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Study on flow pattern of vertical flow constructed wetlands by reaction theory

机译:基于反应理论的垂直流人工湿地流型研究

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To obtain an optimal designing of vertical flow constructed wetlands(VFCWS) and a better understanding the processes in the systems, the reaction theory is employed to determine residence time distribution (RTD ) and the flow pattern of VFCWS with different feeding strategies. Results indicate that the actual flow pattern of the system under different operating are all deviated from the ideal plug flow (PF) and complete stirred flow(CST). The complete stir tanks in series(TIS) with delay model can provied a better fit to the data of tracer response curves through assesse the accuracy of flow models with TIS and TIS with delay. The number of TIS with delay ranged from 2.6to 3.3. Furthermore, analysis results of RTD theory indicate that identical volume of batches and batch frequency but higher flow rate can increase volume utilizing rate and decrease the disperison number which represent a better hydraulic behaviour. Identical hydraulic loading and flow rate but less feeding intervals between batches can improve hydraulic efficiency of the system as well. Study results provide some referrences for optimal design and operation of VFCWS with intermittent feeding.
机译:为了获得垂直流人工湿地(VFCWS)的最佳设计并更好地了解系统中的过程,采用反应理论确定停留时间分布(RTD)和采用不同进料策略的VFCWS的流型。结果表明,在不同操作下,系统的实际流量模式均偏离理想的塞流(PF)和完全搅拌流(CST)。带有延迟模型的完整串联搅拌罐(TIS)通过评估带有TIS和TIS延迟的流动模型的准确性,可以更好地拟合示踪剂响应曲线的数据。延迟的TIS数量范围从2.6到3.3。此外,RTD理论的分析结果表明,相同的批次体积和批次频率但较高的流速可以提高体积利用率,并降低分散数,这代表了更好的水力性能。相同的液压负载和流速,但批次之间的加料间隔更短,也可以提高系统的液压效率。研究结果为间歇喂料的VFCWS的优化设计和运行提供了参考。

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