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A Short Review on Various Techniques for Measuring Stream Bank Soil Erosion Strength

机译:溪流土壤侵蚀强度的多种测量技术简述

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Stream bank erosion manifests in two main modes, namely mass failure and fluvial erosion. Fluvial erosion is a quasi-continuous entrainment of individual soil grains or grain flocs or chunks from the bank face due to the hydrodynamic shear flow action. It occurs under water with retreat lengths in millimeter or centimeter scale. The interaction between fluvial erosion and mass failure determines the shape and retreat rate of the stream bank. It is not rare, fluvial erosion which occurs at the bank toe later triggers slumping of soil mass known as mass failure. Despite its importance, the mechanism of fluvial erosion is less understood. This is predominantly due to lack of technique for measuring two key bank soil parameters that determine fluvial erosion rate, e.g., erosion shear strength τC and erodibility coefficient M. The main purpose of this manuscript is to provide a short review on various techniques for measuring τC and M proposed and applied in previous studies. The advantages and limitations of each technique are discussed to get a glimpse on where we stand and what challenges remain to be overcome.
机译:河岸侵蚀表现为两种主要模式,即质量破坏和河流侵蚀。河流侵蚀是由于水动力剪切流作用,从河岸面开始的单个土壤颗粒或谷物絮凝物或块的准连续夹带。它在退缩长度为毫米或厘米的水下发生。河流冲刷和质量破坏之间的相互作用决定了河岸的形状和后退速度。这并不罕见,随后在河岸脚趾发生的河流侵蚀触发了土壤质量的塌陷,称为质量破坏。尽管它很重要,但对河道侵蚀的机理却鲜为人知。这主要是由于缺乏用于测量确定河流侵蚀速率的两个关键河岸土壤参数的技术,例如侵蚀剪切强度τ\ n C \ n和腐蚀系数M。此手稿的主要目的是简要介绍一下关于测量τ\ n C \ n和M提出并应用于先前的研究中。讨论了每种技术的优点和局限性,以了解我们的立场以及尚需克服的挑战。

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