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首页> 外文期刊>Environmental Monitoring and Assessment >AUGMENTING GROUNDWATER MONITORING NETWORKS NEAR LANDFILLS WITH SLURRY CUTOFF WALLS
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AUGMENTING GROUNDWATER MONITORING NETWORKS NEAR LANDFILLS WITH SLURRY CUTOFF WALLS

机译:用淤泥防渗墙增强垃圾填埋场附近的地下水监测网络

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This study investigated the use of slurry cutoff walls in conjunction with monitoring wells to detect contaminant releases from a solid waste landfill. The 50 m wide by 75 m long landfill was oriented oblique to regional groundwater flow in a shallow sand aquifer. Computer models calculated flow fields and the detection capability of six monitoring networks, four including a 1 m wide by 50 m long cutoff wall at various positions along the landfill's downgradient boundaries and upgradient of the landfill. Wells were positioned to take advantage of convergent flow induced downgradient of the cutoff walls. A five-well network with no cutoff wall detected 81% of contaminant plumes originating within the landfill's footprint before they reached a buffer zone boundary located 50 m from the landfill's downgradient corner. By comparison, detection efficiencies of networks augmented with cutoff walls ranged from 81 to 100%. The most efficient network detected 100% of contaminant releases with four wells, with a centrally located, downgradient cutoff wall. In general, cutoff walls increased detection efficiency by delaying transport of contaminant plumes to the buffer zone boundary, thereby allowing them to increase in size, and by inducing convergent flow at downgradient areas, thereby funneling contaminant plumes toward monitoring wells. However, increases in detection efficiency were too small to offset construction costs for cutoff walls. A 100% detection efficiency was also attained by an eight-well network with no cutoff wall, at approximately one-third the cost of the most efficient wall-augmented network.
机译:这项研究调查了泥浆防渗墙结合监测井的使用,以检测固体垃圾填埋场的污染物释放。宽50 m x长75 m的垃圾填埋场倾斜于浅层含水层中的区域地下水流。计算机模型计算出了六个监测网络的流场和检测能力,其中四个监测网络包括沿着垃圾填埋场下坡边界和上坡的不同位置的1 m宽乘50 m长的防渗墙。定位井以利用会聚流引起的截留壁下降梯度。在没有防渗墙的五井网中,有81%的污染物羽流到达填埋场下坡角50 m处的缓冲区边界,然后才进入填埋场的足迹。相比之下,以隔离墙增强的网络的检测效率范围为81%至100%。最有效的网络通过位于中心,向下倾斜的防渗墙的四个井检测了100%的污染物释放。通常,防渗墙通过延迟污染物羽流向缓冲区边界的传输,从而增加了检测效率,从而允许它们增大尺寸,并通过在梯度下降区域引起会聚流,从而将污染物羽流向监测井集中。但是,检测效率的提高太小,无法抵消防渗墙的建造成本。没有隔墙的八孔网络也达到了100%的检测效率,大约是最有效的扩壁网络成本的三分之一。

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