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Understanding leachate flow in municipal solid waste landfills by combining time-lapse ERT and subsurface flow modelling - Part Ⅱ: Constraint methodology of hydrodynamic models

机译:结合时延ERT和地下渗流模型理解城市垃圾填埋场渗滤液的流失-第二部分:水动力模型的约束方法

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摘要

Leachate recirculation is a key process in the operation of municipal solid waste landfills as bioreactors. To ensure optimal water content distribution, bioreactor operators need tools to design leachate injection systems. Prediction of leachate flow by subsurface flow modelling could provide useful information for the design of such systems. However, hydrodynamic models require additional data to constrain them and to assess hydrodynamic parameters. Electrical resistivity tomography (ERT) is a suitable method to study leachate infiltration at the landfill scale. It can provide spatially distributed information which is useful for constraining hydrodynamic models. However, this geophysical method does not allow ERT users to directly measure water content in waste. The MICS (multiple inversions and clustering strategy) methodology was proposed to delineate the infiltration area precisely during time-lapse ERT survey in order to avoid the use of empirical petrophysical relationships, which are not adapted to a heterogeneous medium such as waste. The infiltration shapes and hydrodynamic information extracted with MICS were used to constrain hydrodynamic models in assessing parameters. The constraint methodology developed in this paper was tested on two hydrodynamic models: an equilibrium model where, flow within the waste medium is estimated using a single continuum approach and a non-equilibrium model where flow is estimated using a dual continuum approach. The latter represents leachate flows into fractures. Finally, this methodology provides insight to identify the advantages and limitations of hydrodynamic models. Furthermore, we suggest an explanation for the large volume detected by MICS when a small volume of leachate is injected.
机译:渗滤液再循环是城市生活垃圾填埋场作为生物反应器运行的关键过程。为了确保最佳的水分分布,生物反应器操作员需要设计渗滤液注入系统的工具。通过地下流动建模预测渗滤液流量可以为此类系统的设计提供有用的信息。但是,水动力模型需要附加数据来约束它们并评估水动力参数。电阻层析成像(ERT)是研究垃圾填埋场渗滤液渗透的合适方法。它可以提供空间分布的信息,对于约束流体力学模型很有用。但是,这种地球物理方法不允许ERT用户直接测量废物中的水分。提出了MICS(多次反演和聚类策略)方法来精确描述时延ERT调查期间的入渗区域,以避免使用经验性岩石物理关系,这种关系不适用于异质介质(例如废物)。用MICS提取的入渗形状和水动力信息被用来约束评估参数的水动力模型。本文开发的约束方法论在两个流体动力学模型上进行了测试:一个平衡模型,其中废物介质中的流量使用单个连续介质方法估算;一个非平衡模型,其中流量使用双重连续介质方法估算。后者代表渗滤液流入裂缝。最后,这种方法为确定流体力学模型的优点和局限性提供了见识。此外,我们建议对当少量渗滤液注入时MICS检测到的大量体积进行解释。

著录项

  • 来源
    《Waste Management》 |2016年第9期|176-190|共15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;

    Laboratoire d'Etude des Transferts en Hydmlogie et Environnement (LTHE), University of Grenoble, BP 53, 38041 Grenoble 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), Ecology and Pollution Research Unit, Lyon Regional Centre, 5 rue de la Doua, CS 70077, 69626 Villeurbanne 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;

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

    Hydrodynamic parameters; Electrical resistivity tomography; Municipal solid waste; Leachate flow; Landfills;

    机译:流体力学参数;电阻层析成像;城市生活垃圾;渗滤液流量;堆填区;
  • 入库时间 2022-08-17 13:40:27

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