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A dual-porosity model for coupled leachate and gas flow to vertical wells in municipal solid waste landfills

机译:双渗流模型,用于渗滤液和气流耦合进入市政固体垃圾填埋场的垂直井

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摘要

The performance of vertical pumping wells in municipal solid waste (MSW) landfills can be effectively enhanced if vacuum pressure is applied to the well. In this study, a dual-porosity model for coupled leachate and gas flow to vertical wells in MSW landfills has been established. The proposed model divides waste into fracture and matrix domains; the leachate and gas in these two domains flow horizontally and vertically into a vertical well together, and mass exchange occurs between them. The hydraulic conductivity of the fracture domain is much higher than that of the matrix domain. The model is solved using the finite-difference method to obtain numerical solutions of the leachate pumping rate Q(w) and leachate level drawdown S. Numerical simulations indicate that Q(w) and S decrease with the increasing hydraulic conductivity ratio of the fracture and matrix domains, k(irf)/k(irm). As the proportion of the fracture domain in the total domain w(f) increases, additional large pores are available for leachate flow, and Q(w) and S gradually increase. Q(w) and S estimated by the single-porosity model are 1.5-3.0 times as large as those obtained using the dual-porosity model. Q(w) and S increase with the increasing vacuum pressure applied at the pumping well. A field vacuum well pumping test was carried out at Tianziling landfill to verify the proposed model. When the vacuum pressure at the well increased from 0 kPa to -30 kPa, Q(w) increased from 33 m(3)/day to 45 m(3)/day at t = 36 h and S increased from 2.7 m to 5.6 m at a radial distance from the pumping well r = 10 m. The dual-porosity model performed better than the single-porosity model when simulating the pumping test.
机译:如果对真空井施加真空压力,则可以有效地提高城市生活垃圾(MSW)垃圾填埋场中的垂直抽水井的性能。在这项研究中,建立了渗滤液和气体流向垃圾填埋场垂直井耦合的双孔隙度模型。提出的模型将废物分为裂缝和基质两个领域。这两个区域中的渗滤液和气体水平和垂直地一起流入垂直井,并且在它们之间发生质量交换。裂缝域的水力传导率远高于基质域的水力传导率。使用有限差分法对模型进行求解,以获得渗滤液抽水速率Q(w)和渗滤液液位下降S的数值解。数值模拟表明,随着裂缝和水力传导率的增加,Q(w)和S减小。矩阵域k(irf)/ k(irm)。随着裂缝域在总域w(f)中的比例增加,额外的大孔隙可用于渗滤液,Q(w)和S逐渐增加。单孔隙率模型估计的Q(w)和S是双孔隙率模型获得的值的1.5-3.0倍。 Q(w)和S随着施加在泵井上的真空压力的增加而增加。在田子岭垃圾填埋场进行了现场真空井抽水试验,以验证所提出的模型。当井中的真空压力从0 kPa增加到-30 kPa时,在t = 36 h时Q(w)从33 m(3)/ day增加到45 m(3)/ day,S从2.7 m增加到5.6 m距抽油井的径向距离r = 10 m。在模拟泵送测试时,双孔隙度模型的性能优于单孔隙度模型。

著录项

  • 来源
    《Geotechnique》 |2020年第5期|406-420|共15页
  • 作者

  • 作者单位

    Zhejiang Univ Inst Geotech Engn MOE Key Lab Soft Soils & Geoenvironm Engn Hangzhou Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dewatering; landfills; numerical modelling; seepage; water flow;

    机译:脱水垃圾填埋场;数值建模;渗漏;水流;

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