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Numerical Modeling of Flow in a Horizontal Sand Filter | Science Publications

机译:卧式砂滤池内流动的数值模拟科学出版物

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> Problem statement: Horizontal sand filters may offer some advantage over vertical sand filters as they could be used for in-line treatment of wastewaters. Horizontal pipelines of tens and if not hundreds of meters length, filled with ordinary sand or permeable reactive media such as activated carbon or natural zeolite or iron filings, may be used to remove impurities from mine drainage waters, sewer and storm waters. Approach: However, in reality, in industrial-scale applications, the sand filled horizontal structures are almost always avoided due to the fact that water seeks out the path of least resistance. Once such a path is created, the vast majority of the water channels towards the least resistance zone and very small percentage of the water will go through the sand. Results: This study, applying numerical modeling using FLUENT software, which is based on the integral control volume approach, explores a number of geometries to identify a design that helps the inlet water to sweep the entire sand with the least channeling. The Navier Stokes equations for laminar and incompressible flow through porous media (i.e., the sand) including the viscous resistance were solved. Retention time of a fluid with properties similar to water, called tracer, were also estimated using Eulerian unsteady two phase flow analysis. Conclusion: The results of the models showed that the geometries involving a pipe with spiral protrusions or plate (baffles) inside, would be partially successful in drawing the water away from the channeling zone and moving it through the sand, however the geometry with the spiral protrusions uses much less power than the one with the baffles.
机译: > 问题陈述:水平砂滤器可能比垂直砂滤器更具优势,因为它们可以用于废水的在线处理。数十米长(如果不是几百米长)的水平管道填充了普通的沙子或可渗透的反应性介质,例如活性炭或天然沸石或铁屑,可用于去除矿井排水,下水道和雨水的杂质。 方法:但是,实际上,在工业规模的应用中,几乎总是避免用沙子填充水平结构,因为水会寻找阻力最小的路径。一旦建立了这样的路径,绝大多数的水通道都将流向阻力最小的区域,只有极少数的水会流过沙子。 结果:这项研究使用基于整体控制量方法的FLUENT软件进行数值建模,探索了多种几何形状,以识别一种设计,该设计可帮助进水用水将整个沙粒清扫干净。最少的渠道。求解了包括粘性阻力在内的多孔介质(即沙子)的层流和不可压缩流动的Navier Stokes方程。还使用欧拉非定常两相流分析来估算性质类似于水的流体(称为示踪剂)的保留时间。 结论:模型的结果表明,包括带有螺旋形突起或板(挡板)在内的管道的几何形状将部分成功地将水从通道区抽走并移动通过沙子但是,带有螺旋形突起的几何形状所消耗的功率比带有挡板的几何形状要少得多。

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