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Numerical simulation of falling/heavy weight deflectometer test considering linear viscoelastic behaviour in bituminous layers and inertia effects

机译:考虑沥青层中线性粘弹性行为和惯性效应的落/重偏转仪测试的数值模拟

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Falling (or Heavy) Weight Deflectometer (F/HWD) is a widely used non-destructive device for pavement evaluation. The falling mass system of this device can generate a load representative of a wheel. Deflections are monitored by geophones at several distances from the loading centre. Interpretation of F/HWD deflections is classically done using a static elastic method. However, the F/HWD test is clearly dynamic and the mechanical behaviour of bituminous materials is most likely linear viscoelastic at the temperature and strain conditions of the test. This paper aims at exploring the differences due to the consideration of dynamic and viscoelastic effects of the pavement structure in the numerical simulation of the F/HWD test. Deflections of an existing pavement structure were numerically simulated through a time-domain finite element method. Four numerical simulations are proposed: static elastic, dynamic elastic, static viscoelastic and dynamic viscoelastic. This study shows that dynamic and viscoelastic effects significantly affect time-history and peak values of simulated deflections.
机译:跌落(或重型)挠曲仪(F / HWD)是用于路面评估的广泛使用的非破坏性设备。该设备的下落质量系统可以产生代表车轮的负载。挠度由检波器在距装货中心几个距离处进行监控。 F / HWD挠度的解释通常使用静态弹性方法来完成。但是,F / HWD测试显然是动态的,并且在测试的温度和应变条件下,沥青材料的机械性能很可能是线性粘弹性的。本文旨在探讨在F / HWD试验数值模拟中考虑路面结构的动力和粘弹性效应而引起的差异。通过时域有限元方法对现有路面结构的变形进行了数值模拟。提出了四个数值模拟:静弹性,动弹性,静粘弹性和动态粘弹性。这项研究表明,动力和粘弹性效应显着影响了模拟挠度的时程和峰值。

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