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首页> 外文期刊>Journal of geotechnical and geoenvironmental engineering >Influence of Spatial Variation of Hydraulic Conductivity of Municipal Solid Waste on Performance of Bioreactor Landfill
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Influence of Spatial Variation of Hydraulic Conductivity of Municipal Solid Waste on Performance of Bioreactor Landfill

机译:城市生活垃圾水力传导率空间变化对生物反应器垃圾填埋场性能的影响

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The current study analyzes the leachate distribution in the Orchard Hills Landfill, Davis Junction, Illinois, using a two-phase flow model to assess the influence of variability in hydraulic conductivity on the effectiveness of the existing leachate recirculation system and its operations through reliability analysis. Numerical modeling, using finite-difference code, is performed with due consideration to the spatial variation of hydraulic conductivity of the municipal solid waste (MSW). The inhomogeneous and anisotropic waste condition is assumed because it is a more realistic representation of the MSW. For the reliability analysis, the landfill is divided into 10 MSW layers with different mean values of vertical and horizontal hydraulic conductivities (decreasing from top to bottom), and the parametric study is performed by taking the coefficients of variation (COVs) as 50,100,150, and 200%. Monte Carlo simulations are performed to obtain statistical information (mean and COV) of output parameters of the (1) wetted area of the MSW, (2) maximum induced pore pressure, and (3) leachate outflow. The results of the reliability analysis are used to determine the influence of hydraulic conductivity on the effectiveness of the leachate recirculation and are discussed in the light of a deterministic approach. The studv is useful in understanding the efficiency of the leachate recirculation svstem.
机译:当前的研究使用两相流模型分析了伊利诺伊州戴维斯交界处乌节山果园垃圾填埋场渗滤液的分布,通过可靠性分析评估了水力传导率的变化对现有渗滤液再循环系统的有效性及其运行的影响。考虑到市政固体废物(MSW)的水力传导率的空间变化,使用有限差分代码进行了数值建模。假定存在非均质和各向异性的废物状况,因为它是MSW的更现实的表示。为了进行可靠性分析,将垃圾填埋场分为10个MSW层,分别具有不同的垂直和水平水力传导率平均值(从上到下递减),并通过将变异系数(COV)设为50,100,150进行参数研究,并且200%。进行蒙特卡罗模拟以获得以下参数的统计信息(平均值和COV):( 1)城市固体废弃物的湿润区域;(2)最大诱导孔隙压力;(3)渗滤液流出。可靠性分析的结果用于确定水力传导率对渗滤液再循环效率的影响,并根据确定性方法进行讨论。研究有助于了解渗滤液再循环系统的效率。

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