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Application of geosynthetics in the construction of roads and railways: yesterday - today - tomorrow

机译:土工合成材料在公路和铁路建设中的应用:昨天-今天-明天

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Geosynthetics have been successfully used for decades in the construction of roads and railways. They fulfil almost all classical functions like separation, protection, filtration, drainage, sealing and reinforcement. In recent time the scope of application has been extended significantly by the construction of steep slopes and geogrid reinforced bridge abutments, the crossing of areas with soft soil by using geosynthetic encased sand columns and the bridging of areas susceptible to sinkholes. Particularly for the last case geosynthetics with additional features have been developed allowing a permanent monitoring of the deformations. The development of such intelligent geosynthetics with integrated sensors is by no means not at its end. Geosynthetics of the future will be equipped with such additional functions enabling a permanent and non-destructive monitoring of structures built with geosynthetics. In the field of reinforcement applications structures with geosynthetics show significant advantages in terms of economic and ecological aspects against classical concrete structures. It is also well known from large scale experiments and field tests that geosynthetic reinforced constructions have a much higher bearing capacity than calculated and that the deformations are much lower than expected. Therefore, it is quite evident that the compound behavior of geosynthetic and soil is not yet completely understood. Recent research on this topic using large scale triaxial- and biaxial- tests combined with a modern method of visualization of the movement of the soil particles tries to fill this gap.
机译:土工合成材料已成功用于公路和铁路建设数十年。它们满足几乎所有经典功能,例如分离,保护,过滤,排水,密封和加固。近年来,通过修建陡峭的斜坡和土工格栅加固的桥台,通过使用土工合成材料包裹的砂柱穿过软土,以及将易陷井的区域桥接起来,大大扩大了应用范围。特别是对于最后一种情况,已经开发了具有附加功能的土工合成材料,可以永久监控变形。这种集成了传感器的智能土工合成材料的发展绝非止步不前。未来的土工合成材料将配备此类附加功能,从而能够对用土工合成材料建造的建筑物进行永久性和非破坏性的监控。在钢筋应用领域,与传统混凝土结构相比,具有土工合成材料的结构在经济和生态方面显示出显着优势。从大规模实验和现场测试还众所周知,土工合成材料的增强结构具有比计算的高得多的承载能力,并且变形比预期的低得多。因此,很明显地,土工合成材料和土壤的复合行为还没有被完全理解。最近使用大型三轴和双轴试验,结合可视化土壤颗粒运动的现代方法,对该问题进行了研究,试图填补这一空白。

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