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      PREDICTING LOCATION AND EVALUATING PROGRESSION OF CLOGGING IN A PERMEABLE PAVEMENT PARKING LOT

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          ABSTRACT

          In 2009, a permeable pavement research and demonstration site was constructed at the Edison Environmental Center, Edison, NJ. Infiltration testing of three original permeable parking rows through August 2012 indicated that clogging occurred along the upgradient edge of these pavements from runoff that drained from adjacent impermeable driving lanes.

          A subsequent infiltration testing data collection effort from April 2017 through March 2020 focused on permeable interlocking concrete pavers (PICP) that replaced one of the original permeable surfaces. While the original infiltration study through 2012 used random locations throughout the permeable parking rows, the newer study targeted upgradient edge to identify where clogging would occur. Testing locations along the upgradient edge were selected based on a high-resolution survey (HRS) of the parking lot performed in December 2014. The HRS identified three low spots along the upgradient edge that eventually clogged in the new PICP infiltration study.

          The HRS may assist with maintenance routines. The newer study also supports the conclusion of the earlier study with regards to truncating the infiltration testing method, particularly for maintenance assessments.

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          Most cited references17

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          Evaluation of Surface Infiltration Testing Procedures in Permeable Pavement Systems

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            Assessing the potential for restoration of surface permeability for permeable pavements through maintenance.

            Permeable pavements (PPs) have been in use as stormwater management systems in Canada and the United States for over 20 years. After years of exposure to sediment and debris build-up, surface clogging reduces the infiltration of stormwater and inhibits the hydraulic and environmental functions of the pavement. Removal of surface material has been shown to restore infiltration but the majority of studies have been limited to small-scale testing. This paper presents the results of small- and full-sized equipment testing aimed at restoring surface permeability, including the first testing of regenerative-air and vacuum-sweeping streetsweepers in Ontario. Maintenance achieved partial restoration of PP surface permeability. Post-treatment surface infiltration rates displayed large spatial variability, highlighting that localized conditions throughout the pavement have a confounding influence on the overall effectiveness of maintenance. The impact of maintenance may be improved by establishing regular cleaning intervals and developing instructional guidelines for pavement owners and equipment operators.
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              “Assessment of clogging dynamics in permeable pavement systems with time domain reflectometers (TDRs).”

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                Author and article information

                Journal
                jgrb
                Journal of Green Building
                College Publishing
                1943-4618
                1552-6100
                Fall 2022
                20 December 2022
                : 17
                : 4
                : 3-18
                Affiliations
                [1. ] Environmental Engineer (corresponding author), U.S. EPA Office of Research and Development, Edison, New Jersey, 2890 Woodbridge Ave. MS 104, Edison, NJ 08837-3679. Email: OConnor.Thomas@ 123456epa.gov
                [2. ] Chemical Engineer, U.S. EPA Office of Research and Development, Edison, New Jersey, 2890 Woodbridge Ave. MS 104, Edison, NJ 08837-3679. Email: Borst.Mike@ 123456epa.gov
                Article
                10.3992/jgb.17.4.3
                f90bd903-077d-44b1-b2bf-8446ed3a4fe5
                Page count
                Pages: 16
                Product
                Self URI (journal page): http://www.journalofgreenbuilding.com
                Categories
                RESEARCH ARTICLES

                Urban design & Planning,Civil engineering,Environmental management, Policy & Planning,Architecture,Environmental engineering
                Permeable interlocking concrete pavers,Permeable pavement,Infiltration,Maintenance assessment,High-resolution survey,Green infrastructure,Storm water control measure,ASTM C1701 and C1781

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