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Original Articles

Analysis of Influences on As-built Pavement Roughness in Asphalt Overlays

Pages 181-192 | Received 31 Oct 2002, Published online: 31 Jan 2007

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Rodrigo Díaz-Torrealba, José Ramón Marcobal & Juan Gallego. (2022) Modelling asphalt overlay as-built roughness based on profile transformation. Case for wheeled paver laydown operation. International Journal of Pavement Engineering 0:0, pages 1-17.
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In Bae Kim, Ki Hoon Moon & Augusto Cannone Falchetto. (2023) Exploratory Field and Laboratory Investigation on the Use of Noncontact Digital Ski Sensor in the South Korea Expressway Network. Advances in Civil Engineering 2023, pages 1-14.
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Amir Beketov & Shakhnoza Khalimova. (2023) Impact of Roughness and Friction Properties of Road Surface of Urban Streets on the Traffic Safety. Communications - Scientific letters of the University of Zilina 25:3.
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Abdulgazi Gedik. (2023) A Retrospective Study Quantifying the Effects of Mixture Design and Constituent Properties on Asphalt Pavement Roughness. Journal of Materials in Civil Engineering 35:1.
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Adriana Vargas-Nordcbeck & Anthony Brenes-Calderón. (2022) Effect of Mill and Thin Overlays on Roughness for Pavements in Cold Climate Locations. Transportation Research Record: Journal of the Transportation Research Board 2676:9, pages 202-215.
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Chunfu Xin, Hua Yin, Rongchang Wang & Zeyang Rong. (2022) Forecast of post-overlay flexible pavement roughness progression: a random coefficient linear regression with autocorrelation model. Intelligent Transportation Infrastructure 1.
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Aioub H. Guha & Gabriel J. Assaf. 2019. Testing and Characterization of Asphalt Materials and Pavement Structures. Testing and Characterization of Asphalt Materials and Pavement Structures 136 150 .
Abraham Bae, Hae Sung Lee & Dae Jin Jung. (2018) Paver Sensor System Performances on the Initial Smoothness of HMA Pavement. International Journal of Highway Engineering 20:5, pages 13-21.
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Ye Yu & Lu Sun. (2018) Effect of overlay thickness, overlay material, and pre-overlay treatment on evolution of asphalt concrete overlay roughness in LTPP SPS-5 experiment: A multilevel model approach. Construction and Building Materials 162, pages 192-201.
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Abraham Bae, David Lee & Jun Yew Tan. (2016) Smoothness improvement by HMA overlay on very rough surface in urban tunnel expressway. KSCE Journal of Civil Engineering 21:6, pages 2177-2185.
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Ohhoon Kwon, Hyung Suk Lee, James Greene, Bouzid Choubane & Richard M. Hewitt. (2016) Probabilistic Analysis to Quantify the Effect of the Use of a Material Transfer Device on a Smoothness Pay Incentive. Transportation Research Record: Journal of the Transportation Research Board 2591:1, pages 103-111.
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Shawn S. HungArash RezaeiJohn T. Harvey. (2014) Effects of Milling and Other Repairs on Smoothness of Overlays on Asphalt Pavements. Transportation Research Record: Journal of the Transportation Research Board 2408:1, pages 86-94.
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Hui Wang, Zhang Chen & Lijun Sun. (2013) Pavement Roughness Evaluation for Urban Road Management. Pavement Roughness Evaluation for Urban Road Management.
Ellie (Elham) H. FiniMahour Mellat-Parast. (2012) Effect of Pavement Type on Overlay Roughness Progression. Journal of Transportation Engineering 138:12, pages 1558-1562.
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Andreas LoizosVasilis PapavasiliouChristina Plati. (2007) Early-Life Performance of Cold-in-Place Pavement Recycling with Foamed Asphalt Technique. Transportation Research Record: Journal of the Transportation Research Board 2005:1, pages 36-43.
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