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Soil erosion and deposition characteristics of slope surfaces for two loess soils using indoor simulated rainfall experiment

机译:室内模拟降雨实验,两种黄土污水坡面土壤腐蚀与沉积特性

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摘要

Sediment deposition is an important part of the erosion process. Slope and soil type affect the spatial distribution of erosion-deposition; however, little is known about where erosion and deposition occur specifically and how they interact with influencing factors. To address this issue, four rainfall simulation experiments were conducted in a 1m x 5m plot with varying slopes (i.e., 5 degrees, 10 degrees, 15 degrees, and 20 degrees) and simulated rainfall for 1 h at a rate of 60 mm h(-1). For the two soils, the runoff rate and sediment concentration were correlated with a similar temporal pattern. Runoff increased gradually and ultimately approached a steady state, and the sediment concentration decreased gradually and ultimately approached a steady state, which indicated that the erosion processes of the two soils were controlled by the detachment-limited condition. The sediment concentration and erosion rate were positively correlated with slope. However, the onset of runoff was delayed for AS soil, which also had a relatively high sediment concentration. The distribution range and area of deposition for the two soils were negatively correlated with the slope gradient, and the main deposition area occurred at the bottom of the plots. In contrast, the SD soil was more susceptible to deposition, and the deposition thickness was mainly concentrated within a 0-4 mm depth; this concentration was not observed for AS soil because of its high erosion intensity. Overall, this similarity also existed in the spatial variations of silt and fine sand contents in the soil surface. The silt and fine sand-sized particles were the primary eroded particle sizes; however, selective mechanisms of these two particle sizes were obviously different in the two soils. The results indicated that the erosion-deposition characteristics and the main eroded materials differed with varying erosion intensities and soil types. These findings are essential for a more comprehensive understanding of soil erosion mechanisms under conditions without rill formation.
机译:沉积物沉积是侵蚀过程的重要组成部分。坡和土壤类型影响腐蚀沉积的空间分布;然而,关于侵蚀和沉积的特点以及它们如何与影响因素相互作用,很少。为了解决这个问题,在1M x 5M曲线图中进行了四个降雨模拟实验,其不同的斜坡(即5度,10度,15度和20度),并以60mm H的速率模拟降雨量1小时( -1)。对于两种土壤,径流率和沉积物浓度与类似的时间模式相关。径流逐渐增加并最终接近稳定状态,并且沉积物浓度逐渐降低并最终接近稳定状态,这表明两种土壤的腐蚀过程由分离限制控制。沉积物浓度和腐蚀速率与斜率呈正相关。然而,径流发作被延迟为土壤,这也具有相对高的沉积物浓度。两种土壤的分布范围和沉积区域与斜坡梯度呈负相关,并且主沉积区域发生在图的底部。相反,Sd土壤更容易沉积,并且沉积厚度主要浓缩在0-4mm深度内;由于其高侵蚀强度,未观察到土壤的这种浓度。总的来说,这种相似性也存在于土壤表面淤泥和细砂内容物的空间变化中。淤泥和细砂尺寸颗粒是初级侵蚀的颗粒尺寸;然而,两种土壤中,这两个粒度的选择性机制明显不同。结果表明,侵蚀沉积特性和主要侵蚀材料不同于不同的侵蚀强度和土壤类型。这些发现对于更全面地了解不含菌落形成的条件下的土壤侵蚀机制必不可少。

著录项

  • 来源
    《Soil & Tillage Research》 |2020年第1期|共12页
  • 作者单位

    Capital Normal Univ Internationalizat Demonstrat Coll Geospatial Info Base State Lab Urban Environm Proc &

    Digital Mode Elementary Educ Coll Resources Environm &

    GIS Key Beijing 100048 Peoples R China;

    Capital Normal Univ Internationalizat Demonstrat Coll Geospatial Info Base State Lab Urban Environm Proc &

    Digital Mode Elementary Educ Coll Resources Environm &

    GIS Key Beijing 100048 Peoples R China;

    Chinese Acad Sc Coll Resources &

    Environm Univ Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Water C Beijing 100101 Peoples R China;

    Chinese Acad Sc Coll Resources &

    Environm Univ Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Water C Beijing 100101 Peoples R China;

    Capital Normal Univ Internationalizat Demonstrat Coll Geospatial Info Base State Lab Urban Environm Proc &

    Digital Mode Elementary Educ Coll Resources Environm &

    GIS Key Beijing 100048 Peoples R China;

    Capital Normal Univ Internationalizat Demonstrat Coll Geospatial Info Base State Lab Urban Environm Proc &

    Digital Mode Elementary Educ Coll Resources Environm &

    GIS Key Beijing 100048 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业基础科学;
  • 关键词

    Erosion; Deposition; Terrestrial laser scanning; Roughness; Sediment particles;

    机译:侵蚀;沉积;陆地激光扫描;粗糙度;沉积物粒子;

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