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Composite Filters of Geotextiles and Natural Materials for Critical Applications in Dam Engineering

机译:大坝工程中关键应用的土工织物和天然材料复合过滤器

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Structures of a geotechnical nature have been constructed for thousands of years and a brief review of this infrastructure over time shows that the use of filters and drains is a relatively recent development in a wide range of applications. The use of granular filter design criteria for sands and gravels has been common practice for a century whereas granular filter criteria for cohesive silts and clays evolved in the 1980s. It was at about this time that geotextiles as filters rapidly gained favor as use in many civil, environmental and mining applications. However their use as primary filters in critical applications such as the internal filters of embankment dams was not generally accepted, due to longevity concerns and construction considerations. A laboratory research programme and subsequent field investigation into the performance of both geotextile and granular filters is reported. This experience exposes the advantages and disadvantages of each filter material type. A world wide review of dam failures confirms the critical importance of preventing internal erosion or piping in critical applications especially during the first decade of service. Furthermore the use of filters and drains in critical applications such as in dams and in mono-waste disposal facilities requires filter systems to perform under diverse conditions of hydraulic gradient; wetting and drying; stress and strain; with varying quality of the permeating fluid. These conditions have an effect on the short and long term performance of filters and drains. This paper proposes the simultaneous employment of benefits from geotextile and from granular filter materials in composite filters in critical applications, such as the internal drainage of embankment dams and mono-waste disposal facilities. In such applications the geotextile serves as an adjunct to the granular filter and the granular filter supplements the geotextile filter performance, with resultant reduced risk of failure.
机译:具有岩土性质的结构已经建造了数千年,随着时间的流逝,对该基础设施的简要回顾表明,过滤器和排水装置的使用是在广泛应用中的相对较新的发展。在一个世纪以来,对沙子和砾石使用颗粒过滤器设计标准已成为一种普遍做法,而对于粘性淤泥和黏土,颗粒过滤器标准则在1980年代发展起来。大约在这个时候,作为过滤器的土工布在许多民用,环境和采矿应用中迅速受到青睐。然而,由于寿命和结构方面的考虑,它们在关键应用(如堤坝的内部过滤器)中用作主要过滤器的做法普遍不被接受。据报道,有一个实验室研究计划以及随后对土工织物和颗粒过滤器性能的现场调查。这种经验揭示了每种过滤器材料类型的优缺点。大坝故障的全球回顾证实了在关键应用中尤其是在服务的头十年中,防止内部侵蚀或管道的重要性。此外,在关键应用(例如大坝和单废物处理设施)中使用过滤器和排水管需要过滤器系统在不同的水力梯度条件下运行;润湿和干燥;压力和压力;具有不同质量的渗透液。这些条件会影响过滤器和排水管的短期和长期性能。本文提出了在关键应用中同时利用土工布和颗粒过滤材料在复合过滤器中的好处,例如堤坝的内部排水和单一废物处理设施。在这样的应用中,土工织物用作颗粒过滤器的辅助物,并且颗粒状过滤器补充了土工织物过滤器的性能,从而降低了发生故障的风险。

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    《Geo-Chicago》|2016年|326-331|共6页
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    K. R. Legge;

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