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Potential anti-vibration pavements with damping layer: Finite element (FE) modeling, validation, and parametrical studies

机译:具有阻尼层的潜在防振路径:有限元(FE)建模,验证和参数研究

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摘要

Vibrations induced by traffic are of concern for road authorities due to disturbance on the population, and the damage of buildings and structures. In the field of pavement engineering, the anti-vibration paving technologies by the so-called damping layer are under investigation to avoid the generation of excessive vibration and contains propagation. To more fully examine the effectiveness and potential of such a damping layer in the application of anti-vibration pavement, numerical simulations based on a two-dimensional (2D) finite element (FE) model is conducted. The method of determining Rayleigh damping parameters is proposed to more accurately characterize the attenuation of vibration in the road pavements. Sensitivity analysis of varying monitored points and varying loads are performed. Several important parameters such as the damping layer position and thickness, damping ratio are evaluated as well. By the use of this FE simulation to model the vibration response induced by traffic, the costly construction mistakes and field experimentation can be avoided. (C) 2021 Elsevier Ltd. All rights reserved.
机译:由于对人口的扰动以及建筑物和结构的损害,交通造成的振动对道路当局有所关注。在路面工程领域,所谓的阻尼层的防振铺技术正在调查中,以避免产生过度振动并含有传播。为了更全面地检查这种阻尼层的抗振动路面的有效性和潜力,进行了基于二维(2D)有限元(FE)模型的数值模拟。提出了确定瑞利阻尼参数的方法,以更准确地表征道路路面中振动的衰减。执行改变监测点和变化负荷的灵敏度分析。还评估了几种重要参数,例如阻尼层位置和厚度,阻尼比。通过使用该FE模拟来模拟交通引起的振动响应,可以避免昂贵的建设错误和现场实验。 (c)2021 elestvier有限公司保留所有权利。

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