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首页> 外文期刊>Waste Management >Stochastic modelling of landfill leachate and biogas production incorporating waste heterogeneity. Model formulation and uncertainty analysis
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Stochastic modelling of landfill leachate and biogas production incorporating waste heterogeneity. Model formulation and uncertainty analysis

机译:结合废物异质性的垃圾渗滤液和沼气生产的随机模型。模型制定和不确定性分析

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摘要

A mathematical model simulating the hydrological and biochemical processes occurring in landfilled waste is presented and demonstrated. The model combines biochemical and hydrological models into an integrated representation of the landfill environ ment. Waste decomposition is modelled using traditional biochemical waste decomposition pathways combined with a simplified methodology for representing the rate of decomposition. Water flow through the waste is represented using a statistical velocity model capable of representing the effects of waste heterogeneity on leachate flow through the waste. Given the limitations in data capture from landfill sites, significant emphasis is placed on improving parameter identification and reducing parameter requirements. A sensitivity analysis is performed, highlighting the model's response to changes in input variables. A model test run is also presented, demonstrating the model capabilities. A parameter perturbation model sensitivity analysis was also performed. This has been able to show that although the model is sensitive to certain key parameters, its overall intuitive response provides a good basis for making reasonable predictions of the future state of the landfill system. Finally, due to the high uncertainty associated with landfill data, a tool for handling input data uncertainty is incorporated in the model's structure. It is concluded that the model can be used as a reasonable tool for modelling landfill processes and that further work should be undertaken to assess the model's performance.463-469
机译:提出并证明了模拟垃圾填埋场中发生的水文和生化过程的数学模型。该模型将生化和水文模型结合到了垃圾填埋场环境的综合表示中。废物分解是使用传统的生化废物分解途径结合简化的方法来模拟分解速率的模型。通过统计速度模型表示通过废物的水流量,该模型能够表示废物异质性对通过废物的渗滤液的影响。考虑到从垃圾填埋场捕获数据的局限性,重点放在改善参数识别和降低参数要求上。执行灵敏度分析,突出显示模型对输入变量变化的响应。还提供了模型测试运行,展示了模型功能。还进行了参数摄动模型敏感性分析。这已经表明,尽管该模型对某些关键参数敏感,但其总体直观响应为合理地预测垃圾掩埋系统的未来状态提供了良好的基础。最后,由于与垃圾填埋场数据相关的高度不确定性,该模型的结构中包含了一种用于处理输入数据不确定性的工具。结论是,该模型可以用作建模垃圾填埋场过程的合理工具,应进一步开展工作以评估模型的性能。463-469

著录项

  • 来源
    《Waste Management 》 |2004年第5期| p.453-462| 共10页
  • 作者

    A.I. Zacharof; A.P. Butler;

  • 作者单位

    Centre for Environmental Control and Waste Management, Department of Civil and Environmental Engineering. Imperial College London South Kensington Campus, London SW7 2AZ, UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 废物处理与综合利用 ;
  • 关键词

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