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NEXT-GENERATION GEOSYNTHETIC CLAY LINERS FOR IMPROVED DURABILITY AND PERFORMANCE

机译:下一代土工合成粘土衬里,用于提高耐用性和性能

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Geosynthetic clay liners (GCLs) have gained widespread acceptance in many applications where natural soils have been used traditionally. Their competitive cost, high performance, and relative ease of installation are a few of the many reasons why GCLs have become so popular. However, while they offer numerous advantages over compacted clay liners, GCLs have vastly different engineering properties. Foremost among these differences is shear strength, which has been researched nearly to the exclusion of other design issues of equal importance. Not so extensively investigated is the long-term hydraulic performance of the GCL when exposed to commonly encountered leachates and liquids. This design issue requires an evaluation of the barrier component of GCLs―bentonite―upon exposure to various physical and chemical stresses over time. Given its unusual properties, bentonite is an inherently difficult material to evaluate. The purpose of this paper is to discuss bentonite as a long-term hydraulic barrier and to reveal a technological improvement in this important performance parameter.
机译:在传统上使用天然土壤的许多应用中,GeoSynthetic Clay衬垫(GCLS)在许多应用中获得了广泛的接受。他们的竞争成本,高​​性能和相对易于安装是GCLS变得如此受欢迎的许多原因中的一些原因。然而,虽然它们提供了众多优势,但GCLS具有巨大的工程性质。在这些差异中最重要的是剪切力量,这几乎研究了排除了相同的其他设计问题。没有如此广泛的研究是在暴露于通常遇到的渗滤液和液体时GCL的长期液压性能。这种设计问题需要评估GCLS-Bentonite的阻隔组分 - 随着时间的推移暴露于各种物理和化学胁迫。鉴于其不寻常的特性,膨润土是评估的本质上难以评估的材料。本文的目的是讨论膨润土作为长期液压屏障,并揭示了这一重要性参数的技术改善。

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