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Effect of LCRS clogging on leachate recirculation and landfill slope stability

机译:LCRS堵塞对渗滤液再循环和垃圾填埋场稳定性的影响

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Vertical wells are commonly used for recirculating leachate into a landfill which can offer significant environmental and economic benefits. However, in some cases, the leachate collection and removal system (LCRS) at the bottom is overloaded and clogged due to biological and chemical processes. This results in a relatively high leachate level which could pose a threat to landfill slope stability. This study develops a three-dimensional landfill slope model with vertical recirculation wells and then investigates the effect of LCRS clogging on leachate recirculation and slope stability in terms of leachate saturation, pore water pressure, and factor of safety (FS) of a landfill slope. The results show that with an increase in clogging level that is characterized by an increased leachate level, the pore water pressure below the well injection screen is significantly increased by leachate recirculation, giving rise to a decreased slope FS value. In such conditions, the landfill slope formed by highly anisotropic waste is more likely to suffer instability. To prevent this kind of slope failure, a safe injection pressure of vertical recirculation wells is proposed for a wide range of parameter combinations involving waste anisotropy, clogging level, and the setback distance from the slope surface. This design guideline can be used to control the injection pressure in leachate recirculation applications and contributes to a better understanding of the slope stability of a bioreactor landfill.
机译:垂直孔通常用于将渗滤液再循环到垃圾填埋场,这可以提供显着的环境和经济效益。然而,在某些情况下,由于生物和化学过程,底部的渗滤液收集和去除系统(LCRS)过载并堵塞。这导致相对较高的渗滤液水平,这可能会对垃圾填埋场稳定性构成威胁。该研究开发了一种具有垂直再循环孔的三维垃圾填埋场斜坡模型,然后研究LCRS堵塞对浸出液饱和,孔隙水压力和垃圾填埋场的安全性(FS)的因子的渗滤液再循环和边坡稳定性的影响。结果表明,随着堵塞水平增加的堵塞水平的增加,通过渗滤液再循环,井注射筛以下低于孔注射筛的孔隙水压,从而产生降低的斜率Fs值。在这种情况下,由高各向准的废物形成的垃圾填埋场更可能遭受不稳定。为了防止这种斜率发生故障,提出了垂直再循环孔的安全喷射压力,用于涉及废物各向异性,堵塞水平的宽范围的参数组合,以及距斜坡表面的挫折距离。这种设计指南可用于控制渗滤液再循环应用中的注射压力,并有助于更好地理解生物反应器垃圾填埋场的斜率稳定性。

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