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Flow Dynamics and Contaminant Transport in Y-Shaped River Channel Confluences

机译:Y型河道汇合处的水流动力学和污染物迁移

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摘要

River channel confluences are widespread in natural rivers. Understanding their unique hydrodynamic characteristics and contaminant transport rules may facilitate the rational and effective treatment of the water environment. In this study, we considered the Xitiaoxi River Basin as the research area, and a well-designed flume was established based on the extracted water system features. Hydrodynamically, in the Y-shaped confluence channel the flow velocity was easy to separate at the confluence, and a low flow velocity region appeared in the two branches. The spiral flow mainly flowed counterclockwise to the downstream region and the spiral trend increased as the discharge ratio decreased. The spiral flow and its effect on the transport and blending of contaminants were distinct between Y-shaped and asymmetrical river confluences. Based on the flow dynamics test, a set of pollutant discharge devices and a multi-point electrolytic conductivity meter were employed to research the mixing rule for pollutants. A high concentration zone for pollutants was likely to occur near the intersection, and the contaminant concentration band after the confluence was first compressed and then diffused. In particular, line source discharge in the left branch and the point source discharge in the inner bank of the left branch and in the outer bank of the right branch were dominant, and were conducive to the detection and treatment of pollutants.
机译:天然河道中河道汇合处很普遍。了解它们独特的水动力特性和污染物迁移规则可能有助于合理有效地处理水环境。在本研究中,我们以西条溪流域为研究区域,并根据提取的水系特征建立了设计合理的水槽。流体动力学上,在Y形汇合通道中,流速很容易在汇合处分离,并且在两个分支中出现低流速区域。螺旋流主要沿逆时针方向流向下游区域,并且螺旋趋势随着排放比的降低而增加。在Y形和非对称河流汇合处,螺旋流及其对污染物运移和混合的影响是明显的。在流动动力学试验的基础上,采用一套排污装置和多点电导率仪研究污染物的混合规律。交叉口附近可能会出现一个高浓度的污染物区,汇合后的污染物浓度带首先被压缩然后扩散。特别地,左分支的线源放电和左分支的内岸和右分支的外岸的点源放电占优势,有利于污染物的检测和处理。

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