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Hydraulic investigation of the impact of retrofitting floating treatment wetlands in retention ponds

机译:改造浮动处理湿地在保留池中影响的水力调查

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This paper describes the laboratory experimental investigations undertaken to analyse the influence of floating treatment wetlands (FTWs) on the hydraulic performance of a stormwater retention pond. Two experimental series were conducted, each focussed on investigating the influence of placing an FTW in a pond with firstly the inflow entering the retention pond from an inlet positioned 0.25 m offset from the longitudinal axis of the pond, and secondly the inlet positioned at the longitudinal axis of the pond. For both series of experiments, tests were undertaken at 1 l/s and 1.5 l/s, and with and without an artificial FTW installed. This study is the first to investigate the hydraulic impact of FTWs and their root systems on the performance of stormwater retention ponds. The results presented in this study suggest that FTWs are a viable method to minimise hydraulic inefficiencies, thereby increasing retention time and optimising hydraulic performance of stormwater retention ponds. The results highlight the importance of plant root characteristics. The optimal arrangement of root length is L-R/D-P = 0.5, where L-R = root length and D-P = pond depth. The results also indicate that the spatial variability of vegetation has a significant impact on the hydraulic performance of the pond.
机译:本文介绍了采用实验室实验研究,分析浮动处理湿地(FTWS)对雨水保留池液压性能的影响。进行了两种实验系列,每个实验系列都集中在研究池塘中放置FTW的影响,首先是从池塘的纵向轴线的入口进入储存池的流入,并第二位于纵向旋转的入口池塘的轴。对于两系列实验,测试以1 L / S和1.5 L / s进行,并且随机安装,无需安装人工FTW。本研究首先要研究FTWS及其根系对雨水保留池的性能的液压影响。本研究中提出的结果表明FTW是最小化液压低效率的可行方法,从而增加保留时间和优化雨水保留池的液压性能。结果突出了植物根特征的重要性。根长度的最佳排列是L-R / D-P = 0.5,其中L-R =根长度和D-P =池深度。结果还表明植被的空间变异性对池塘的水力性能产生了重大影响。

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