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Numerical Investigations on the Load Distribution over the Geogrid of a Basal Reinforced Piled Embankment under Cyclic Loading

机译:循环载荷下基层堆积堤坝土工格栅对载荷分布的数值研究

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The application of basal reinforced piled embankments and earth structures is an approved method particularly in traffic route engineering as technique for transferring static and variable loads on soil layers with low bearing capacity (e.g. soft clay) into deeper stiffer soil layers. Amongst others like CUR 226 and BS 8006 the EBGEO (Recommendations for Design and Analysis of Earth Structures using Geosynthetics Reinforcements) of the German Society for Geotechnics e.V. (DGGT) provides recommendations on calculation, design and execution of reinforced piled earth structures. These recommendations are based on specific geometrical, mechanical and load related boundary conditions, which are not fully transferable to all geotechnical applications. For traffic route engineering the objective is often to minimize the height of the bearing layer of the reinforced earth structure to a technical optimum. For a reinforced base layer it becomes essential, to predict the stability of the arch also due to cyclic loading as well as effects of surface deformation of the bearing layer in a reliable way. The paper presents the results of a three dimensional numerical simulation of a single-layered reinforced piled embankment under quasi-static cyclic loading and compares the stress distribution over the geogrid to current analytical methods.
机译:基础加强堆积的堤防和地球结构的应用是一种批准的方法,特别是在交通路线工程中作为用于在具有低承载力(例如软粘土)的土壤层上传递静态和可变载荷的技术,进入更深的纤巧的土壤层。在类似CUR 226和BS 8006等中的EBGEO(使用地球合子增援的地球结构的设计和分析)的德国社会为岩土工程学会E.V。 (DGGT)提供了有关钢筋堆积地球结构的计算,设计和执行的建议。这些建议基于特定的几何,机械和载荷相关边界条件,这些边界条件不完全转移到所有岩土应用。对于交通路线工程,目的往往是为了使加强地球结构的轴承层的高度最小化至技术最佳。对于增强基层,它变得必不可少,以预测拱的拱门的稳定性也是由于循环负载以及轴承层的表面变形以可靠的方式的影响。本文介绍了在准静态循环加载下单层加固堆堤的三维数值模拟的结果,并将土工格栅上的应力分布与电流分析方法进行比较。

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