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Original Articles

Life cycle cost comparison of highways with perpetual and conventional pavements

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Pages 553-568 | Received 25 Feb 2011, Accepted 21 Sep 2011, Published online: 25 Oct 2011

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Read on this site (4)

Ali Nahvi, Yang Zhang, Ali Arabzadeh, Sharif Y. Gushgari, Halil Ceylan, Charles T. Jahren, Douglas D. Gransberg & Sunghwan Kim. (2019) Economics of upgrading gravel roads to Otta seal surface. Applied Economics 51:44, pages 4820-4832.
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João Santos, James Bryce, Gerardo Flintsch & Adelino Ferreira. (2017) A comprehensive life cycle costs analysis of in-place recycling and conventional pavement construction and maintenance practices. International Journal of Pavement Engineering 18:8, pages 727-743.
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Amirhosein Jafari & Vanessa Valentin. (2015) Decision-making life-cycle cost analysis model for energy-efficient housing retrofits. International Journal of Sustainable Building Technology and Urban Development 6:3, pages 173-187.
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Iman Mirzadeh, Ali Azhar Butt, Susanna Toller & Björn Birgisson. (2014) Life cycle cost analysis based on the fundamental cost contributors for asphalt pavements. Structure and Infrastructure Engineering 10:12, pages 1638-1647.
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Articles from other publishers (20)

Chuan Lu, Mulian Zheng, Yuan Gao, Xiaoyan Ding, Wenwu Zhang & Wang Chen. (2023) Study of long‐term skid and wear resistance of waterborne epoxy resin‐ SBR compound modified emulsified asphalt microsurfacing . Journal of Applied Polymer Science.
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Wang Chen & Xian-Xun Yuan. (2023) Eco-efficiency assessment of long-life asphalt pavement technologies. Transportation Research Part D: Transport and Environment 122, pages 103874.
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Rodrigo Polo-Mendoza, Otto Mora, Jose Duque, Emilio Turbay, Gilberto Martinez-Arguelles, Luis Fuentes, Oswaldo Guerrero & Sergio Perez. (2023) Environmental and economic feasibility of implementing perpetual pavements (PPs) against conventional pavements: A case study of Barranquilla city, Colombia. Case Studies in Construction Materials 18, pages e02112.
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Rahul Kumar & Sunil Sharma. (2022) Perpetual Flexible Pavement vs. Rigid Pavement: An Economic and Environmental Cost Comparison. IOP Conference Series: Earth and Environmental Science 1084:1, pages 012053.
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Lubinda F. Walubita, Gilberto Martinez-Arguelles, Rodrigo Polo-Mendoza, Sang Ick-Lee & Luis Fuentes. (2022) Comparative Environmental Assessment of Rigid, Flexible, and Perpetual Pavements: A Case Study of Texas. Sustainability 14:16, pages 9983.
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Ming Zhang, Chong Wang, Lulu Fan & Junyan Yi. (2022) Decision-Making for Typical Pavement Structure Based on Life-Cycle Economic Evaluation and Key Performance Indicators. Coatings 12:8, pages 1124.
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Ying FangZhengqi Zhang, Suqing Wang, Jianhua YangXinjun Li. (2022) Determination of Minimum Dynamic Modulus (E*) of High Modulus Asphalt Concrete Applied to Semirigid Base Asphalt Pavement. Journal of Materials in Civil Engineering 34:1.
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Changbo Liu, Zhendong Qian, Yang Liao & Haisheng Ren. (2021) A Comprehensive Life-Cycle Cost Analysis Approach Developed for Steel Bridge Deck Pavement Schemes. Coatings 11:5, pages 565.
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Omar Faruqe Hamim, Saidis Salekin Aninda, Md. Shamsul Hoque & Md. Hadiuzzaman. (2020) Suitability of pavement type for developing countries from an economic perspective using life cycle cost analysis. International Journal of Pavement Research and Technology 14:3, pages 259-266.
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X. Y. Jiang, X. R. Yao & S. N. Lyu. 2021. Proceedings of the 25th International Symposium on Advancement of Construction Management and Real Estate. Proceedings of the 25th International Symposium on Advancement of Construction Management and Real Estate 1263 1274 .
Brundaban Beriha & Umesh Chandra Sahoo. 2021. Recent Developments in Sustainable Infrastructure. Recent Developments in Sustainable Infrastructure 1061 1070 .
B. Moins, C. France, W. Van den bergh & A. Audenaert. (2020) Implementing life cycle cost analysis in road engineering: A critical review on methodological framework choices. Renewable and Sustainable Energy Reviews 133, pages 110284.
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Chang Liu, Simaan AbouRizkDavid MorleyZhen Lei. (2020) Data-Driven Simulation-Based Analytics for Heavy Equipment Life-Cycle Cost. Journal of Construction Engineering and Management 146:5.
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Mohammadreza Sabouri. (2020) An investigation on perpetual asphalt pavements in Minnesota. International Journal of Pavement Research and Technology 13:3, pages 247-254.
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Ali Nahvi, Yang Zhang, Ali Arabzadeh, Halil Ceylan, Sunghwan Kim, Douglas D. Gransberg, Charles T. Jahren & Sharif Y. Gushgari. (2019) Deterministic and stochastic life-cycle cost analysis for Otta seal surface treatment on low volume roads. International Journal of Pavement Research and Technology 12:1, pages 101-109.
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Marco Pasetto, Emiliano Pasquini, Giovanni Giacomello & Andrea Baliello. (2017) Life-cycle assessment of road pavements containing marginal materials: Comparative analysis based on a real case study. Life-cycle assessment of road pavements containing marginal materials: Comparative analysis based on a real case study.
Animesh Das. 2017. Sustainability Issues in Civil Engineering. Sustainability Issues in Civil Engineering 61 71 .
Wei Cao, Amirhossein Norouzi & Y. Richard Kim. (2016) Application of viscoelastic continuum damage approach to predict fatigue performance of Binzhou perpetual pavements. Journal of Traffic and Transportation Engineering (English Edition) 3:2, pages 104-115.
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Rita Kleizienė. 2016. Nestandžios dangos konstrukcijos modeliavimas įvertinant tampriai klampias asfalto savybes. Nestandžios dangos konstrukcijos modeliavimas įvertinant tampriai klampias asfalto savybes.
Atekelt Abebe Ketema, Markus Lechner, Seifu Admassu Tilahun & Guenter Langergraber. (2015) Development of cost functions for water supply and sanitation technologies: case study of Bahir Dar and Arba Minch, Ethiopia. Journal of Water, Sanitation and Hygiene for Development 5:3, pages 502-511.
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