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Analysis of geosynthetic reinforced soil structures with orthogonal anisotropy

机译:正交各向异性的土工加筋土结构分析

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Reinforced soil with geosynthetics as a composite material represents significant orthogonally anisotropic properties. However, current analytical methods usually treat the soil and reinforcement separately, which is not true of practical situations. Therefore, it is difficult to use these methods to study the real effects of the reinforcement. This paper presents an analytical model based on the theory of elasticity for orthogonally anisotropic materials that can be used in analyzing reinforced soil structures with geosynthetics. The stresses and deformations at any point within the reinforced soil structure can be determined by the proposed model. The capabilities of the model have been illustrated by application to an example problem involving a physical model test of a geosynthetic reinforced soil structure. The results of the model prediction are compared with those obtained from the model tests as well as finite element analysis. It is shown that the results of the analytical solution are in good agreement with those of the physical model tests and the finite element analysis.
机译:以土工合成材料作为复合材料的加筋土壤具有明显的正交各向异性。但是,当前的分析方法通常将土壤和钢筋分开处理,这在实际情况中是不正确的。因此,很难使用这些方法来研究钢筋的实际效果。本文提出了一种基于弹性理论的正交各向异性材料分析模型,该模型可用于用土工合成材料分析加筋土结构。所提出的模型可以确定加筋土结构内任何点的应力和变形。通过应用到涉及土工增强土结构的物理模型测试的示例问题,已说明了模型的功能。将模型预测的结果与从模型测试以及有限元分析获得的结果进行比较。结果表明,解析解的结果与物理模型试验和有限元分析的结果吻合良好。

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