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OPTIMUM PAVEMENT DESIGN FOR DISTRESS PERFORMANCE REQUIREMENTS

Rosca, Victoria Elena, Andrei, Radu, Teleman, Carmen Elena, Axinte, Andrei Octav

First published: 2016-06-28https://doi.org/10.5593/sgem2016/b21/s07.041View metrics

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Title
OPTIMUM PAVEMENT DESIGN FOR DISTRESS PERFORMANCE REQUIREMENTS
Authors
Rosca, Victoria Elena, Andrei, Radu, Teleman, Carmen Elena, Axinte, Andrei Octav
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 16th International Multidisciplinary Scientific GeoConference SGEM2016, Informatics, Geoinformatics and Remote Sensing
Publisher
Stef92 Technology
Year
2016
Pages
319-326
ISSN
1314-2704
ISBN
978-619-7105-58-2
Language
en
Publication type
Conference Paper
References24
  1. American Association of State and Highway Transportation Officials. AASHTO Guide for Design of Pavement Structures. Washington D.C., 1993.

  2. Dorobanţu S., Andrei R., Evolution of the design methodologies applied in pavement design, Ed. Societăţii Academice Matei-Teiu Botez, Iaşi, 2015.

  3. de la Garza J., Akyildiz S., Bish D., Krueger D., Network-level optimization of pavement maintenance renewal strategies, Advanced Engineering Informatics, vol. 25, no. 4, pp 699-712, 2011.

  4. Ferreira A. L., Meneses S. C. N., A multi-objective decision-aid tool for road network maintenance management’, 5th International Conference on Bituminous Mixture and Pavements, Thessaloniki, 1–3 June, 2011.

  5. Santos J., Ferreira, A., Pavement Design Optimization Considering Costs and M&R Interventions, Procedia - Social and Behavioral Sciences, vol. 53, pp 1182-1191, 2012.

  6. Abaza K., Abu-Eisheh S., An Optimum Design Approach for Flexible Pavements, International Journal of Pavement Engineering, vol. 4/issue 1, pp 1-11, 2003.

  7. Rouphail N., Minimum‐Cost Design of Flexible Pavements, Journal of Transportation Engineering, vol. 111/issue 3, pp 196-207, 1985.

  8. Ghanizadeh A.R., Fakhri M., Australian Journal of Basic and Applied Sciences, vol. 3/issue 3: 1652-1660, 2009.

  9. The Asphalt Institute, Thickness design – asphalt pavements for highways and streets, Manual, 1999.

  10. Rauhut B., Jordahl, B. Pavement Damage Function for Cost Allocation, vol. 3, Flexible Pavement Damage Functions Developed from AASHO Road Test Data, Report Number FHWA/RD-84/020, Federal Highway Administration, 1984.

  11. Standard Prices for Cost Estimating, Maryland, Department of public Works, City of Rockville, 2010.

  12. http://www.pavementinteractive.org/ article/1993-aashto-flexible-pavement- structural-design/ 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

  13. American Association of State and Highway Transportation Officials. AASHTO Guide for Design of Pavement Structures. Washington D.C., 1993.

  14. Dorobanţu S., Andrei R., Evolution of the design methodologies applied in pavement design, Ed. Societăţii Academice Matei-Teiu Botez, Iaşi, 2015.

  15. de la Garza J., Akyildiz S., Bish D., Krueger D., Network-level optimization of pavement maintenance renewal strategies, Advanced Engineering Informatics, vol. 25, no. 4, pp 699-712, 2011.

  16. Ferreira A. L., Meneses S. C. N., A multi-objective decision-aid tool for road network maintenance management’, 5th International Conference on Bituminous Mixture and Pavements, Thessaloniki, 1–3 June, 2011.

  17. Santos J., Ferreira, A., Pavement Design Optimization Considering Costs and M&R Interventions, Procedia - Social and Behavioral Sciences, vol. 53, pp 1182-1191, 2012.

  18. Abaza K., Abu-Eisheh S., An Optimum Design Approach for Flexible Pavements, International Journal of Pavement Engineering, vol. 4/issue 1, pp 1-11, 2003.

  19. Rouphail N., Minimum‐Cost Design of Flexible Pavements, Journal of Transportation Engineering, vol. 111/issue 3, pp 196-207, 1985.

  20. Ghanizadeh A.R., Fakhri M., Australian Journal of Basic and Applied Sciences, vol. 3/issue 3: 1652-1660, 2009.

  21. The Asphalt Institute, Thickness design – asphalt pavements for highways and streets, Manual, 1999.

  22. Rauhut B., Jordahl, B. Pavement Damage Function for Cost Allocation, vol. 3, Flexible Pavement Damage Functions Developed from AASHO Road Test Data, Report Number FHWA/RD-84/020, Federal Highway Administration, 1984.

  23. Standard Prices for Cost Estimating, Maryland, Department of public Works, City of Rockville, 2010.

  24. http://www.pavementinteractive.org/ article/1993-aashto-flexible-pavement- structural-design/ 16th International Multidisciplinary Scientific GeoConference SGEM2016 www.sgem.org

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