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Slope Stability of Bioreactor Landfill with Leachate Recirculation using Horizontal Trench System

机译:使用水平沟槽系统的渗滤液再循环生物反应器垃圾填埋场的边坡稳定性

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A numerical two-phase flow modeling was performed for leachate recirculation in bioreactor landfills using horizontal trench (HT) system to evaluate the moisture distribution, pore water and capillary pressures generation, and the resulting impacts on the stability of a simplified bioreactor landfill. A staggered geometric configuration of HT system with known horizontal and vertical spacing was modeled based on the results from previous study. The lateral distance of HT system from side slope (setback distance) was varied in the range of 15-30 m, as recommended by USEPA. The waste was considered as heterogeneous and anisotropic with varied unit weight and saturated hydraulic conductivity. Leachate was injected at high injection pressure, both continuously and intermittently. Unsaturated hydraulic properties of MSW were based on the van Genutchen model. It was found that staggered HT system, located near side slope, could significantly affect the moisture distribution and lead to landfill slope failure under continuous injection as a result of excessive pore fluid pressures as compared to the HT systems, located relatively far away from side slope. However, intermittent injection sequencing with injection in alternate HT layers proved effective in maintaining stable slope without generating excess pressures, and resulting in an optimal environment for biodegradation.
机译:使用水平沟槽(HT)系统对生物反应器垃圾填埋场中的渗滤液再循环进行了数值两相流建模,以评估水分分布,孔隙水和毛细管压力的产生,以及由此对简化的生物反应器垃圾填埋场的稳定性产生的影响。基于先前研究的结果,对具有已知水平和垂直间距的HT系统的交错几何构型进行了建模。根据USEPA的建议,HT系统与侧坡的横向距离(后退距离)在15-30 m的范围内变化。废物被认为是非均质和各向异性的,具有不同的单位重量和饱和的水力传导率。渗滤液在高注入压力下连续和间断地注入。 MSW的不饱和水力特性基于van Genutchen模型。发现与边坡相对较远的HT系统相比,位于边坡附近的交错式HT系统可能会显着影响水分分布,并由于连续的孔隙流体压力过大而导致在连续注入下填埋场边坡失效。 。但是,在交替的HT层中注入进行间歇性注入测序已证明可以有效地保持稳定的斜率,而不会产生过大的压力,并为生物降解提供了最佳的环境。

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