Pervious concrete as an alternative pavement strategy: a state-of-the-art review
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ACI Committee 522R, 2010. Report on Pervious Concrete, American Concrete Institute Committee 522, Technical Committee Document, Farmington Hills, MI.
Allan M.L., 1996, ACI Materials Journal, 93, 1
American Society of Civil Engineers (ASCE) and Water Environment Federation (WEF), 1998, Urban runoff quality management
ASTM, 2012, ASTM C1754 “standard test method for density and void content of hardened pervious concrete”
ASTM, 2012, ASTM C448, “standard classification for sizes of aggregate for road and bridge construction”
ASTM, 2012, ASTM C944, “standard test method for abrasion resistance of concrete or mortar surfaces by the rotating-cutter method”
ASTM, 2013, ASTM C33, “standard specification for concrete aggregates”
ASTM, 2014, ASTM C1688 “standard test method for density and void content of freshly mixed pervious concrete”
ASTM, 2015, ASTM C666, “standard test method for resistance of concrete to rapid freezing and thawing”
ASTM, 2017, ASTM C150, “standard specification for Portland cement”
Brown H.J., 2006, Pervious concrete research compilation: past, present and future
Carman P.C., 1956, Flow of gases through porous media
Chapuis R.P., 2003, Predicting the co-efficient of permeability of soil using the Kozeny–Carman equation
Cooley, L.A. Jr., Prowell, B.D., and Brown, E.R., 2002. Issues pertaining to the permeability characteristics of coarse graded superpave mixes, Annual Meeting of the Association of Asphalt Paving Technologists, Colorado Springs, Colorado.
Dastol M., 1994, Concrete additive comprising a multicomponent admixture containing silica fume, its method of manufacture and concrete produced therewith
Dierkes, C. et al., 2005. Pollution retention of different permeable pavements with reservoir structure at high hydraulic loads, 10th International Conference on Urban Drainage, August 21–26, Copenhagen, Denmark.
EPA, 1999. “Storm water technology fact sheet porous pavement”, EPA 832-F-99-023, Environmental Protection Agency, Office of Water, Washington D.C., September 1999.
EPA, 2005. “Reducing urban heat islands: compendium of strategies, EPA’s heat island reduction initiative”, Environmental Protection Agency (EPA), USA.
EPA, 2010. Storm water phase II final rule: an overview, EPA 833- F-00-001, Fact Sheet 1.0, U.S. Environmental Protection Agency, Office of Water, Washington, DC, January 2000.
Federal Highway Administration (FHWA), 2012. Techbrief, (ACPT), Available from: https://www.fhwa.gov/pavement/concrete/pubs/hif13006/hif13006.pdf.
Florida Concrete and Products Association, Inc. (FCPA), 1990. “Portland cement pervious pavement manual”, Available from: www.fcpa.org.
Hainin, M.R., Cooley, L.A. Jr., and Prowell, B.D., 2003. An investigation of factors influencing permeability of superpave mixes. TRB 2003, Annual Meeting, Washington, DC.
Hardiman M., 2004, Civil Engineer Dimension, 6, 57
Hendrickx, I.L., 1998. Noiseless concrete pavements. Available from: http://www.eupave.edu/documents/noiselessconcrete-pavements.pdf.
Jain A.K., 2011, International Journal of Advanced Engineering Research and Studies, 1, 120
Jimma, B.E., 2014. Workability-integrated mixture proportioning method for pervious concrete, Ph.D. Thesis, Clemson University.
Kevern, J.T. et al., 2005. Mix design development for pervious concrete in cold weather climates, Proceedings of the 2005 Mid-Continent Transportation Research Symposium, Ames, Iowa, August 2005.
Kevern J.T., 2014, Journal of Materials in Civil Engineering, 27, 61
Kevern J.T., 2012, Journal of Heat Island Institute International, 7, 231
Koponen A., 1997, The American Physical Society, 56, 3319
Król J.B., 2017, Road Materials and Pavement Design
Maharaj, K.T. et al., 2012. The performance and effectiveness of geotextiles within permeable pavements for treating concentrated stormwater, Sixteenth International Water Technology Conference, IWTC 16, Istanbul, Turkey.
Mallick, R.B. et al., 2003. An evaluation of factors affecting permeability of superpave designed pavements, NCAT Report 03–02.
Maynard D.P., 1970, Concrete Construction, 15, 116
Meininger C., 1988, Concrete International, 10, 20
Monahan, A., 1981. Porous Portland cement concrete; the state of the art. No. Army engineers, water ways experiment station Vicksburg MS structures lab.
National Ready Mixed Concrete Association (NRMCA), 2007, Text reference for pervious concrete contractor certification, publication 2PPCRT, p. 60
Newman, A.P. et al., 2002a. Microbial ecology of oil degrading porous pavement structures- Global solutions for urban drainage, Proceedings of the ninth international conference on urban drainage, Portland, OR, USA, 8–13 September 2002. p. 1–12.
NRC, 2008. “Urban stormwater management in the United States”, National Research Council of the National Academies, October 15, 2008, 529.
Obla, K., 2007. Pervious concrete for sustainable development, in: Recent Advances in Concrete Technology, National Ready Mixed Concrete Association (NRMCA).
Paine J., 1992, Concrete Construction, 37, 655
Qin Y., 2015, Advances in Materials Science and Engineering, 2015, 1
Rankin, K., and Ball, J.E., 2004. A review of the performance of permeable pavers, in International Conference on Water Sensitive Urban Design WSUD 2004: Cities as Catchments, November 21–25, Adelaide, Australia 2004.
Reiser, D.W., Ramey, M.P., and Wesche, T.A., 1989. Flushing flows, alternatives in regulated river management. Chapter 4, Boca Raton, FL: CRC Press, 91–135.
Sanford, C., 2014. A study on the debris found in a pervious concrete sample, MS-Thesis, The University of Tennessee at Chattanooga.
Schaefer V.R., 2006, Mix design development for pervious concrete in cold weather climates
Schaefer V.R., 2011, An integrated study of pervious concrete mixture design for wearing course applications
Takao N., 2001, Proceeding of Japan Construction Institute, 23, 163
Tarefder R.A., 2015, International Journal of Pavement Engineering
Tennis P.D., 2004, Pervious concrete pavements (No. PCA Serial No. 2828)
Tong, B., 2011. Clogging effects of Portland cement pervious concrete. MSc. Thesis. Iowa State University.
Wang C., 2007, Reinforced concrete design
Wimberly J.D., 2001, Evaluation of mechanical and hydrological properties of high voids pervious concrete
Xinzhuang C., 2016, Journal of Pavement Engineering
Yanga, L. et al., 2016. Research on Urban Heat-island Effect, 4th International Conference on Countermeasures to Urban Heat Island (UHI), Procedia Engineering, 169, 11–18.