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A combined flume-imaging technique for measuring fluvial erosion of cohesive stream bank soils

机译:一种组合的水槽成像技术,用于测量钳生溪岸土壤的河流侵蚀

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Less attention has been given to fluvial erosion even though, in many instances, it has been shown to affect stream bank stability by being a precursor to mass failure. As a result, the technique for measuring fluvial erosion parameters, most importantly the critical erosional strength, ι_c, is under-developed. The main objective of this study was to develop a laboratory technique using a state-of-the-art closed-conduit flume and imaging instrument for determining the ι_c, of cohesive bank soils. A total of 24 (twenty four) bank soil samples were extracted from the crest, midbank, and toe of a stream bank and tested for their c'and ι_c. using a standardized direct shear device and the combined flume-imaging technique, respectively. It was found that the methods can accurately determine c' and ι_c parameters. The c' values were 2 to 4 orders of magnitude larger than the ι_c values. In addition, c' and ι_c values had increasing trend through the downslope of the stream bank highlights the need of acquiring both mechanical and erosional strengths for the three layers along a bank profile (namely crest, midbank, and toe) to improve the commonly adopted protocols that typically assume homogeneous bank soils.
机译:即使在许多情况下,已经表现出氟侵蚀的注意力较少,已经显示出通过对大规模失败的前体来影响流银行稳定性。结果,用于测量河流侵蚀参数的技术,最重要的是发达的临界侵蚀强度ι_c。本研究的主要目的是利用最先进的闭合导管的水槽和成像仪器制定实验室技术,用于确定凝聚力的银行土壤的ι_c。总共24个(二十四个)银行土壤样品从溪流,中间和脚趾中提取,并对他们的C'Andι_c进行测试。使用标准化的直接剪切装置和组合的水槽成像技术。发现该方法可以准确地确定C'和1C参数。 C'值为2至4个级别大于ι_c值。此外,C'和1C值通过流银行的划线率升高了趋势,突出了沿着银行轮廓(即Crest,Midbank和Toe)来获取三层的机械和侵蚀强度,以改善常用的通常承担均匀的银行土壤的协议。

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