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Three-dimensional modelling of leachate recirculation using vertical wells in bioreactor landfills

机译:在生物反应器垃圾填埋场中使用垂直井进行渗滤液再循环的三维建模

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Bioreactor landfills use leachate recirculation to enhance the biodegradation of municipal solid waste and accelerate landfill stabilisation, which can provide significant environmental and economic benefits. Vertical wells are operated as a major method for leachate recirculation systems. The objectives of this article are to analyse the leachate migration in bioreactor landfills using vertical wells and to offer theoretical basis for the design of leachate recirculation systems. A three-dimensional numerical model was built using FLAC-3D, and this model can consider the saturated and unsaturated flow of leachate within anisotropic waste to reflect the actual conditions. First, main influence factors of leachate migration were analysed, including the vertical well height, hydraulic conductivity, and anisotropic coefficient, in a single-well recirculation system. Then, the effects of different configurations of a group-well system were studied and the optimal well spacing was obtained. Some key design parameters (e.g. the recirculation flow rate, volume of impact zone, radius of impact zone and time to reach steady state) were also evaluated. The results show that the hydraulic conductivity has a great impact on the optimal height of vertical wells and uniform configuration is the best option in terms of both volume of impact zone and time to reach steady state.
机译:生物反应器垃圾填埋场利用渗滤液再循环提高市政固体废物的生物降解能力,并加速垃圾填埋场的稳定,这可以带来巨大的环境和经济效益。垂直井是渗滤液再循环系统的主要方法。本文的目的是使用垂直井分析生物反应器垃圾填埋场中的渗滤液迁移,并为渗滤液再循环系统的设计提供理论依据。使用FLAC-3D建立了三维数值模型,该模型可以考虑各向异性废物中渗滤液的饱和和不饱和流动,以反映实际情况。首先,分析了单井再循环系统中渗滤液运移的主要影响因素,包括垂直井高度,水力传导率和各向异性系数。然后,研究了群井系统不同配置的影响,并获得了最佳的井距。还评估了一些关键设计参数(例如,再循环流量,冲击区的体积,冲击区的半径和达到稳定状态的时间)。结果表明,水力传导率对垂直井的最佳高度有很大的影响,就冲击区的体积和达到稳定状态的时间而言,均匀配置是最佳选择。

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