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Impact of Wind on Storm-Water Pond Hydraulics

机译:风对雨水池塘水力学的影响

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A storm water pond's effectiveness to treat particulate bound pollutants in urban runoff depends on its hydraulic behavior. Departures from the ideal plug flow, such as short-circuiting and mixing, pose hindrances to pond design. The goal of this study was to assess the importance of wind on storm water pond hydraulics. High resolution acoustic velocity measurements were conducted in a 0.3ha, 2m deep pond during dry weather. Results suggest that winds drive a turbulent, three-dimensional flow regime, including a lateral circulation and vertical exchange flows. A fully developed surface layer representing 1/3d of the water depth, with drift scaling as 0.004 on wind speed at 10m above ground, was observed in the downwind section of the pond. Wind-induced vertical mixing, short-circuiting, and basin scale mixing were estimated to occur faster than the typical nominal residence time in storm water ponds. Wind is therefore an important hydraulic driver in small water systems, which may potentially reduce their treatment performance. Local landscaping may be used as a wind mitigation measure.
机译:雨水池塘处理城市径流中颗粒污染物的有效性取决于其水力行为。偏离理想的塞流(例如短路和混合)会妨碍池塘设计。这项研究的目的是评估风对雨水塘水力学的重要性。干旱天气期间,在0.3公顷,2m深的池塘中进行了高分辨率声速测量。结果表明,风驱动湍流的三维流动状态,包括横向循环和垂直交换流动。在池塘的顺风区观察到一个完全发育的表层,代表水深的1 / 3d,在离地面10m处的风速下漂移比例为0.004。据估计,风引起的垂直混合,短路和流域水垢混合比雨水池塘中的典型标称停留时间快。因此,风是小型水系统中的重要液压驱动器,可能会降低其处理性能。本地美化环境可以用作减风措施。

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