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Analytical study of the dynamic response of a double-beam model for a geosynthetic-reinforced embankment under traffic loads

机译:荷载作用下土工加筋路堤双梁模型动力响应的分析研究

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摘要

In this paper, a double-beam model of a composite working system including an upper pavement structure under traffic loads, an embankment fill layer, a geosynthetic-reinforced mattress, and the lower soft soil over the roadbed is developed. In the model, the reinforced mattress layer surrounded by viscoelastic materials has been assumed to have finite bending stiffness and carry the self-weight of embankment fill and the transferred traffic load. Furthermore, the pavement structure and the geosynthetic-reinforced layer have been respectively idealized as the upper typical Euler-Bernoulli beam and the lower modified Euler-Bernoulli beam supported by a series of discretely distributed spring-dashpot systems with different stiffnesses and damping coefficients. Based on these assumptions, governing differential equations for the response of the double-beam system are derived by the perturbation theory. Finally, a parametric study has been undertaken to inquire the influence of the flexural rigidities ratio of two beams, the stiffness ratio of upper and lower soil layers, the height of the upper soil layer, velocity of the traffic load, and the damping ratio.
机译:本文研究了一种复合工作系统的双梁模型,该模型包括交通荷载作用下的上部人行道结构,路堤填充层,土工合成材料加筋的床垫以及路基上的下部软土。在模型中,被粘弹性材料包围的增强床垫层被假定为具有有限的弯曲刚度,并承载路堤填土的自重和转移的交通荷载。此外,路面结构和土工合成材料增强层分别被理想化为上部典型的欧拉-伯努利梁和下部改良的欧拉-伯努利梁,并由一系列具有不同刚度和阻尼系数的离散分布的弹簧-阻尼系统支撑。基于这些假设,通过微扰理论推导了双光束系统响应的控制微分方程。最后,进行了参数研究,以了解两根梁的抗弯刚度比,上下土层的刚度比,上土层的高度,交通荷载的速度以及阻尼比的影响。

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