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Landfill side slope lining system performance: A comparison of field measurements and numerical modelling analyses

机译:垃圾填埋场边坡衬砌系统性能:实地测量与数值模拟分析的比较

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摘要

Low permeability engineered landfill barriers often consist of a combination of geosynthetics and mineral layers. Even though numerical modelling software is applied during the landfill design process, a lack of data about mechanical performance of landfill barriers is available to validate and calibrate those models. Instrumentation has been installed on a landfill site to monitor multilayer landfill lining system physical performance. The lining system comprises of a compacted clay layer overlaid by high density polyethylene geomembrane, geotextile and sand. Data recorded on the site includes: geosynthetic displacements (extensometers), strains (fibre optics, Demec strain gauges, extensometers) and stresses imposed on the liner (pressure cells). In addition, temperature readings were collected by a logger installed at the surface of the geomembrane, at the clay surface using pressure cell thermistors and air temperature using a thermometer. This paper presents readings collected throughout a period of three years and compares this measured performance with the corresponding numerical modelling of the lining system for stages during construction. Numerical modelling predictions of lining system behaviour during construction are comparable with the measurements when the geosynthetics are covered soon after placement, however, where the geosynthetics are left exposed to the sun for an extended period of time, in situ behaviour of the geosynthetics cannot be replicated by the numerical analysis. This study highlights the significant influence of the effect of temperature on geosynthetics displacements. A simple thermal analysis of the exposed geosynthetics is used to support the explanation for observed behaviour.
机译:低渗透性工程垃圾掩埋屏障通常由土工合成材料和矿物层组成。即使在填埋场设计过程中使用了数值建模软件,也缺少有关填埋场屏障机械性能的数据来验证和校准这些模型。仪器已安装在垃圾填埋场,以监控多层垃圾填埋衬里系统的物理性能。衬里系统由高密度聚乙烯土工膜,土工布和沙子覆盖的压实粘土层组成。现场记录的数据包括:土工合成位移(引伸计),应变(光纤,Demec应变仪,引伸计)和施加在衬管上的应力(压力盒)。此外,温度读数由安装在土工膜表面,黏土表面,使用压力传感器和热敏电阻的记录仪收集,并使用温度计测量空气温度。本文介绍了在过去三年中收集的读数,并将此测得的性能与相应的衬砌系统在施工期间的数值模型进行了比较。土工合成材料在放置后立即被覆盖的情况下,施工期间衬砌系统行为的数值模拟预测与测量结果相当,但是,如果土工合成材料长时间暴露在阳光下,则无法复制土工合成材料的原位行为通过数值分析。这项研究突出了温度对土工合成材料位移的重大影响。对裸露的土工合成材料进行简单的热分析可支持对观察到的行为的解释。

著录项

  • 来源
    《Geotextiles and Geomembranes》 |2014年第3期|224-235|共12页
  • 作者单位

    CICE, School of Civil and Building Engineering, Loughborough University, LE11 3TU, UK,FCC Environment Ltd, Ground Floor West, 900 Pavilion Drive, Northampton NN4 7RG, UK;

    School of Civil and Building Engineering, Loughborough University, LE11 3TU, UK;

    School of Civil and Building Engineering, Loughborough University, LE11 3TU, UK;

    Golder Associates (UK) Ltd, Nottingham NG12 5BL, UK;

    Golder Associates (UK) Ltd, Nottingham NG12 5BL, UK;

  • 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

    Landfill lining system; Geosynthetics; Monitoring; Numerical modelling; Geomembrane wrinkles;

    机译:垃圾填埋衬里系统;土工合成材料;监控;数值建模;土工膜皱纹;
  • 入库时间 2022-08-18 00:12:53

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