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Research Article

Coir Geotextiles for Paved Roads: A Laboratory and Field Study Using Non-Plastic Soil as Subgrade

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References

  • Al-Qadi, I. L., S. H. Dessouky, J. Kwon, and E. Tutumluer. 2007. Accelerated full- scale testing of geogrid reinforced flexible pavements. Paper presented at the 86th Annual Meeting on Transportation Research Board, Washington, DC, U S A, January 21–25.
  • ASTM D1883. 2016. Standard test method for California bearing ratio of laboratory-compacted soils, American Society for Testing and Materials, West Conshohocken, PA, USA.
  • ASTM D4429a. 2009. Standard test method for california bearing ratio of soils in place, American Society for Testing and Materials, West Conshohocken, PA. USA.
  • ASTM D6951/D6951M. 2018. Standard test method for use of the dynamic cone penetrometer in shallow pavement applications, American Society for Testing and Materials, West Conshohocken, PA, USA.
  • Authority of Director General. CPWD. 2016. Analysis of rates for Delhi. In Central public works department, Vol. 2: 939-1065. New Delhi, India: Government of India.
  • Basic Road Statistics of India. 2015. 2016. Ministry of road transport and highways, transportation research wing. New Delhi, India: Government of India. www.morth.nic.in.http://indiaenvironmentportal.org.in/content/455819/basic-road-statistics-of-india-2015-16.
  • Correia, N. S., and J. G. Zornberg. 2014. Influence of tack coat rate on properties of geosynthetics. Transportation Geotechnics 1:45–54. doi:10.1016/j.trgeo.2014.01.002.
  • Ennio, M. P., G. S. Luiz, and Antunes. 2010. Large scale tests on geosynthetic reinforced unpaved roads subjected to surface maintenance. Journal of Geotextiles and Geomembranes 28:547–58. doi:10.1016/j.geotexmem.2010.03.002.
  • Herath, A., N. M. Louay, K. Gaspard, R. Gudishala, and M. Y. Abu-Farsakh. 2005. The use of dynamic cone penetrometer to predict resilient modulus of subgrade soils. Advances in Pavement Engineering 1–16.
  • IRC: 109. 2015. Guidelines for wet mix macadam. Indian Road Congress, New Delhi, India.
  • IRC: 29. 1988. Specification for Bituminous Concrete (Asphaltic concrete) for road pavement. Indian Road Congress, New Delhi, India.
  • IRC: 81. 1997. Guidelines for strengthening of flexible road pavements using benkelman beam deflection technique. Indian Road Congress, New Delhi, India.
  • IRC: 94. 1986. Specification for dense bituminous macadam. Indian Road Congress, New Delhi, India.
  • IRC: SP-20. 2002. Rural roads manual, ministry of road transport and highways. Indian Road Congress, New Delhi, India.
  • IRC: SP–72. 2015. Guidelines for the design of flexible road pavements for low volume rural roads. Indian Road Congress, New Delhi, India.
  • Khan, A. J., F. Huq, and S. Z. Hossain 2014. Application of jute geotextiles for rural road pavement construction. Paper presented at the Geoshanghai Conference on Ground Improvement and Geosynthetics. Shanghai, China, May 26–28.
  • Leao, A. L., B. M. Cherian, S. F. De Souza, R. M. Kozlowski, S. Thomas, and M. Kottaisamy. 2012. Natural fibers for geotextiles. In Hand book of natural fibers, ed. R. M. Kozłowski, Vol. 2, 280–311. Sawston: Wood head.
  • Moghaddas, Tafreshi, S. N., and A. R. Dawson. 2010. Behaviour of footings on reinforced sand subjected to repeated loading – Comparing use of 3D and planar geotextile. Geotextiles and Geomembranes 28:434–47. doi:10.1016/j.geotexmem.2009.12.007.
  • Mohammadi., S. D., M. R. Nikoudel., H. Rahimi., and M. Khamehchiyan. 2008. Application of the dynamic cone penetrometer (DCP)for determination of the engineering parameters of sandy soils. Engineering Geology 101:195–203. doi:10.1016/j.enggeo.2008.05.006.
  • Mostaqur, M., and Rahman. 2018. Development of 3-D finite element models for geo-jute reinforced flexible pavement. https://www.researchgate.net/publication/322991598.
  • Rahman, M. M., and S. L. Gassman 2018. Moisture effect of subgrade resilient modulus on pavement rutting. Presented at 97th Annual Meeting of the Transportation Research Board and published in the Transportation Research Record, Washington DC, USA, January 7–11.
  • Rajagopal., K., and S. Ramakrishna. 2009. Coir geotextiles as separation and filtration layer for low intensity road bases. Proceeding of Indian Geotechnical Conference, Guntur, Andhra Pradesh, India, December 17–19.
  • Rawal, A., and R. Anandjiwala. 2007. Comparative study between needle punched non woven geotextile structures made from flax and polyester fibers. Geotextiles and Geomembranes 25 (1):61–65. doi:10.1016/j.geotexmem.2006.08.001.
  • Robert, N. 2017. Effect of cyclic load on California bearing ratio of soaked clay. Proceedings of Second World Congress on Civil, Structural and Environmental Engineering, Barcelona, Spain. April 2–4.
  • Sarsby, R. W. 2007. Use of Limited Life Geotextiles (LLGs) for basal reinforcement of embankments built on soft clay. Geotextiles and Geomembranes 25 (4–5):302–10. doi:10.1016/j.geotexmem.2007.02.010.
  • Sayida, M. K., E. Y. Sheela, and M. S. Girish 2014. Performance of coir geotextile reinforced unpaved roads. Paper presented at the International Conference on Sustainable Civil Infrastructure, ASCE, Hyderabad, India, October 17–18.
  • Subaida, E. A., S. Chandrakaran, and N. Sankar. 2009. Laboratory performance of unpaved roads reinforced with woven coir geotextiles. Geotextiles and Geomembranes 27:204–10. doi:10.1016/j.geotexmem.2008.11.009.
  • Sudarsanan., N., R. Sunil, Mohapatra, K. Rajagopal, and A. Veeraragavan. 2018. Use of natural geotextiles to retard reflection cracking in highway pavements. Journal of Materials in Civil Engineering 30 (4). doi:10.1061/(ASCE)MT.1943-5533.0002195.
  • Suku., L., S. P. Sudheer, and G. L. Sivakumar, Babu. 2017. Effect of geogrid reinforcement in granular bases under repeated loading. Geotextiles and Geomembranes 45:377–89. doi:10.1016/j.geotexmem.2017.04.008.
  • Venkatappa, R. G., and R. K. Dutta 2006. Coir geotextiles in rural roads. Paper presented in Highway Research Bulletin, 74, 9–15.
  • Vinod, P., and M. Minu. 2010. Use of coir geotextiles on unpaved road construction. Geosynthetics International 17 (4):220–27. doi:10.1680/gein.2010.17.4.220.

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