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首页> 外文期刊>Environmental Modeling & Assessment >Two-Phase Flow Modeling to Evaluate Effectiveness of Different Leachate Injection Systems for Bioreactor Landfills
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Two-Phase Flow Modeling to Evaluate Effectiveness of Different Leachate Injection Systems for Bioreactor Landfills

机译:两相流模型评估生物反应器垃圾填埋场不同渗滤液注入系统的有效性

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摘要

Leachate injection in bioreactor landfills increases the moisture content within the municipal solid waste and facilitates rapid waste decomposition, thereby leading to early waste stabilization. Three types of leachate injection systems (LIS), namely, horizontal trenches (HT), vertical wells (VW), and drainage blankets (DB), are commonly used for leachate injection in bioreactor landfills. This study compares the performance of the three LIS to distribute a specific amount of injected leachate into a typical bioreactor landfill configuration considering the effects of waste characteristics, the rate of leachate injection, the mode of leachate injection, and saturated and unsaturated hydraulic conductivity parameters. A numerical two-phase flow model is used to predict evolution of saturation levels, pore-fluid pressures, when subjected to the same volume of leachate injection. Based on the results, the relative effectiveness of each LIS for achieving maximum uniform moisture distribution without inducing excessive pore-fluid pressures is determined. The results showed that the DB is effective in uniformly distributing the leachate and increasing the moisture levels across the landfill than the HT and VW for the same leachate injection rates. Intermittent mode of leachate injection was found to induce lower pore-water pressures in the waste while maintaining required saturation levels. The unsaturated hydraulic properties of waste were found to have considerable impact on moisture distribution by affecting the hydraulic conductivity of waste.
机译:在生物反应器垃圾填埋场中注入渗滤液会增加城市固体废物中的水分含量,并促进废物快速分解,从而使废物早期稳定。三种类型的渗滤液注入系统(LIS),即水平沟槽(HT),垂直井(VW)和排水层(DB),通常用于生物反应器垃圾填埋场中的渗滤液注入。这项研究比较了三种LIS将特定数量的注入渗滤液分配到典型的生物反应器垃圾填埋场配置中的性能,其中考虑了废物特性,渗滤液注入速率,渗滤液注入方式以及饱和和不饱和水力传导率参数的影响。当进行相同体积的渗滤液注入时,数值两相流动模型用于预测饱和度,孔隙流体压力的演变。基于结果,确定了每个LIS在不引起过多的孔隙流体压力的情况下实现最大均匀水分分布的相对有效性。结果表明,在相同的渗滤液注入速率下,与HT和VW相比,DB可以有效地均匀分布渗滤液并提高垃圾填埋场的水分含量。发现间歇性的渗滤液注入模式可以在降低废物中的孔隙水压力的同时保持所需的饱和度。通过影响废物的水力传导率,发现废物的不饱和水力特性对水分分布有相当大的影响。

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