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CHARACTERISATION OF MUNICIPAL SOLID WASTE MATERIALS FOR THE PURPOSE OF ENGINEERING DESIGN IN TRANSPORT INFRASTRUCTURE PROJECT

机译:运输基础设施项目工程设计目的的城市固体废料的特点

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Space restriction especially in the urban area has contributed to the reuse of landfill area, where Municipal Solid Waste (MSW) is disposed, for the purpose of infrastructure development. This type of development presents some significant challenges in the engineering design due to high variability of MSW properties and the uncertainty in relation to the application of conventional geotechnical engineering principle for the engineering design involving MSW materials. MSW materials are highly variable not only in different landfill sites, but they also are likely to vary over the distance and depths within a landfill site. In addition, the engineering properties of MSW material are influenced by a number of factors including the landfill age, constituents of landfill, placement method and the leachate recirculation. This variability along with a risk associated with the biological and chemical hazards arising from the direct exposure to the waste materials and toxic gas pose limitations in conventional (a) geotechnical site investigation and (b) laboratory testing of MSW. Therefore, characterisation of MSW for the engineering design needs to be carried out based on limited site specific information and published data. This paper presents a typical geotechnical investigation and characterisation of waste materials for the engineering design of a transport infrastructure considering the aforementioned limitations. A case study involving a proposed transport infrastructure over an active landfill site in NSW has been selected. A Geotechnical Site Investigation (SI) involving a sonic borehole drilling has been carried out with a primary objective of obtaining continuous samples for the observation of waste materials as opposed to the in-situ testing and drilling with poor recovery. In addition, test pit excavation and geophysical investigation have been carried out to gather more information to develop the geotechnical model. Various MSW materials recovered in the boreholes and test pits were thoroughly assessed on site during the SI to obtain the MSW composition including the proportion of each type of waste material using the method outlined in Landva and Clark (1990). This observation was then compared against the results of geophysical investigation. By using the outcome of SI, previous geotechnical investigation and settlement monitoring conducted about 30 years ago within the subject area and extensive published data on MSW properties including the Waste Compressibility Index, a comprehensive guide has been prepared to develop the design parameters for geotechnical design of the proposed rail embankment. This guide will be a useful tool for practicing engineers to develop geotechnical design parameters of landfill materials.
机译:特别是在城市地区的空间限制有助于重用垃圾填埋场,以便在基础设施开发的目的下处理市政固体废物(MSW)。由于MSW物业的高可变性以及与涉及MSW材料的工程设计的传统岩土工程原理的应用,这种类型的发展在工程设计中存在一些重大挑战。 MSW材料不仅在不同的垃圾填埋场,而且它们也可能在垃圾填埋场内的距离和深度方面变化。此外,MSW材料的工程性质受到许多因素的影响,包括垃圾填埋场,填埋场,放置法和渗滤液再循环的成分。这种可变性以及与在常规(a)岩土现场调查中的废料和毒性气体姿势限制和(b)的MSW的实验室检测中引起的生物和化学危害相关的风险。因此,需要基于有限的站点特定信息和发布数据来执行用于工程设计的MSW的表征。本文介绍了考虑到上述局限性的运输基础设施工程设计的典型岩土性调查和表征。选择了涉及拟议的运输基础设施在NSW中的有效垃圾填埋场网站上的案例研究。涉及声波钻孔钻井的岩土地点研究(SI)已经进行,主要目的是获得用于观察废料的连续样品,而不是出于原位测试和钻探恢复不良。此外,已经开展了测试坑挖掘和地球物理调查,以收集更多信息以开发岩土模型。在Si期间在现场进行彻底评估在钻孔和测试凹坑中回收的各种MSW材料,以获得包括使用Landva和Clark(1990)中概述的方法的每种类型废料的比例。然后将该观察与地球物理调查的结果进行比较。通过使用SI的结果,之前30年前在主题领域进行了大约30年前的岩土性调查和解决监测,并在包括废弃压缩性指数的MSW属性上进行广泛的公布数据,一项综合指南已准备好开发岩土设计的设计参数拟议的铁路路堤。本指南将成为练习工程师开发垃圾填埋材料岩土设计参数的有用工具。

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