柔性植被对单向流动中溶质扩散影响的实验室研究

IF 6 3区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Sha Lou, Hao Wang, Hongzhe Liu, Guihui Zhong, Larisa Dorzhievna Radnaeva, Elena Nikitina, Gangfeng Ma, Shuguang Liu
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引用次数: 0

摘要

柔性植被是河流生态系统的重要组成部分,它可以降低流速,改变湍流结构,影响溶质运移过程。与以往许多研究报道的具有刚性植被的流动相比,柔性植被的弯曲增加了流动-植被-溶质相互作用的复杂性。本文通过室内实验研究了柔性植被对溶质运移的影响,并对刚性植被流中横向和纵向扩散系数的估算方法在柔性植被流中的应用进行了研究。实验观测发现植被能显著降低流速,曼宁系数随植被密度增大而增大,随入流流量减小而减小。在所有情况下,溶质浓度垂直峰沿流动方向向底床移动,垂直峰浓度从注入点开始呈纵向减小趋势。横向扩散系数Dy随植被密度增大而增大,纵向扩散系数DL则相反。Dy和DL随流入流量的增加而增加。为了估算柔性植被流中的Dy和DL,在刚性植被流的方法中加入了考虑植被弯曲的有效淹没植被高度(Lou等)。环境科学,2020(2)。修正后的方法能较好地预测实验中的扩散系数,相对误差在5% ~ 12%之间。本文提出的方法可用于利用有效淹没植被高度估算流经刚性和柔性植被的横向和纵向扩散系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Laboratory study of the effects of flexible vegetation on solute diffusion in unidirectional flow

Laboratory study of the effects of flexible vegetation on solute diffusion in unidirectional flow

Flexible vegetation is an important part of the riverine ecosystem, which can reduce flow velocity, change turbulence structure, and affect the processes of solute transport. Compared with the flow with rigid vegetation, which has been reported in many previous studies, bending of flexible vegetation increases the complexity of the flow–vegetation–solute interactions. In this study, laboratory experiments are carried out to investigate the influence of flexible vegetation on solute transport, and methods for estimating the lateral and longitudinal diffusion coefficients in the rigid vegetated flow are examined for their applications to the flow with flexible vegetation.

The experimental observations find that vegetation can significantly reduce flow velocity, and the Manning coefficient increases with increasing vegetation density and decreases with inflow discharge. Under all the cases, the vertical peak of the solute concentration moves towards the bottom bed along the flow, and the values of vertical peak concentration longitudinally decreases from the injection point. The lateral diffusion coefficients Dy increase with vegetation density, while the longitudinal diffusion coefficients DL are opposite. Both Dy and DL increase with the inflow discharge. To estimate the Dy and DL in the flow with flexible vegetation, an effective submerged vegetation height considering vegetation bending is incorporated in the methods proposed for flow with rigid vegetation (Lou et al. Environ Sci Eur 32:15, 2020). The modified approach can well predict the diffusion coefficients in the experiments with the relative errors in the range of 5%–12%.

The methods proposed in this study can be used to estimate the lateral and longitudinal diffusion coefficients in flows through both rigid and flexible vegetations using the effective submerged vegetation height.

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来源期刊
Environmental Sciences Europe
Environmental Sciences Europe Environmental Science-Pollution
CiteScore
11.20
自引率
1.70%
发文量
110
审稿时长
13 weeks
期刊介绍: ESEU is an international journal, focusing primarily on Europe, with a broad scope covering all aspects of environmental sciences, including the main topic regulation. ESEU will discuss the entanglement between environmental sciences and regulation because, in recent years, there have been misunderstandings and even disagreement between stakeholders in these two areas. ESEU will help to improve the comprehension of issues between environmental sciences and regulation. ESEU will be an outlet from the German-speaking (DACH) countries to Europe and an inlet from Europe to the DACH countries regarding environmental sciences and regulation. Moreover, ESEU will facilitate the exchange of ideas and interaction between Europe and the DACH countries regarding environmental regulatory issues. Although Europe is at the center of ESEU, the journal will not exclude the rest of the world, because regulatory issues pertaining to environmental sciences can be fully seen only from a global perspective.
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