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The hydrological performance of bioretention cells in regions with cold climates: seasonal variation and implications for design

机译:气候寒冷地区生物滞留细胞的水文性能:季节变化及其对设计的影响

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摘要

Three bioretention cells in Norway were monitored for 23 to 36 months to evaluate the hydrological performance of bioretention cells operated in regions with cold climates and to test if cell size equations can be used to predict hydrological performance. Values of saturated hydraulic conductivity (K_(sat)) were determined for separate events by analyzing the observed infiltration rates and via infiltration tests. The two cells with the highest K_(sat), values (15.9 and 45.0 cm/h) performed excellently during the study period infiltrating nearly all of the incoming runoff. In contrast, the cell with low K_(sat) value (1.3 cm/h) infiltrated barely half of the incoming runoff. The latter cell had a clear seasonal variation in hydrological performance relating to changes in the K_(sat) values over the year. The size equation that gave the best predictions of the observed hydrological performance accounts for both surface storage and infiltration. By using this equation to evaluate various bioretention cell designs, it was found that the most effective way to increase the hydrologic performance is to have a K_(sat) value above 10 cm/h.
机译:对挪威的三个生物保留池进行了23到36个月的监测,以评估在寒冷气候地区运行的生物保留池的水文性能,并测试是否可以使用细胞大小方程式来预测水文性能。通过分析观察到的渗透率并通过渗透测试,确定了单独事件的饱和水力传导率(K_(sat))值。在研究期间,具有最高K_(sat)值(15.9和45.0 cm / h)的两个单元在渗入几乎所有进入的径流中均表现出色。相反,低K_(sat)值(1.3 cm / h)的单元仅渗入了流入径流的一半。后一个单元在水文性能方面存在明显的季节性变化,这与一年中K_(sat)值的变化有关。给出所观察到的水文性能最佳预测的尺寸方程解释了地表存储和入渗。通过使用该方程式评估各种生物保留池设计,发现提高水文性能的最有效方法是使K_(sat)值高于10 cm / h。

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