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The behavior of specific sediment yield in different grain size fractions in the tributaries of the middle Yellow River as influenced by eolian and fluvial processes

机译:黄河中游支流不同粒级组分特定沉积物产生的行为受风尘和河流过程的影响

摘要

Based on data from 35 stations on the tributaries of the Yellow River, annual specific sediment yield (Y(s)) in eight grain size fractions has been related to basin-averaged annual sand-dust storm days (D(ss)) and annual precipitation (P(m)) to reveal the influence of eolian and fluvial processes on specific sediment yield in different grain size fractions. The results show that Y(s) in fine grain size fractions has the highest values in the areas dominated by the coupled wind-water process. From these areas to those dominated by the eolian process or to those dominated by the fluvial process, Y(s) tends to decrease. For relatively coarse grain size fractions, Y(s) has monotonic variation, i.e. with the increase in D(ss) or the decrease in P(m), Y(s) increases. This indicates that the sediment producing behavior for fine sediments is different from that for relatively coarse sediments. The results all show that Y(s) for relatively coarse sediments depends on the eolian process more than on the fluvial process, and the coarser the sediment fractions the stronger the dependence of the Y(s) on the eolian process. The Y(s)-D(ss) and Y(s)-P(m) curves for fine grain size fractions show some peaks and the fitted straight lines for Y(s)-D(ss) and Y(s)-P(m) relationships for relatively coarse grain size fractions show some breaks. Almost all these break points may be regarded as thresholds. These thresholds are all located in the areas dominated by the coupled wind-water process, indicating that these areas are sensitive for erosion and sediment production, to which more attention should be given for the purpose of erosion and sediment control. A number of regression equations were established, based which the effect of rainfall, sand-dust storms and surface material grain size on specific sediment yield can be assessed. Copyright (C) 2007 John Wiley & Sons, Ltd.
机译:根据黄河支流35个站点的数据,八个粒度级的年特定泥沙产量(Y(s))与盆地平均年度沙尘暴天数(D(ss))和年度降水(P(m))揭示了风沙和河流过程对不同粒度级分中特定沉积物产量的影响。结果表明,细粒级分中的Y(s)在风水耦合过程主导的区域中具有最高的值。从这些区域到风成过程占主导的区域或河流成因过程占主导的区域,Y趋于减小。对于相对粗大的粒度分数,Y(s)具有单调变化,即,随着D(ss)的增加或P(m)的减少,Y(s)会增加。这表明细颗粒沉积物的产沙行为与较粗颗粒沉积物的产沙行为不同。结果都表明,相对较粗的沉积物,Y(s)对风沙过程的依赖性大于对河床过程的依赖性,并且沉积物分数越粗,Y(s)对风沙过程的依赖性越强。细粒度级分的Y(s)-D(ss)和Y(s)-P(m)曲线显示一些峰值,并且Y(s)-D(ss)和Y(s)-的拟合直线相对大的晶粒度分数的P(m)关系显示一些断裂。几乎所有这些断点都可以视为阈值。这些阈值均位于由风水耦合过程主导的区域中,这表明这些区域对侵蚀和沉积物的产生很敏感,出于侵蚀和沉积物控制的目的,应给予更多关注。建立了许多回归方程,可以评估降雨,沙尘暴和表层物质粒度对特定沉积物产量的影响。版权所有(C)2007 John Wiley&Sons,Ltd.

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    Xu J. X.;

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  • 年度 2008
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  • 正文语种 英语
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