Random Dynamic Response Analysis of Asphalt Pavement Based on the Vehicle-Pavement Interaction

Article Preview

Abstract:

In order to analyze the dynamic response of asphalt pavement under vehicle load, the random characteristic of pavement roughness was considered and the vehicle was simplified into 1/2 model with four freedom degrees when establishing the dynamic load model. Then the sequence of the random dynamic load coefficient was obtained by developing a MATLAB program based on the incremental Newmark-β method. Based on the plane strain assumption, a two-dimensional layered finite element model of asphalt pavement was established by ABAQUS software. Then the dynamic load coefficient was used to modify tire pressure that would be applied on the ABAQUS model. Then dynamic response rule of the model and how it was effected by vehicle speed were studied under random load. The results show that under the condition of random load, dynamic response of the pavement structure exhibiting a fluctuation trend as vehicle speed increases and the dynamic response characteristics of each point is different.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1288-1297

Citation:

Online since:

March 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] JTG D 50-2006, Code for design of highway asphalt pavement[S].

Google Scholar

[2] CAO Y M, XIA H, LOMBAERT G. Solution of Moving-load-induced Soil Vibrations Based on the Betti-Rayleigh Dynamic Reciprocal Theorem[J]. Soil Dynamics and Earthquake Engineering, 2010, 30(6): 470-480.

DOI: 10.1016/j.soildyn.2010.01.003

Google Scholar

[3] CAI Yuan-qiang, CAO Zhi-gang, SUN Hong-lei, et al. Dynamic Response of Pavements on Poroelastic Half-space Soil Medium to a Moving Traffic Load [J]. Computers and Geotechnics, 2009, 36(1/2): 52-60.

DOI: 10.1016/j.compgeo.2008.03.007

Google Scholar

[4] PEI Jian-zhong, WU Hao, CHEN Yong, et al. Dynamic Response Characteristics of Asphalt Pavement Under Multi-axle Moving Load[J]. China Journal of Highway and Transportation, 2011, 28(5): 26-31.

Google Scholar

[5] LIU Jun-qing, WANG Bao-shi, CHEN Cheng-cheng, et al. Dynamic Response Analysis of Stress in Asphalt Concrete Pavement Structure Under Vehicle Load[J]. Highway, 2011, 6(6): 13-18.

Google Scholar

[6] DONG Ze-jiao, LIU Mei-li, ZHENG Hao, et al. Dynamic Mechanical Analysis of Asphalt Pavement Based on Cross-isotropic Properties[J]. China Journal of Highway and Transportation, 2012, 25(5): 18-23.

Google Scholar

[7] HUANG Bing, WU Yu, AI Chang-fa, et al. Influence of Structural Parameters on Dynamic Response of Asphalt Pavement[J]. Journal of Highway and Transportation Research and Development, 2013, 30(9): 8-12. (in Chinese).

Google Scholar

[8] LIU Xian-dong, DENG Zhi-dang, GAO Feng. Research on the method of simulating road roughness numerically[J]. Journal of Beijing University of Aeronautics and Astronautics, 2003, 29(9): 843-846. (in Chinese).

Google Scholar

[9] GB/T 7031-1986, The vehicle vibration input and the representation of pavement roughness[S].

Google Scholar

[10] WANG Wan-hong. Dynamic Analysis on Pavement Structure Based on the Vehicle-Road CouPling Mode[D]. Beijing: Beijing Jiaotong University, (2008).

Google Scholar

[11] LI Hao-yu, YANG Shao-pu, LI Shao-hua. Dynamical analysis of an asphalt pavement due to vehicle-road interaction[J]. Journal of Vibration and Shock, 2009, 28(4): 86-89.

Google Scholar

[12] DONG Ze-jiao, TAN Yi-qiu, OU Jin-ping. Dynamic response analysis of asphalt pavement under three-directional nonuniform moving load[J]. China Civil Engineering Journal, 2013, 46(6): 122-130.

Google Scholar

[13] XIA He. The dynamic interaction between vehicle and structure[M]. Beijing: Science Press, (2002).

Google Scholar