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首页> 外文期刊>Interaction and Multiscale Mechanics: An International Journal >Soil-structure interaction analysis of beams resting on multilayered geosynthetic-reinforced soil
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Soil-structure interaction analysis of beams resting on multilayered geosynthetic-reinforced soil

机译:多层土工加筋土上梁的土-结构相互作用分析

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摘要

In this paper, soil-structure interaction analysis has been presented for beams resting on multilayered geosynthetic-reinforced granular fill-soft soil system. The soft soil and geosynthetic reinforcements are idealized as nonlinear springs and elastic membranes, respectively. The governing differential equations are solved by finite difference technique and the results are presented in non-dimensional form. It is observed from the study that use of geosynthetic reinforcement is not very effective for maximum settlement reduction in case of very rigid beam. Similarly the reinforcements are not effective for shear force reduction if the granular fill has very high shear modulus value. However, multilayered reinforced system is very effective for bending moment and differential settlement reduction.
机译:本文对多层土工合成纤维增强粒状填充软土系统上的梁进行了土-结构相互作用分析。软土和土工合成材料的增强材料分别理想化为非线性弹簧和弹性膜。用有限差分技术求解控制微分方程,结果以无量纲形式表示。从研究中观察到,在非常刚性的梁情况下,使用土工合成材料加固对于最大程度减少沉降不是十分有效。类似地,如果粒状填充物具有非常高的剪切模量值,则增强材料对于减小剪切力无效。但是,多层增强系统对于弯矩和减少差异沉降非常有效。

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