-ed) were then used to evaluate the effect of mass movement on PSDSS. Results and discussion (1) Gravity erosion had a significant influence on PSDSS. After the mass movements occurred, the proportion of sand-sized particles was decreased from 71 to 51%, whereas the proportions of clay and silt were increased from 1 to 7% and 28 to 42%, respectively. (2) The d(50), H, and D were significantly correlated with slope failures. The d(50) was decreased from 0.084 to 0.051 mm, whereas the H and D were increased from 5.6 to 26.8 and from 2.60 to 2.78, respectively. This implies that mass movements make the PSDSS more nonuniform and irregular. (3) The suspended sediment tended to be enriched in the silt and clay fractions and diluted in the sand fractions after mass movements. R(ed)s for clay, slit, and sand fractions were 13.9, 1.4, and 0.7 respectively. Conclusions The changes of PSDSS after mass movements reflected a combined complex effect of soil sources, erosion types, selective detachment, and deposition processes. Mass movements led to a drastic increase of sediment concentration and the enrichment of fine particles, which developed into hyperconcentrated flows.
机译:目的重力侵蚀(质量运动)在世界各地的陡坡上产生了大量的沉积物,但对悬浮沉积物(PSDSS)粒度分布的影响仍知之甚少。这项研究的目的是量化重力侵蚀对土壤流失的影响,尤其是悬浮沉积物粒径分布的变化。材料和方法在这项研究中,实验是在野外流动实验室中进行的,在该实验室中,模拟降雨在陡坡上触发了物质运动。在实验过程中,在质量运动之前和运动期间,直接从沟壑和通道流中将水沉积物样品收集在聚乙烯瓶中。用地形仪测量降雨期间和降雨后20分钟内每次质量破坏的量。通过筛分和光电沉降仪技术分析样品的颗粒部分。然后使用一组指标,例如中值沉积物大小(d(50)),沉积物异质性(H),分形维数(D)和富集/稀释比(R-ed)来评估质量运动对PSDSS的影响。结果与讨论(1)重力侵蚀对PSDSS有重要影响。发生质量运动后,沙粒的比例从71%降低到51%,而粘土和粉砂的比例分别从1%增长到7%和28%到42%。 (2)d(50),H和D与边坡破坏显着相关。 d(50)从0.084毫米减小到0.051毫米,而H和D分别从5.6增大到26.8和从2.60增大到2.78。这意味着质量运动使PSDSS变得更加不均匀和不规则。 (3)泥沙运动后,悬浮的泥沙往往富集在淤泥和粘土中,而在沙子中则被稀释。粘土,切缝和沙子级分的R(ed)分别为13.9、1.4和0.7。结论大规模运动后PSDSS的变化反映了土壤源,侵蚀类型,选择性脱离和沉积过程的综合复杂影响。物质运动导致沉积物浓度急剧增加,细颗粒的富集逐渐发展为高浓度流。

著录项

  • 来源
    《Journal of soil & sediments 》 |2020年第3期| 1730-1741| 共12页
  • 作者单位

    Northwest Agr & Forestry Univ Inst Soil & Water Conservat State Key Lab Soil Eros & Dryland Farming Loess P Yangling 712100 Shaanxi Peoples R China|Dalian Univ Technol Sch Hydraul Engn Dalian 116024 Peoples R China;

    Dalian Univ Technol Sch Hydraul Engn Dalian 116024 Peoples R China;

    Univ Minnesota Dept Geog Urban Environm & Sustainabil Studies Duluth MN 55812 USA;

    Tsinghua Univ State Key Lab Hydrosci & Engn Beijing 100084 Peoples R China;

    Northwest Agr & Forestry Univ Inst Soil & Water Conservat State Key Lab Soil Eros & Dryland Farming Loess P Yangling 712100 Shaanxi Peoples R China;

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

    Gravity erosion; Landforms; Particle size distribution; Sediment; Soils;

    机译:重力侵蚀;地貌;粒度分布;沉淀;土壤;

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