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Limit analysis of the reinforced soil and modeling strength of solid waste in landfills using the concepts of soil reinforcement

机译:利用土壤加固的概念对填埋场中加筋土和固体废物建模强度的极限分析

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Engineered reinforcement of soils has revolutionized the methods for constructing soil retaining structures, man-made slopes, and development of foundation soils. Both the geosynthetic reinforcement in the form of geogrid or woven geotextiles and metal strips have been very successful in construction. Fiber reinforcement, while it caught the attention of some researchers, never proved to be as useful, and the amount of research generated on the topic today is disproportional to the utility of the method in engineering practice. Development of the models describing the strength of fiber-reinforced soils, however, forced engineers to consider such issues as the yield condition, flow rule, and anisotropy. All of these are important in considering stability of municipal solid waste landfill slopes. Although a comprehensive yield condition for municipal solid waste has not been developed yet, an effort is presented indicating how the existing methods describing reinforced soils can be used to develop an anisotropic yield condition suitable for the description of solid waste. It will be shown that a homogenization scheme, sometimes referred to as the principle of macro-homogeneity, is a useful tool in developing the yield surfaces suitable for fiber-reinforced composites, thus also for fibrous solid waste.
机译:工程化的土壤加固技术彻底改变了土壤保持结构,人造边坡和基础土壤开发的方法。土工格栅或机织土工织物形式的土工合成材料增强材料和金属条在建筑领域都非常成功。纤维增强虽然引起了一些研究者的注意,但从来没有被证明是有用的,而如今在该主题上进行的大量研究与该方法在工程实践中的实用性成正比。然而,描述纤维增强土壤强度的模型的开发迫使工程师考虑诸如屈服条件,流动规律和各向异性之类的问题。所有这些对于考虑城市生活垃圾填埋场边坡的稳定性都很重要。尽管尚未开发出用于市政固体废物的综合产量条件,但仍在进行努力,以表明如何使用现有的描述加筋土的方法来开发适于描述固体废物的各向异性产量条件。可以看出,均质化方案有时被称为宏观均质性原理,是开发适用于纤维增强复合材料,进而适用于纤维状固体废物的屈服面的有用工具。

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