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Optimise inlet condition and design parameters of a new sewer overflow screening device using numerical model

机译:使用数值模型优化新型下水道溢流筛分装置的进水条件和设计参数

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After heavy rainfall, sewer overflow spills to receiving water bodies cause serious concern for the environment, aesthetics and public health. To overcome these problems this study investigated a new self-cleansing sewer overflow screening device. The device has a sewer overflow chamber, a rectangular tank and a slotted ogee weir to capture the gross pollutants. To design an efficient screening device a numerical computational fluid dynamic (CFD) model was used. A plausibility check of the CFD model was done using a one-dimensional analytical model. Results showed that an inlet parallel to the weir ensured better self-cleansing than an inlet perpendicular to the weir. Perforations should be at the bottom of the weir to get increased velocity and shear stress to create a favourable self-cleaning effect of the screening device. Increasing inlet length from 0.3 to 1.5 m reduced wave reflection up to 10%, which increased flow uniformity downstream and improved self-cleansing effect. The orientation of the ogee weir with the rectangular tank was found most uniform with a 1:3 (horizontal: vertical) slope. These results will help to maximise functional efficiency of the new sewer overflow screening device. Otherwise it would be too expensive to alter after installation and at times difficult to customise accordingly to existing urban drainage systems.
机译:大雨过后,下水道溢流到接收水体,引起对环境,美学和公共健康的严重关注。为了克服这些问题,本研究研究了一种新型的自洁式下水道溢流筛分装置。该设备具有一个下水道溢流室,一个矩形水箱和一个开槽的泥石堰,以捕获总污染物。为了设计有效的筛选设备,使用了数值计算流体动力学(CFD)模型。使用一维分析模型对CFD模型进行了真实性检查。结果表明,与垂直于堰的入口相比,平行于堰的入口确保了更好的自清洁。穿孔应位于堰的底部,以提高速度和剪切应力,从而产生良好的筛分装置自洁效果。将入口长度从0.3 m增加到1.5 m,可将波反射减少多达10%,从而增加下游的流量均匀性并改善自清洁效果。发现带有矩形水箱的鱼油堰的定向最均匀,坡度为1:3(水平:垂直)。这些结果将有助于最大程度地提高新型下水道溢流筛查设备的功能效率。否则,安装后进行更改将太昂贵,有时难以根据现有的城市排水系统进行定制。

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