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Computational fluid dynamics modelling of residence times in vegetated stormwater ponds

机译:植被雨水池塘停留时间的计算流体动力学模型

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Experimental data characterising dispersion within iTypha latifolia were previously collected in a laboratory setting. This mixing characterisation was combined with previously proposed computational fluid dynamics modelling approaches to predict residence time distributions for vegetated stormwater treatment pond layouts (including a wetland) derived from Highways England design guidance. The results showed that the presence of vegetation resulted in residence times closer to plug flow, indicating significant improvements in stormwater treatment capability. The new modelling approach reflects changes in residence time due to mixing within the vegetation, but it also suggests that it is more important to include vegetation within the model in the correct location than it is to accurately characterise it. Estimates of hydraulic efficiency suggest that fully vegetated stormwater ponds such as wetlands should function well as a treatment device, but more typical ponds with clear water need to be designed to be between 50% and 100% larger than their nominal residence times would suggest when designed against treatment criteria.
机译:先前在实验室环境中收集了表征鼠伤寒内的分散性的实验数据。这种混合特性与先前提出的计算流体动力学建模方法相结合,以预测植物生长的雨水处理池布局(包括湿地)的停留时间分布,该布局源自英国公路协会的设计指南。结果表明,植被的存在导致停留时间更接近塞流,表明雨水处理能力得到了显着改善。新的建模方法反映了由于植被内混合而导致的停留时间的变化,但它也表明,将植被包含在模型中的正确位置比准确表征其更为重要。估计水力效率表明,完全植被的雨水池塘(如湿地)应能很好地发挥处理设备的作用,但更典型的清水池塘设计时应比其标称停留时间大50%至100%。违反治疗标准。

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