柔性网对退化河道河床演变的影响

IF 1.1 4区 工程技术 Q3 ENGINEERING, CIVIL
Runxiang Li, Jing Zhang, Zhixue Guo
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引用次数: 0

摘要

河床的短期急剧退化对河流及其附近基础设施的运行构成了巨大威胁。本文开展了直槽实验,测量了不同实验条件下的流速、水位、河床高程和河床形态,并结合 SfM(Structure-from-Motion)方法生成了河床 DEM 和正射影像图,研究了柔性网对退化河道河床演变的影响。研究发现,在柔性网的作用下,河床的退化模式由平行退化转变为以侵蚀基准面为支点的旋转退化,且随着柔性网纵向长度的增加,河床的保护效率也随之提高。柔性网能有效限制网下泥沙的运动,而泥沙淤积越细,侵蚀基准面标高越高。可以发现,下游冲刷孔的位置和形态特征受侵蚀基准面变形的影响很大。由于水流对下游河床的冲刷不均匀,冲刷孔呈现不对称分布。研究成果对退化河道的治理具有一定的指导作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impacts of the flexible net on riverbed evolution in degrading channels
The short-term dramatic degradation of the riverbed poses a great threat to the river and the functioning of infrastructure in its vicinity. In this paper, a straight flume experiment was carried out to measure the velocity, water level, riverbed elevation, and riverbed morphology under different experiment conditions, combined with the SfM (Structure-from-Motion) method to generate the riverbed DEMs and orthomosaic, and the impact of flexible net on riverbed evolution of degrading channel was studied. This study reveals that under the action of the flexible net, the degradation mode of the riverbed changes from parallel degradation to rotational degradation with erosion datum as the fulcrum, and with an increase in the longitudinal length of the flexible net, the riverbed's protection efficiency grows. The flexible net can effectively limit the movement of sediment under the net, and the finer sediment silting raises erosion datum elevation. It is noticed that the location and morphological characteristics of the downstream scour holes are greatly affected by the deformation of the erosion datum. The scour hole shows an asymmetric distribution because of the uneven scouring of the flow to the downstream riverbed. The research results have a certain guiding role in the management of degrading channels.
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来源期刊
CiteScore
2.10
自引率
0.00%
发文量
28
审稿时长
6-12 weeks
期刊介绍: Water Management publishes papers on all aspects of water treatment, water supply, river, wetland and catchment management, inland waterways and urban regeneration. Topics covered: applied fluid dynamics and water (including supply, treatment and sewerage) and river engineering; together with the increasingly important fields of wetland and catchment management, groundwater and contaminated land, waterfront development and urban regeneration. The scope also covers hydroinformatics tools, risk and uncertainty methods, as well as environmental, social and economic issues relating to sustainable development.
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