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首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >Using multiple bed load measurements: Toward the identification of bed dilation and contraction in gravel-bed rivers
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Using multiple bed load measurements: Toward the identification of bed dilation and contraction in gravel-bed rivers

机译:使用多个床荷测量:识别砾石河床的河床膨胀和收缩

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摘要

This study examines bed load transport processes in a small gravel-bed river (Beard Creek, Quebec) using three complementary methods: bed elevation changes between successive floods, bed activity surveys using tags inserted into the bed, and bed load transport rates from bed load traps. The analysis of 20 flood events capable of mobilizing bed material led to the identification of divergent results among the methods. In particular, bed elevation changes were not consistent with the bed activity surveys. In many cases, bed elevation changes were significant (1 to 2 times the D_(50)) even if the bed surface had not been activated during the flood, leading to the identification of processes of bed dilation and contraction that occurred over 10% to 40% of the bed surface. These dynamics of the river bed prevent accurate derivation of bed load transport rates from topographic changes, especially for low magnitude floods. This paper discusses the mechanisms that could explain the dilation and contraction of particles within the bed and their implications in fluvial dynamics. Bed contraction seems to be the result of the winnowing of the fine sediments under very low gravel transport. Bed dilation seems to occur on patches of the bed at the threshold of motion where various processes such as fine sediment infiltration lead to the maintenance of a larger sediment framework volume. Both processes are also influenced by flood history and the initial local bed state and in turn may have a significant impact on sediment transport and morphological changes in gravel-bed rivers.
机译:这项研究使用三种补充方法研究了一条小砾石床河(Beard Creek,魁北克)中的床荷运输过程:连续洪水之间的床高变化,使用插入到床中的标签进行的床活动调查以及床荷的床荷运输率陷阱。对20种能够调动床层物质的洪水事件的分析导致了方法之间的分歧结果的确定。特别是,床高变化与床活动调查不一致。在许多情况下,即使洪水期间河床表面未激活,河床高程变化也很明显(D_(50)的1到2倍),从而可以确定发生在10%到20%的河床膨胀和收缩过程。床表面的40%。河床的这些动力阻止了地形变化对河床负荷输运速率的精确推导,特别是对于低强度洪水而言。本文讨论了可解释床内颗粒膨胀和收缩的机制及其对河流动力学的影响。床层收缩似乎是在极低的砾石运输条件下细颗粒沉积物风选的结果。床膨胀似乎发生在运动阈值的床块上,其中各种过程(例如精细的沉积物渗透)导致维持较大的沉积物框架体积。这两个过程也都受到洪水历史和初始局部河床状态的影响,进而可能对砾石河床的沉积物迁移和形态变化产生重大影响。

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