Determination of Equivalent Temperature for Asphalt Pavement Design in Vietnam
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- K. Kalita, P. Rajbongshi, Variability characterisation of input parameters in pavement performance evaluation. Road Materials and Pavement Design, 16 (2015) 172-185. doi:10.1080/14680629.2014.988171.
- P. Khamkhanpom, S. Deuanhaksa, Q.P. Nguyen, Q.T. Nguyen, X.Q. Le. Determination of Climate Zones for Bitumen Performance Grading Distribution Map in Laos. Singapore: Springer Nature Singapore. (2024), 296-303. doi:10.1007/978-981-97-1972-3_30.
- X.Q. Le, M.L. Nguyen, P. Hornych, Q.T. Nguyen, Analysis of LVE behaviour and fatigue damage evolution of asphalt pavements with different interface conditions in an accelerated full-scale experiment. International Journal of Pavement Engineering, 24(2) (2023) 2147522. doi:10.1080/10298436.2022.2147522.
- P. Hornych, J.P. Kerzreho, A. Chabot, D. Bodin, J.M. Balay, L. Deloffre. The LCPC’s ALT facility contribution to pavement cracking knowledge. in Proceedings of the 6th rilem international conference on Cracking in Pavements. Chicago, USA: Taylor & Francis Group. (2008), 13-23.
- F. Viola, C. Celauro, Effect of climate change on asphalt binder selection for road construction in Italy. Transportation Research Part D: Transport and Environment, 37 (2015) 40-47. doi:10.1016/j.trd.2015.04.012.
- M.S. Ranadive, A. Tapase, Pavement performance evaluation for different combinations of temperature conditions and bituminous mixes. Innovative Infrastructure Solutions, 1(1) (2016) 40. doi:10.1007/s41062-016-0040-9.
- D. Saliko, A. Ahmed, S. Erlingsson, Development and validation of a pavement temperature profile prediction model in a mechanistic-empirical design framework. Transportation Geotechnics, 40 (2023) 100976. doi:10.1016/j.trgeo.2023.100976.
- [1]- X.Q. Le, T.D. Chu, T.A. Vu, A case study on scenario-based optimization for axle load survey data selection for flexible pavement design in Vietnam. Transport and Communications Science Journal, 75(4) (2024) 1555-1566. doi:10.47869/tcsj.75.4.7.
- D. Rys, P. Burnos, Study on the accuracy of axle load spectra used for pavement design. International Journal of Pavement Engineering, 23(11) (2022) 3706-3715. doi:10.1080/10298436.2021.1915492.
- Y. Li, L. Liu, L. Sun, Temperature predictions for asphalt pavement with thick asphalt layer. Construction and Building Materials, 160 (2018) 802-809. doi:10.1016/j.conbuildmat.2017.12.145.
- X. Zhao, A. Shen, B. Ma, Temperature response of asphalt pavement to low temperatures and large temperature differences. International Journal of Pavement Engineering, 21(1) (2020) 49-62. doi:10.1080/10298436.2018.1435883.
- AFNOR, NFP 98-086. Dimensionnement structurel des chaussées routières - Application aux chaussées neuves, Association Française de Normalisation France: Paris. (2019).
- A. Claessen, J. Edwards, P. Sommer, P. Uge. Asphalt pavement design--the shell method. in Volume I of proceedings of 4th International Conference on Structural Design of Asphalt Pavements, Ann Arbor, Michigan, August 22-26, 1977. (1977).
- Austroads, Guide to pavement technology: part 2: pavement structural design. 4.4 ed. Sydney, Australia, 2024.
- I. Fi, L. Pethő, Calculation of the equivalent temperature of pavement structures. Periodica Polytechnica Civil Engineering, 52(2) (2008) 91-96. doi:10.3311/pp.ci.2008-2.05.
- TCCS 38:2022, Flexible Pavement Design - Specification and Guideline, Ministry of Transport Vietnam. (2022).
- TCVN, 13567:2022. Hot Mix Asphalt Pavement Layer - Construction and Acceptance Ministère de la science et de la technologie Vietnam. (2022).
- TCVN, 12818:2019. Hot mix Asphalt - Superpave Volumetric Mix Design, Ministère de la science et de la technologie Vietnam. (2019).
- TCVN, 13049:2020. Performance-graded asphalt binder- Specification, Ministère de la science et de la technologie Vietnam. (2020).
- P. Hornych, J. Balay, C. Mauduit, D. Bodin. Evaluation of the concept of equivalent temperature for pavement design. in Proceedings of the international conferences on the bearing capacity of roads, railways and airfields. (2013), 319-329.
- R. Gelaro, W. McCarty, M.J. Suárez, R. Todling, A. Molod, L. Takacs, C.A. Randles, A. Darmenov, M.G. Bosilovich, R. Reichle, K. Wargan, L. Coy, R. Cullather, C. Draper, S. Akella, V. Buchard, A. Conaty, A.M. da Silva, W. Gu, G.-K. Kim, R. Koster, R. Lucchesi, D. Merkova, J.E. Nielsen, G. Partyka, S. Pawson, W. Putman, M. Rienecker, S.D. Schubert, M. Sienkiewicz, B. Zhao, The Modern-Era Retrospective Analysis for Research and Applications, Version 2 (MERRA-2). Journal of Climate, 30(14) (2017) 5419-5454. doi:10.1175/JCLI-D-16-0758.1.
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