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首页> 外文期刊>Journal of Contaminant Hydrology >Effect of the inlet-outlet positions on the hydraulic performance of horizontal subsurface-flow wetlands constructed with heterogeneous porous media
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Effect of the inlet-outlet positions on the hydraulic performance of horizontal subsurface-flow wetlands constructed with heterogeneous porous media

机译:进水口位置对用非均质多孔介质构造的水平地下流湿地水力性能的影响

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摘要

Effects of the inlet and outlet position on flow patterns of saturated fluids in a horizontal subsurface-flow constructed wetland were investigated experimentally using a quasi two-dimensional flow cell representing a vertical cross-section in the longitudinal direction of the wetland. The filter medium consisted of glass beads that were either uniformly sized or a mixture of sizes with a distribution corresponding to wetland filter media. Flow through the filter bed was visualized by injecting dyed fluid into the water-saturated model. Next, breakthrough curves were obtained using chloride tracer. Flow through the homogeneous filter formed by uniformly sized beads displayed a clear density-driven component. Using mixed sizes, finer and coarser beads tended to separate into alternating and incomplete layers. Flow occurred preferentially along roughly horizontal high-conductivity paths of coarser filter material. Density-driven vertical flow was much slower than the horizontal flow. Nevertheless, appropriate positioning of the inlet and less importantly the outlet could to some extent mitigate the dominant effect of the medium stratification on the flow patterns. Using inlet-outlet configurations that forced the flow through larger portions of the filter bed by injecting into low-conductivity layers and opposing the gravity-driven flow increased the treatment efficiency.
机译:使用准二维流动池代表湿地纵向的垂直横截面,实验研究了入口和出口位置对水平地下流人工湿地中饱和流体流动模式的影响。过滤介质由大小一致或分布与湿地过滤介质相对应的大小混合的玻璃珠组成。通过将染过的流体注入到水饱和模型中可以看到流经滤床的流量。接下来,使用氯示踪剂获得穿透曲线。通过大小均一的珠子形成的均质过滤器的流量显示出清晰的密度驱动成分。使用混合尺寸,较细和较粗的珠粒倾向于分离为交替和不完整的层。流动优先发生在较粗的过滤材料的大致水平的高电导率路径上。密度驱动的垂直流比水平流慢得多。然而,入口的适当定位以及次要的出口的适当定位可以在某种程度上减轻介质分层对流型的主要影响。使用通过注入低电导率层并与重力驱动的流动相反而迫使流动通过滤床较大部分的进出口构造,可以提高处理效率。

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