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Articles

Baseline rolling resistance for tires’ on-road fuel efficiency using finite element modeling

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Pages 424-432 | Received 17 Jul 2015, Accepted 23 Jul 2015, Published online: 29 Oct 2015

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Matteo Pettinari, Imad L. Al-Qadi, Hasan Ozer & Erik Nielsen. (2023) Optimised durable pavement rolling resistance. Road Materials and Pavement Design 24:sup1, pages 279-289.
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Zhaojie Sun, W.A.A.S. Premarathna, Kumar Anupam, Cor Kasbergen & Sandra M.J.G. Erkens. (2024) A state-of-the-art review on rolling resistance of asphalt pavements and its environmental impact. Construction and Building Materials 411, pages 133589.
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Jukka Hyttinen, Rickard Österlöf, Lars Drugge & Jenny Jerrelind. (2022) Constitutive rubber model suitable for rolling resistance simulations of truck tyres. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 237:1, pages 174-192.
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Angeli Jayme & Imad L. Al-Qadi. (2022) Contact Stress and Rolling Loss Estimation via Thermomechanical Interaction Modeling of a Truck Tire on a Pavement Layer. Journal of Engineering Mechanics 148:12.
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W.A.A.S. Premarathna, J.A.S.C. Jayasinghe, P. Gamage, C.D. Senanayake, K.K. Wijesundara & R.R.M.S.K. Ranatunga. (2022) Analysis of factors influencing on performance of solid tires: Combined approach of Design of Experiments and thermo-mechanical numerical simulation. European Journal of Mechanics - A/Solids 96, pages 104680.
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Pouria Ahmadi, Mehrdad Raeesi, Sina Changizian, Aidin Teimouri & Alireza Khoshnevisan. (2022) Lifecycle assessment of diesel, diesel-electric and hydrogen fuel cell transit buses with fuel cell degradation and battery aging using machine learning techniques. Energy 259, pages 125003.
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Yunfei Ge, Yifei Yan, Xiangzhen Yan & Zhaohong Meng. (2022) Extending the tire dynamic model range of operating conditions based on finite element method. Advances in Mechanical Engineering 14:3, pages 168781322210854.
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Yangmin DingHao Wang, Junyu Qian & Haichao Zhou. (2021) Evaluation of Tire Rolling Resistance from Tire-Deformable Pavement Interaction Modeling. Journal of Transportation Engineering, Part B: Pavements 147:3.
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Pu Lyu, Peirong (Slade) Wang, Yuanyuan Liu & Yuanqing Wang. (2021) Review of the studies on emission evaluation approaches for operating vehicles. Journal of Traffic and Transportation Engineering (English Edition) 8:4, pages 493-509.
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Martin Pexa, Daniel Mader, Jakub Čedík, Bohuslav Peterka, Miroslav Müller, Petr Valášek & Sergej Hloch. (2020) Experimental verification of small diameter rollers utilization in construction of roller test stand in evaluation of energy loss due to rolling resistance. Measurement 152, pages 107287.
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Arturo F. Espinoza-LuqueImad L. Al-QadiHasan OzerMatteo Pettinari. (2019) Laboratory Characterization of Low–Rolling Resistance Danish Stone-Matrix Asphalt. Journal of Transportation Engineering, Part B: Pavements 145:1, pages 04018060.
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João Paulo C. Araújo, Carlos A.O. Palha, Francisco F. Martins, Hugo M.R.D. Silva & Joel R.M. Oliveira. (2019) Estimation of energy consumption on the tire-pavement interaction for asphalt mixtures with different surface properties using data mining techniques. Transportation Research Part D: Transport and Environment 67, pages 421-432.
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Youqun Zhao, Xianbin Du, Fen Lin, Qiang Wang & Hongxun Fu. (2018) Static stiffness characteristics of a new non-pneumatic tire with different hinge structure and distribution. Journal of Mechanical Science and Technology 32:7, pages 3057-3064.
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