Effects of vegetation height and relative submergence for rigid submerged vegetation on flow structure in open channel

IF 0.7 4区 地球科学 Q4 GEOSCIENCES, MULTIDISCIPLINARY Earth Sciences Research Journal Pub Date : 2022-05-11 DOI:10.15446/esrj.v26n1.76187
Zhongyu Wang, H. Zhang, Xing He, Q. Jiang, W. Xu, W. Tian
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引用次数: 2

Abstract

In this research, the vegetation height and a concept of relative submergence are adapted to experimentally investigate the effects of rigid submerged vegetation on flow structure. The results reveal that the relative submergence presents decreasing trend along the submerged vegetation section and the average relative submergence follows a power functional decreasing relationship regarding to the increase of vegetation height. After the exit of vegetation block, the water depths for the vegetated cases resume to the level and trend of the case without vegetation. The differences between the maximum and minimum water depths for the submerged cases follow a linear relationship with vegetation height and a negative power functional relationship with the average relative submergence, with which, the raised water depths due to rigid submerged vegetation can be predicted under similar hydraulic and vegetation conditions to the present research. Due to the retardance of vegetation block, the differences between the maximum and minimum flow velocities increase with the vegetation height as the maximum values change slightly and the minimum values decrease continuously. The findings of the research may improve the comprehensive understandings of open channel hydraulic behaviors affected by rigid submerged vegetation and give some guidance to the river ecological restorations.
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植被高度和刚性淹没植被相对淹没度对明渠水流结构的影响
在本研究中,采用植被高度和相对淹没度的概念来实验研究刚性淹没植被对水流结构的影响。结果表明,相对淹没度沿淹没植被剖面呈下降趋势,平均相对淹没度随植被高度的增加呈幂函数递减关系。植被块退出后,有植被情况的水深恢复到无植被情况的水平和趋势。淹没情况下的最大和最小水深之间的差异与植被高度呈线性关系,与平均相对淹没度呈负幂函数关系,据此,在与本研究相似的水力和植被条件下,可以预测由于刚性淹没植被而引起的上升水深。由于植被阻塞的滞后性,最大流速和最小流速之间的差异随着植被高度的增加而增加,因为最大值略有变化,最小值持续减小。研究结果可提高对刚性淹没植被影响下明渠水力学行为的综合认识,对河流生态修复具有一定的指导意义。
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来源期刊
Earth Sciences Research Journal
Earth Sciences Research Journal 地学-地球科学综合
CiteScore
1.50
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: ESRJ publishes the results from technical and scientific research on various disciplines of Earth Sciences and its interactions with several engineering applications. Works will only be considered if not previously published anywhere else. Manuscripts must contain information derived from scientific research projects or technical developments. The ideas expressed by publishing in ESRJ are the sole responsibility of the authors. We gladly consider manuscripts in the following subject areas: -Geophysics: Seismology, Seismic Prospecting, Gravimetric, Magnetic and Electrical methods. -Geology: Volcanology, Tectonics, Neotectonics, Geomorphology, Geochemistry, Geothermal Energy, ---Glaciology, Ore Geology, Environmental Geology, Geological Hazards. -Geodesy: Geodynamics, GPS measurements applied to geological and geophysical problems. -Basic Sciences and Computer Science applied to Geology and Geophysics. -Meteorology and Atmospheric Sciences. -Oceanography. -Planetary Sciences. -Engineering: Earthquake Engineering and Seismology Engineering, Geological Engineering, Geotechnics.
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