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Treatment of Municipal Wastewater by Subsurface Flow Wetlands Modified to Rural Communities in Mexico

机译:墨西哥农村社区的地下流湿地处理市政废水

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In this work, efficiency and quality of water by artificial wetland with subsurface flow were obtained. This wetland is 12.15 m long and 8 m wide with three channels. Its substrate bed consists of volcanic rock (“tezontle”), with three particle size (5-10, 10-15 and 15-20 cm), where the influence of porosity and its relation to hydraulic conductivity were determined, both parameters were related to Manning and Darcy equations for obtain water flow behaviour in each channel of wetland. The system was planted with Phragmites australis and Typha latifolia. For input to each channel were designed curved shapes with slope of radius 2.67 m, to avoid short circuits, with 6% minimum curvature, 1% slope, 0.5 m/min minimum velocity, and 2 L/s of flow (expense). Quality parameters of treated water were evaluated and with IBER software was modelled the hydrodynamic from wetland. It was concluded from results that curves sloped forms in channels improve treatment, achieving more efficiency. Furthermore the result of hydrodynamic modelling indicates that flow between channels is homogeneous, continuous and short circuits are avoided.
机译:在这项工作中,获得了具有地下流量的人工湿地的水效率和水质。该湿地长12.15 m,宽8 m,具有三个通道。它的基质床由火山岩(“ tezontle”)组成,具有三个粒径(5-10、10-15和15-20 cm),确定了孔隙度的影响及其与水力传导率的关系,两个参数都相关根据Manning和Darcy方程获得湿地各通道的水流特性。该系统种植了芦苇和香蒲。对于每个通道的输入,设计了弯曲半径为2.67 m的弯曲形状,以避免短路,其曲率最小为6%,斜率为1%,最小速度为0.5 m / min,流量(消耗)为2 L / s。评价了处理水的质量参数,并使用IBER软件对湿地的水动力模型进行了建模。从结果可以得出结论,通道中的曲线倾斜形式可以改善处理效果,并提高效率。此外,流体动力学建模的结果表明,通道之间的流动是均匀的,避免了连续和短路。

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