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Enhancing commonly used model predictions for constructed wetland performance: as-built design considerations

机译:增强人工湿地性能的常用模型预测:竣工设计注意事项

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摘要

Successful performance management of constructed wetlands for water treatment requires that mathematical interactions between influent surface water and the water balance be predictable and consistent. Water inflows and outflows, as quantified by a water balance model. form the baseline for pollutant loadings of solutes and nutrients. These flows, coupled with the induced ecological and chemical interactions, affect the design and predictive performance of constructed wetlands as well as the transport and fate of contaminants. The constructed wetland's water balance was targeted for investigation through the application of a geotechnical field data acquisition. Utilization of the as-built soil profiles and the associated hydraulic conductivity properties were used to quantify the potential influence of soil structure on the design water balance, probable quantitative contributions to the hyporheic zone and predicted effluent concentrations of BOD and ammonia. (C) 2003 Elsevier B.V. All rights reserved.
机译:要对人工湿地进行水处理进行成功的性能管理,就需要可预测和一致的地表水和水平衡之间的数学相互作用。水流入和流出,由水平衡模型量化。形成溶质和养分污染物含量的基准。这些流量,加上诱发的生态和化学相互作用,影响人工湿地的设计和预测性能,以及污染物的运输和归宿。人工湿地水平衡的目标是通过应用岩土现场数据采集进行调查。利用已建成的土壤剖面和相关的水力传导特性来量化土壤结构对设计水平衡的潜在影响,可能对次流带的定量贡献以及预测的BOD和氨的浓度。 (C)2003 Elsevier B.V.保留所有权利。

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