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首页> 外文期刊>Water Environment Research >Hydraulic Response and Nitrogen Retention in Bioretention Mesocosms with Regulated Outlets: Part I—Hydraulic Response
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Hydraulic Response and Nitrogen Retention in Bioretention Mesocosms with Regulated Outlets: Part I—Hydraulic Response

机译:带有调节出口的生物滞留膜的水力响应和氮保留:第一部分—水力响应

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摘要

In bioretention systems used for stormwater treatment, runoff interception improves with increased infiltration rates. However, nitrogen retention improves with increased retention time or decreasing infiltration rates. These contrasting responses were analyzed in 240-L experimental mesocosms using a variety of media treatments. The mesocosms were vegetated, except for one barren control. Dual-stage outlets were installed to extend retention time and equalize hydraulic responses. One unregulated treatment was free-draining. This part 1 paper presents the media properties and hydraulic responses. The highly aggregated media had saturated hydraulic conductivities ranging from 20.7 to 59.6 cm/h in August 2008 (austral winter), which increased to 42.8 to 110.6 cm/h in March 2009 (austral summer). The outlet regulated mesocosms provided retention over 8 times longer than the free-draining mesocosms, while still being able to capture large events. The outlets provide adaptive management for bioretention design to improve both runoff capture and nitrogen retention. Water Environ. Res., 83, 692 (2011).
机译:在用于雨水处理的生物滞留系统中,径流截留率随着渗透率的提高而提高。但是,氮的保留随着保留时间的增加或渗透率的降低而提高。使用各种培养基处理方法,在240-L实验中膜中分析了这些对比反应。除一个贫瘠的对照外,中观已被植被覆盖。安装了双级出口,以延长保留时间并平衡水力响应。一种不受管制的治疗是自由排水。第1部分的论文介绍了介质特性和水力响应。高度聚集的介质在2008年8月(冬季澳大利亚)的饱和水力传导率从20.7至59.6 cm / h,在2009年3月(夏季澳大利亚)增加至42.8至110.6 cm / h。出口调节的中膜提供的保留时间比自由排水的中膜长8倍以上,同时仍然能够捕获大型事件。这些出口为生物保留设计提供自适应管理,以改善径流捕获和氮保留。水环境。 Res.83,692(2011)。

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