Quantifying scour depth in a straightened gravel-bed river with ground-penetrating radar

E. Huber, B. Anders, P. Huggenberger
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引用次数: 1

Abstract

In straight gravel-bed river reaches, riverbank erosion can be induced by alternate bars and their associated scours. The maximum scour depth is therefore a key information to design reliable flood protections. However, scour depth cannot be correctly assessed by bathymetric riverbed surveys if scours are filled with sediments at low discharge. In this work, scour depths in a straightened, gravel-bed river with alternate bars is quantified with ground-penetrating radar (GPR) and the riverbed morphology is linked to the subsurface structure. A 4.5 m deep buried scour with an extent of 30 × 100 m is partially imaged by GPR at the front end of the gravel bar next to the riverbank. The non-imaged part of the scour is expected to be much larger and therefore deeper. Additional research is needed to assess how scour location and depth relate with discharge magnitude and gravel bar dynamics.
用探地雷达定量研究直砾河床冲刷深度
在直砾石河床,河岸侵蚀可由交替沙洲及其伴生冲刷引起。因此,最大冲刷深度是设计可靠的防洪措施的关键信息。但是,如果冲刷面在低流量时被沉积物填满,则测深法无法正确评估冲刷深度。在这项工作中,用探地雷达(GPR)量化了一条有交错沙洲的直砾石河床的冲刷深度,并将河床形态与地下结构联系起来。利用探地雷达在靠近河岸的沙砾坝前端对埋深4.5 m、范围为30 × 100 m的冲蚀物进行部分成像。冲刷的未成像部分预计会更大,因此更深。需要进一步的研究来评估冲刷位置和深度与流量大小和砾石坝动力学之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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