首页> 外文期刊>Canadian Geotechnical Journal >Design and construction of a compacted clay liner in cover system of a municipal solid waste (MSW) landfill using nonstandard procedures
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Design and construction of a compacted clay liner in cover system of a municipal solid waste (MSW) landfill using nonstandard procedures

机译:使用非标准程序的城市固体废物(MSW)垃圾填埋场压实粘土衬里的设计与施工

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摘要

Design and construction of a mineral barrier layer involve many experimental and technological aspects. A specific soil water content and laboratory compaction energy, which are required to obtain permeability values according to the national regulation in force, must be determined. It is also necessary to control water content, compaction energy, and permeability of the liner actually compacted in situ. This paper shows how a compacted mineral barrier mainly composed of silty clay soil (the excavated soil is a natural but potentially re-usable waste product) was put in place to cover a large municipal solid waste (MSW) landfill and compacted using a heavy dumper, capable of achieving an adequate compaction degree. The in situ hydraulic properties of the liner were compared with those obtained by laboratory testing and to the limits imposed by the Italian regulation. The actual compaction degree was checked by in situ tests. Hydraulic conductivity tests were carried out in situ, using Boutwell and Guelph permeameters, and in the laboratory using rigid wall and flexible wall permeameters. In situ testing provided more realistic permeability values than laboratory ones and demonstrated that the actual construction procedure used was effective to obtain the design targets.
机译:矿物阻挡层的设计和构造涉及许多实验和技术方面。必须确定特定的土壤水含量和实验室压实能量,这必须根据国家调节获得渗透率值。还需要控制衬里的含水量,压实能量和衬里的渗透性原位压实。本文展示了压实的矿物屏障主要由粉质粘土土壤(挖掘土是一种自然而是潜在的可重复使用的废品),以覆盖大型市政固体废物(MSW)垃圾填埋场,并使用沉重的卸液器压实,能够实现足够的压实程度。将衬里的原位液压性能与通过实验室检测获得的那些和意大利调控所施加的限制进行比较。通过原位测试检查实际压实程度。使用Boutwell和Guelph Permemets,以及使用刚性壁和柔性壁透视计的实验室进行液压导电性试验。原位测试提供的比实验室更现实的渗透率值,并证明所使用的实际施工程序是有效的,以获得设计目标。

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