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Understanding leachate flow in municipal solid waste landfills by combining time-lapse ERT and subsurface flow modelling - Part Ⅰ: Analysis of infiltration shape on two different waste deposit cells

机译:结合时延ERT和地下渗流模型了解城市固体垃圾填埋场渗滤液的流动-第一部分:分析两种不同沉积物池的入渗形态

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摘要

Landfill bioreactors are based on an acceleration of in-situ waste biodegradation by performing leachate recirculation. To quantify the water content and to evaluate the leachate injection system, in-situ methods are required to obtain spatially distributed information, usually electrical resistivity tomography (ERT). In a previous study, the MICS (multiple inversions and clustering strategy) methodology was proposed to improve the hydrodynamic interpretation of ERT results by a precise delimitation of the infiltration area. In this study, MICS was applied on two ERT time-lapse data sets recorded on different waste deposit cells in order to compare the hydrodynamic behaviour of leachate flow between the two cells. This comparison is based on an analysis of: (ⅰ) the volume of wetted waste assessed by MICS and the wetting rate, (ⅱ) the infiltration shapes and (ⅲ) the pore volume used by the leachate flow. This paper shows that leachate hydrodynamic behaviour is comparable from one waste deposit cell to another with: (ⅰ) a high leachate infiltration speed at the beginning of the infiltration, which decreases with time, (ⅱ) a horizontal anisotropy of the leachate infiltration shape and (ⅲ) a very small fraction of the pore volume used by the leachate flow. This hydrodynamic information derived from MICS results can be useful for subsurface flow modelling used to predict leachate flow at the landfill scale.
机译:垃圾掩埋生物反应器的基础是通过渗滤液再循环实现原位废物生物降解。为了量化水含量并评估渗滤液注入系统,需要采用原位方法来获得空间分布的信息,通常是电阻层析成像(ERT)。在先前的研究中,提出了MICS(多次反演和聚类策略)方法,以通过对入渗区域进行精确划界来改善ERT结果的水动力解释。在这项研究中,MICS被应用于记录在不同废物沉积池上的两个ERT延时数据集,以比较两个池之间渗滤液流的流体动力学行为。该比较基于以下分析:(ⅰ)通过MICS评估的湿废物的体积和润湿率,(ⅱ)渗透形状和(ⅲ)渗滤液流所使用的孔体积。本文表明,渗滤液的水动力行为在一个废物沉积单元与另一个废物沉积单元之间具有可比性:(ⅰ)渗滤开始时渗滤液的渗透速度较高,随时间而减小;(ⅱ)渗滤液渗透形态的水平各向异性和(ⅲ)沥滤液流量所使用的孔体积的很小一部分。从MICS结果获得的流体动力学信息可用于地下流建模,该模型用于预测垃圾填埋场规模的渗滤液流量。

著录项

  • 来源
    《Waste Management》 |2016年第9期|165-175|共11页
  • 作者单位

    National Research Institute of Science and Technology for Environment and Agriculture (IRSTEA), Hydrosystems and Bioprocesses Research Unit, 1 rue Pierre Giles de Gennes, CS 10030, 92761 Antony Cedex, France;

    National Research Institute of Science and Technology for Environment and Agriculture (IRSTEA), Hydrosystems and Bioprocesses Research Unit, 1 rue Pierre Giles de Gennes, CS 10030, 92761 Antony Cedex, France;

    National Research Institute of Science and Technology for Environment and Agriculture (IRSTEA), Hydrosystems and Bioprocesses Research Unit, 1 rue Pierre Giles de Gennes, CS 10030, 92761 Antony Cedex, France;

    National Research Institute of Science and Technology for Environment and Agriculture (IRSTEA), Hydrosystems and Bioprocesses Research Unit, 1 rue Pierre Giles de Gennes, CS 10030, 92761 Antony Cedex, France;

    SAS Les Champs Jouault, 50670 Cuves (Avranches-Brecey-Manche), France;

    National Research Institute of Science and Technology for Environment and Agriculture (IRSTEA), Hydrosystems and Bioprocesses Research Unit, 1 rue Pierre Giles de Gennes, CS 10030, 92761 Antony Cedex, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electrical resistivity tomography; Leachate flow; Hydrodynamic; Landfills; Infiltration shape;

    机译:电阻层析成像;渗滤液流量;流体力学堆填区;渗透形状;

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