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Leachate injection using vertical wells in bioreactor landfills

机译:在生物反应器垃圾填埋场中使用垂直井注入渗滤液

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摘要

Leachate recirculation or liquid injection in municipal solid waste landfills offers economic and environmental benefits. The key objective of this study was to carry out numerical evaluation of key design variables for leachate recirculation system consisting of vertical wells. In order to achieve the objective, numerical modeling was carried out using the finite-element model HYDRUS-2D. The following design parameters were evaluated by simulating liquid pressure head on the liner and the wetted width of the waste under steady-state flow conditions: (1) hydraulic conductivities of the waste and vertical well backfill; (2) liquid injection rate and dosing frequency; (3) well diameter, screen height and screen depth; and (4) hydraulic conductivity of the leachate collection system, slope of the leachate collection system and spacing of the leachate collection pipes. The key findings of this study are as follows. The well diameter, hydraulic conductivity of the well drainage pack, and screen height and screen depth of the well have very little effect on the wetted width for a given liquid flux. The wetted width and the injection pressure for a given liquid flux decrease with the increase in the hydraulic conductivity of the waste. The pressure head on the liner increases with the decrease in the vertical distance between the bottom of the well screen and the top of leachate collection system. The liquid injection flux increases with the decrease in hydraulic conductivity of the leachate collection system. Unlike sand (k ~ 10~(-4) m/s), pea gravel (k ~ 0.01 m/s) resulted in less than 0.3 m pressure head on the liner for all simulations carried out in this study.
机译:城市生活垃圾填埋场中的渗滤液再循环或液体注入可带来经济和环境效益。这项研究的主要目的是对由垂直井组成的渗滤液再循环系统的关键设计变量进行数值评估。为了达到该目的,使用有限元模型HYDRUS-2D进行了数值建模。在稳态流动条件下,通过模拟衬里上的压头和废物的湿润宽度来评估以下设计参数:(1)废物的水导率和垂直井回填; (2)注液速度和加药频率; (3)井径,筛高和筛深; (4)渗滤液收集系统的水力传导率,渗滤液收集系统的坡度和渗滤液收集管的间距。这项研究的主要发现如下。对于给定的液体通量,井径,井排水组件的水力传导率以及井的筛网高度和筛网深度对润湿宽度的影响很小。给定液体通量的润湿宽度和注入压力随着废物的水力传导率的增加而降低。衬管上的压头随着井筛底部与渗滤液收集系统顶部之间垂直距离的减小而增加。液体注入流量随着渗滤液收集系统的水力传导率的降低而增加。与沙子(k〜10〜(-4)m / s)不同,豌豆碎石(k〜0.01 m / s)在本研究中进行的所有模拟中,衬管上的压头均小于0.3 m。

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