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  4. Flume Experiments for Optimizing the Hydraulic Performance of a Deep-Water Wetland Utilizing Emergent Vegetation and Obstructions
 
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Flume Experiments for Optimizing the Hydraulic Performance of a Deep-Water Wetland Utilizing Emergent Vegetation and Obstructions

Journal
Water
Journal Volume
8
Journal Issue
6
Pages
265
Date Issued
2016-06
Author(s)
Shang-Shu Shih
Shang-Shang Hong
Tsang-Jung Chang
Shang-Shu Shih  
DOI
10.3390/w8060265
URI
http://scholars.lib.ntu.edu.tw/handle/123456789/397135
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85010817794&doi=10.3390%2fW8060265&partnerID=40&md5=1807f3f559de71103015c846255c018c
Abstract
Constructed ponds and wetlands are widely used in urban areas for stormwater management, ecological conservation, and pollution treatment. The treatment efficiency of these systems is strongly related to the hydrodynamics and hydraulic residence time. In this study, we developed a physical model and used rhodamine-WT as a tracer to conduct flume experiments. An equivalent Reynolds number was assumed, and the flume was a 1/25-scale model. Emergent obstructions (EOs), submerged obstructions (SOs), and high- and low-density emergent vegetation were placed along the sides of the flume, and 49 tracer tests were performed. We altered the density, spatial extent, aspect ratio, and configurations of the obstructions and emergent vegetation to observe changes in the hydraulic efficiency of a deep-water wetland. In the cases of low-aspect-ratio obstructions, the effects of the EOs on the hydraulic efficiency were significantly stronger than those of the SOs. In contrast, in the cases of high-aspect-ratio obstructions, the improvement effects of the EOs were weaker than those of the SOs. The high-aspect-ratio EOs altered the flow direction and constrained the water conveyance area, which apparently caused a short-circuited flow phenomenon, resulting in a decrease in hydraulic efficiency. Most cases revealed that the emergent vegetation improved the hydraulic efficiency more than the EOs. The high-density emergent vegetation (HEV) improved the hydraulic efficiency more than the low-density emergent vegetation (LEV). Three cases involving HEV, two cases involving LEV, and one case involving EOs attained a good hydraulic efficiency (λ > 0.75). To achieve greater water purification, aquatic planting in constructed wetlands should not be overly dense. The HEV configuration in case 3-1 achieved optimum hydraulic performance for compliance with applicable water treatment standards.
Subjects
Constructed wetland; Flume experiment; Hydraulic efficiency; Reynolds number; Similarity; Tracer
SDGs

[SDGs]SDG15

Other Subjects
Banks (bodies of water); Efficiency; Regulatory compliance; Reynolds number; Systems engineering; Vegetation; Water treatment; Wetlands; Constructed wetlands; Flume experiment; Hydraulic efficiency; Similarity; Tracer; Aspect ratio; constructed wetland; flume experiment; hydrodynamics; optimization; performance assessment; Reynolds number; tracer; vegetation cover; water pollution; water treatment
Type
journal article

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