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DOI10.1029/2021WR031155
Study of Suspended Sediment Diffusion Coefficients in Submerged Vegetation Flow
Da Li; Zhonghua Yang; Man Guo
2022-02-18
发表期刊Water Resources Research
出版年2022
英文摘要

The traditional profile model of the sediment diffusion coefficient (urn:x-wiley:00431397:media:wrcr25846:wrcr25846-math-0001), which is parabolic along the water depth, cannot precisely predict the vertical distribution of urn:x-wiley:00431397:media:wrcr25846:wrcr25846-math-0002 in vegetated flow. Therefore, in this study, a series of flume experiments were conducted to clarify the influence of submerged vegetation on the diffusion characteristics of suspended load particles. First, the submerged canopy increases the efficiency of momentum exchange but restrains the vertical diffusion of suspended sediment, indicating that the presence of submerged plants promotes the siltation of solid particles. Second, the depth-averaged sediment diffusion coefficient (urn:x-wiley:00431397:media:wrcr25846:wrcr25846-math-0003) monotonically decreases with increasing relative water depth, while the depth-averaged momentum exchange coefficient (urn:x-wiley:00431397:media:wrcr25846:wrcr25846-math-0004) presents two opposite trends, likely owing to the dominant turbulence event changing from ejections to sweeps and the different variation tendencies of the velocity gradient and Reynolds shear stress with increasing vegetation density. Compared with the ratio (urn:x-wiley:00431397:media:wrcr25846:wrcr25846-math-0005) of urn:x-wiley:00431397:media:wrcr25846:wrcr25846-math-0006 to the momentum exchange coefficient in nonvegetated flow, urn:x-wiley:00431397:media:wrcr25846:wrcr25846-math-0007 in submerged canopy flow is significantly less than 1, which means that the solid particles diffuse less readily than liquid particles because of the stem-scale vortices generated by the vegetation. In addition, vertical profile models of urn:x-wiley:00431397:media:wrcr25846:wrcr25846-math-0008 and suspended sediment concentration were proposed and validated by experimental data. The models exhibit a high accuracy, correlation and applicability and can provide critical information to promote research on riverbed deformation and nutrient dynamics in vegetated rivers, wetlands and estuaries.

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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/346654
专题资源环境科学
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Da Li,Zhonghua Yang,Man Guo. Study of Suspended Sediment Diffusion Coefficients in Submerged Vegetation Flow[J]. Water Resources Research,2022.
APA Da Li,Zhonghua Yang,&Man Guo.(2022).Study of Suspended Sediment Diffusion Coefficients in Submerged Vegetation Flow.Water Resources Research.
MLA Da Li,et al."Study of Suspended Sediment Diffusion Coefficients in Submerged Vegetation Flow".Water Resources Research (2022).
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