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Articles

A review and sequel experimental analysis on physical and mechanical properties of permeable concrete for pavement construction

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Pages 4160-4173 | Received 10 Feb 2021, Accepted 24 May 2021, Published online: 09 Jun 2021

References

  • Aoki, Y., Sri Ravindrarajah, R., and Khabbaz, H, 2012. Properties of pervious concrete containing fly ash. Road Materials and Pavement Design, 13 (1), 1–11.
  • Bean, Eban Z., Hunt, William F., and Bidelspach, David A., 2007. Field survey of permeable pavement surface infiltration rates. Journal of Irrigation and Drainage Engineering, 133 (3), 249–255.
  • Chandrasekhar, R., and Dinesh, K, 2017. Effect of fly ash and aluminium powder on concrete. International Journal of Advanced Information Science and Technology, 16 (7), 1–6.
  • The Concrete Society, 2018. Air-entrained concrete. Camberley GU17 9AB, United Kingdom.
  • Cuenca, J., et al., 2012. Effects of olive residue biomass Fly Ash as filler in self-compacting concrete. Construction and Building Materials, 31 (3), 702–709.
  • Dai, Shengnan, et al., 2019. Experimental Study on Mechanical Properties of Permeable Concrete. IOP Conf. Series: Materials Science and Engineering, IOP Conf. Series: Earth and Environmental Science. 233 (2019) 032037 doi:10.1088/1755-1315/233/3/032037, 1–7.
  • Federal Highway Administration. U.S. Department of Transportation, 1200 New Jersey Avenue, SE, Washington, DC 20590, 202-366-4000 https://highways.gov/.
  • Huang, B., et al., 2010. Laboratory evaluation of permeability and strength of polymer-modified pervious concrete. Construction and Building Materials, 24, 818–823.
  • Kayhanian, M., et al., 2012. Permeability measurement and scan imaging to assess clogging of pervious concrete pavements in parking lots. Journal of Environmental Management, 95 (1), 114–123.
  • Kia, Alalea, Wong, Hong S., and Cheeseman, Christopher R., 2017. Clogging Potential of Permeable Concrete. 37th Cement and Concrete Science Conference, 11–12 September 2017, University College London, 060, 1–7.
  • Kia, Alalea, Wong, Hong S., and Cheeseman, Christopher R., 2019. High-strength clogging resistant permeable pavement. International Journal of Pavement Engineering. https://doi.org/10.1080/10298436.2019.1600693
  • Liu, Dong, et al., 2018. Research on the anti-Plugging Property of Permeable Concrete Pavement. E3S Web of Conferences (ICSREE 2018) 57, 01002 (2018) https://doi.org/10.1051/e3sconf/20185701002.
  • Mishra, Krishna, Zhuge, Yan, and Karunasena, Warna, 2013. Clogging Mechanism of Permeable Concrete: A Review. Concrete 2013: Understanding Concrete conference, 16–18 Oct 2013, Gold Coast Australia.
  • Nadiatul Adilah, A A G., et al., 2020. The Influence of steel slag as alternative aggregate in permeable concrete pavement. IOP Conf. Series: materials science and engineering, IOP Conf. Series: Materials Science and Engineering.712 (2020) 012011 doi:10.1088/1757-899X/712/1/012011, 1–8.
  • Ng, Cheng Yee, et al., 2019. Properties of modified high permeable concrete with a crumb rubber. The Open Civil Engineering Journal, 13, 82–91.
  • Park, Jaerock, et al., 2020. Analysis of infiltrating water characteristics of permeable pavements in a parking lot at full scale. Water, 12, 1–9.
  • Qin, Y., et al., 2015. Water permeability of pervious concrete is dependent on the applied pressure and testing methods. Advances in Materials Science and Engineering, 2015, 1–6.
  • Russell, L., and Kevin, J, 2006. The impact of fly ash on air entrained concrete. Boral Material Technologies, 6 (4), 71–72.
  • Scholz, Miklas, and Grabowiecki, Piotr, 2007. Review of permeable pavement systems. Building and Environment, 42, 3830–3836.
  • Shrivastava, A., and Tiwari, A, 2017. Non autoclaved aerated concrete (NAAC) blocks: an alternative building construction material. International Journal for Research in Applied Science and Engineering Technology., 5 (5), 808–812.
  • Smit, M.S., and Kearsley, E.P, 2015. Effect of paste content on the properties of high-strength concrete pavements. Journal of the South African Institution of Civil Engineering, 57 (4), 20–29.
  • Smith, David R., 2006. Permeable interlocking concrete pavements selection (design, construction and maintenance) (3rd ed.). Washington DC: Interlocking Concrete Pavement Institute (ICPI).
  • SR EN 206-1. ICS 91.100.30, 2002. Concrete. Specification, performance, production and conformity, Asociatia de Standardizare din Romania (ASRO), ASRO Standard, Roman.
  • Stefan, R, 2010. Air entrained concrete. International Scientific conference. CIBV, 2010, 45–50.
  • Susan, I., and John, E, 2014. A study on the properties of Air-entrained concrete for masonry blocks. International Journal of Scientific Engineering and Technology, 3 (11), 1367–1370.
  • Terry, Lucke, and Beecham, S, 2013. An investigation into the differences in infiltration capacity between porous and permeable concrete pavers installed on sloping sub-catchments. B1: Porous Surfacing (NOVATECH 2013), USC Research Bank, Australia, 1–9.
  • Thorpe, David, and Zhuge, Yan, 2010. Advantages and disadvantages in using permeable concrete pavement as a pavement construction material. Proceedings of the 26th Annual ARCOM Conference, 6–8 September 2010, Leeds, UK, Association of Researchers in Construction Management, 1341–1350.
  • Wong, J.M., Glasser, F.P., and Imbabi, M.S., 2007. Evaluation of thermal conductivity in air permeable concrete for dynamic breathing wall construction. Cement and Concrete Composites, 29 (2007), 647–655.
  • Xiea, Zhaoxing, and Shenb, Junan, 2016. Performance of porous European mix (PEM) pavements added with crumb rubbers in dry process. International Journal of Pavement Engineering, 17 (7), 637–646. doi:10.1080/10298436.2015.1011783.
  • Yang, Sanqiang, et al., 2019. Study on strength variation of permeable concrete Based on differential calorimetry method and multi-index test. Advances in Materials Science and Engineering, 2019, Article ID 7918924, 1–9.
  • Yap, Soon Poh, et al., 2018. Characterization of pervious concrete with blended natural aggregate and recycled concrete aggregates. Journal of Cleaner Production, 181 (2018), 155–165.
  • Zou, Dujian, et al., 2020. Improvement in freeze-thaw durability of recycled aggregate permeable concrete with silane modification. Construction and Building Materials. Article in press. DOI: 10.1016/j.conbuildmat.2020.121097

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