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Non-equilibrium model for solute transport in differently designed biofilters targeting agricultural drainage water

机译:不同设计的生物过滤器溶液运输的非平衡模型,瞄准农业排水水

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摘要

Biogeochemical processes in subsurface flow constructed wetlands are influenced by flow direction, degree of saturation and influent loading position. This study presents a simulation tool, which aims to predict the performance of the unit and improve the design. The model was developed using the HYDRUS program, calibrated and verified on previously measured bromide (Br-) pulse tracer tests. Three different hydraulic designs (Horizontal (HF), Vertical upward (VF-up), Vertical downward (VF-down) and two different flow rates: Low (L), and High (H)) were investigated. The model simulated well the Br- transport behaviour and the results underline the importance of the hydraulic design. Calibrated model parameters (longitudinal dispersivity, immobile liquid phase, mass transfer coefficient) showed a common trend for all the designs, for increasing flow rates within the investigated range. The VF-down performed best, i.e. had the highest hydraulic retention time.
机译:地下流动构造湿地的生物地球化学过程受流动方向,饱和度和流入的装载位置的影响。 本研究提出了一种模拟工具,旨在预测该单元的性能并改善设计。 该模型是使用Hydrus程序开发的,校准并验证先前测量的溴化物(BR-)脉冲示踪试验。 三种不同的液压设计(水平(HF),垂直向上(Vf-up),垂直向下(Vf-Down)和两种不同的流速:低(L)和高(H))。 模型模拟了BR传输行为,结果强调了液压设计的重要性。 校准的模型参数(纵向分散性,固定液相,传质系数)显示了所有设计的共同趋势,用于增加研究范围内的流速。 vf-down表现最佳,即液压保留时间最高。

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