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Stability performance and interface shear strength of geocomposite drain/soil systems

机译:地理复合漏极/土壤系统的稳定性性能与界面剪切强度

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Landfill covers are designed as impermeable caps on top of waste containment facilities after the completion of landfill operations. Geocomposite drain (GD) materials consist of a geonet or geospacer (as a drainage core) sandwiched between non-woven geotextiles that act as separators and filters. GD provides a drainage function as part of the cover system. The stability performance of landfill cover system is largely controlled by the interface shear strength mobilized between the elements of the cover. If a GD is used, the interface shear strength properties between the upper surface of the GD and the overlying soil may govern stability of the system. It is not uncommon for fine grained materials to be used as cover soils. In these cases, understanding soil softening issues at the soil interface with the non-woven geotextile is important. Such softening can be caused by capillary break behaviour and build-up of water pressures from the toe of the drain upwards into the cover soil. The interaction processes to allow water flow into a GD core through the soil-geotextile interface is very complex. This paper reports the main behaviour of in-situ interface shear strength of soil-GD using field measurements on the trial landfill cover at Bletchley, UK. The soil softening at the interface due to soaked behaviour show a reduction in interface shear strength and this aspect should be emphasized in design specifications and construction control. The results also help to increase confidence in the understanding of the implications for design of cover systems.
机译:垃圾填埋场盖板设计为垃圾填埋场行动后的废物遏制设施的不透水盖。地理复合漏极(GD)材料由夹在非织造土工织物之间的地理孔或地球件(作为排水芯)组成,该无纺布土工织物充当分离器和过滤器。 GD提供了作为封面系统的​​一部分的排水功能。垃圾填埋场覆盖系统的稳定性性能主要由在盖子元件之间动员的界面剪切强度控制。如果使用GD,则GD的上表面和上覆土壤之间的界面剪切强度特性可以控制系统的稳定性。用作覆盖土壤的细粒材料并不罕见。在这些情况下,了解土壤界面的土壤软化问题与无纺布土工织物很重要。这种软化可以是由毛细血管断裂行为和水压从排水脚趾的堆积到覆盖土中引起的。允许水流通过土地地理界面的水流进入GD芯的相互作用过程非常复杂。本文报告了土壤 - GD原位界面剪切强度的主要行为在英国Bletchley的试用垃圾填埋场覆盖物使用现场测量。由于浸泡行为引起的界面处的土壤软化显示了界面剪切强度的降低,并且在设计规范和施工控制中应该强调这方面。结果还有助于增加对对覆盖系统设计的影响的信心。

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