The vibrations induced by surface irregularities in road pavements – a Matlab® approach
Вибрации, вызываемые неровностями поверхности дорожных покрытий: подход на основе MATLAB®
2013-12-19
SCID: 54.1/pk6j4r4x
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ISO 8608MatlabQuarter Car Modeldynamic load increaseroad pavement roughness
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Abstract (AI)
Abstract Purpose The paper tackles the theme of evaluating dynamic load increases that the vehicle transfers to the road pavement, due to the generation of vibration produced by surface irregularities. Method The study starts from the generation, according to the ISO 8608 Standard, of different road roughness profiles characterized by different damage levels. In particular, the first four classes provided by ISO 8608 were considered. Subsequently, the force exchanged between the pavement and three typologies of vehicles (car, bus and truck) has been assessed by implementing, in Matlab®, the QCM (Quarter Car Model) characterized by a quarter vehicle mass and variable speed from 20 to 100 km/h. The analysis allows determining the amount of dynamic overload that causes the vibrational stress. Results/Conclusions The paper shows how this dynamic overload may be predetermined as a function of the pavements surface degradation. This is a useful reference for the purposes of designing and maintaining road pavements.
Key Findings
1
A Matlab® Quarter Car Model evaluates pavement–vehicle force exchange for cars, buses, and trucks at speeds from 20 to 100 km/h.
2
Dynamic overload can be predetermined from pavement surface degradation, supporting road pavement design and maintenance decisions.
3
The analysis quantifies dynamic overload transferred to pavements as a consequence of surface irregularity-induced vibration.
4
The study models road-induced vibrations using ISO 8608 roughness profiles spanning the first four pavement damage classes.
Research Object
vehicle–road pavement systems traversing road surfaces with ISO 8608 roughness levels
Research Subject
vibration-induced dynamic overload transferred from vehicles to pavements as a function of surface roughness, vehicle type, and speed
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2013-12-19
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